Thursday, January 28, 2016

History of Coconuts



The coconut (the fruit of the palm Cocos nucifera) is the Swiss Army knife of the plant kingdom; in one neat package it provides a high-calorie food, potable water, fiber that can be spun into rope, and a hard shell that can be turned into charcoal. What's more, until it is needed for some other purpose it serves as a handy flotation device.

No wonder people from ancient Austronesians to Captain Bligh pitched a few coconuts aboard before setting sail. (The mutiny of the Bounty is supposed to have been triggered by Bligh's harsh punishment of the theft of coconuts from the ship's store.)

So extensively is the history of the coconut interwoven with the history of people traveling that Kenneth Olsen, a plant evolutionary biologist, didn't expect to find much geographical structure to coconut genetics when he and his colleagues set out to examine the DNA of more than 1300 coconuts from all over the world.

"I thought it would be mostly a mish-mash," he says, thoroughly homogenized by humans schlepping coconuts with them on their travels.

He was in for a surprise. It turned out that there are two clearly differentiated populations of coconuts, a finding that strongly suggests the coconut was brought under cultivation in two separate locations, one in the Pacific basin and the other in the Indian Ocean basin. What's more, coconut genetics also preserve a record of prehistoric trade routes and of the colonization of the Americas.

The discoveries of the team, which included Bee Gunn, now of the Australian National University in Australia, and Luc Baudouin of the Centre International de Recherches en Agronomie pour le Développement (CIRAD) in Montpellier, France, as well as Olsen, associate professor of biology at Washington University in St. Louis, are described in the June 23 online issue of the journal PLoS ONE.

Morphology a red herring

Before the DNA era, biologists recognized a domesticated plant by its morphology. In the case of grains, for example, one of the most important traits in domestication is the loss of shattering, or the tendency of seeds to break off the central grain stalk once mature.
The trouble was it was hard to translate coconut morphology into a plausible evolutionary history.

There are two distinctively different forms of the coconut fruit, known as niu kafa and niu vai, Samoan names for traditional Polynesian varieties. The niu kafa form is triangular and oblong with a large fibrous husk. The niu vai form is rounded and contains abundant sweet coconut "water" when unripe.

"Quite often the niu vai fruit are brightly colored when they're unripe, either bright green, or bright yellow. Sometimes they're a beautiful gold with reddish tones," says Olsen.
Coconuts have also been traditionally classified into tall and dwarf varieties based on the tree "habit," or shape. Most coconuts are talls, but there are also dwarfs that are only several feet tall when they begin reproducing. The dwarfs account for only 5 percent of coconuts.

Dwarfs tend to be used for "eating fresh," and the tall forms for coconut oil and for fiber. "Almost all the dwarfs are self fertilizing and those three traits -- being dwarf, having the rounded sweet fruit, and being self-pollinating -- are thought to be the definitive domestication traits," says Olsen.

"The traditional argument was that the niu kafa form was the wild, ancestral form that didn't reflect human selection, in part because it was better adapted to ocean dispersal," says Olsen. Dwarf trees with niu vai fruits were thought to be the domesticated form.

The trouble is it's messier than that. "You almost always find coconuts near human habitations," says Olsen, and "while the niu vai is an obvious domestication form, the niu kafa form is also heavily exploited for copra (the dried meat ground and pressed to make oil) and coir (fiber woven into rope)."

"The lack of universal domestication traits together with the long history of human interaction with coconuts, made it difficult to trace the coconut's cultivation origins strictly by morphology," Olsen says.

DNA was a different story.

Collecting coconut DNA

The project got started when Gunn, who had long been interested in palm evolution, and who was then at the Missouri Botanical Garden, contacted Olsen, who had the laboratory facilities needed to study palm DNA.

Together they won a National Geographic Society grant that allowed Gunn to collect coconut DNA in regions of the western Indian Ocean for which there were no data. The snippets of leaf tissue from the center of the coconut tree's crown she sent home in zip-lock bags to be analyzed.

"We had reason to suspect that coconuts from these regions -- especially Madagascar and the Comoros Islands -- might show evidence of ancient 'gene flow' events brought about by ancient Austronesians setting up migration routes and trade routes across the southern Indian Ocean," Olsen says.

Olsen's lab genotyped 10 microsatellite regions in each palm sample. Microsatellites are regions of stuttering DNA where the same few nucleotide units are repeated many times. Mutations pop up and persist pretty easily in these regions because they usually don't affect traits that are important to survival and so aren't selected against, says Olsen. "So we can use these genetic markers to 'fingerprint' the coconut," he says.

The new collections were combined with a vast dataset that had been established by CIRAD, a French agricultural research center, using the same genetic markers. "These data were being used for things like breeding, but no one had gone through and systematically examined the genetic variation in the context of the history of the plant," Olsen says.

Two origins of cultivation

The most striking finding of the new DNA analysis is that the Pacific and Indian Ocean coconuts are quite distinct genetically. "About a third of the total genetic diversity can be partitioned between two groups that correspond to the Indian Ocean and the Pacific Ocean," says Olsen.

"That's a very high level of differentiation within a single species and provides pretty conclusive evidence that there were two origins of cultivation of the coconut," he says.

In the Pacific, coconuts were likely first cultivated in island Southeast Asia, meaning the Philippines, Malaysia, Indonesia, and perhaps the continent as well. In the Indian Ocean the likely center of cultivation was the southern periphery of India, including Sri Lanka, the Maldives, and the Laccadives.

The definitive domestication traits -- the dwarf habit, self-pollination and niu vai fruits -- arose only in the Pacific, however, and then only in a small subset of Pacific coconuts, which is why Olsen speaks of origins of cultivation rather than of domestication.

"At least we have it easier than scientists who study animal domestication," he says. "So much of being a domesticated animal is being tame, and behavioral traits aren't preserved in the archeological record."

Did it float or was it carried?

One exception to the general Pacific/Indian Ocean split is the western Indian Ocean, specifically Madagascar and the Comoros Islands, where Gunn had collected. The coconuts there are a genetic mixture of the Indian Ocean type and the Pacific type.

Olsen and his colleagues believe the Pacific coconuts were introduced to the Indian Ocean a couple of thousand years ago by ancient Austronesians establishing trade routes connecting Southeast Asia to Madagascar and coastal east Africa.

Olsen points out that no genetic admixture is found in the more northerly Seychelles, which fall outside the trade route. He adds that a recent study of rice varieties found in Madagascar shows there is a similar mixing of the japonica and indica rice varieties from Southeast Asia and India.

To add to the historical shiver, the descendants of the people who brought the coconuts and rice are still living in Madagascar. The present-day inhabitants of the Madagascar highlands are descendants of the ancient Austronesians, Olsen says.

Much later the Indian Ocean coconut was transported to the New World by Europeans. The Portuguese carried coconuts from the Indian Ocean to the West Coast of Africa, Olsen says, and the plantations established there were a source of material that made it into the Caribbean and also to coastal Brazil.

So the coconuts that you find today in Florida are largely the Indian ocean type, Olsen says, which is why they tend to have the niu kafa form.

On the Pacific side of the New World tropics, however, the coconuts are Pacific Ocean coconuts. Some appear to have been transported there in pre-Columbian times by ancient Austronesians moving east rather than west.

During the colonial period, the Spanish brought coconuts to the Pacific coast of Mexico from the Philippines, which was for a time governed on behalf of the King of Spain from Mexico.

This is why, Olsen says, you find Pacific type coconuts on the Pacific coast of Central America and Indian type coconuts on the Atlantic coast.

"The big surprise was that there was so much genetic differentiation clearly correlated with geography, even though humans have been moving coconut around for so long."
Far from being a mish-mash, coconut DNA preserves a record of human cultivation, voyages of exploration, trade and colonization.

Source: The above post is from materials provided by Washington University in St. Louis. The original item was written by Diana Lutz.





Organic Vegetable Training Class 01-16 Launched in Sagay City


More than 200 farmers belonging to the Organic Vegetable Production Training Class 01-16 attended the official launching of their three-month training in Sagay City, Last January 26, 2016.

The participants are marginal farmers, agrarian reform beneficiaries, and former rebels from the cities of Sagay, Cadiz and Escalante, and Municipality of Manapla.

The program is being implemented by the Provincial Government through the Provincial Peace, Integration and Development Unit (Pro-PIDU) headed by Negros Occ. Provincial Planning and Development Coordinator and Pro-PIDU Action Officer, Dr. Ma. Lina P. Sanogal, and the 303rd Infantry Brigade and 62nd Infantry Brigade.

Sanogal said that the main purpose of the program is to alleviate poverty, advocate organic farming, and promote lasting peace particularly in far-flung areas of Negros Occidental.

The organic vegetable production Demo Farm, located at Herbal Garden, will serve as training venue to teach farmers on the proper way to grow organic vegetables.

Sagay City Mayor Thirdy Marañon said that the said training will pave the way for the Negrenses to become suppliers of organic products, considering that there is an increasing demand of organic food worldwide.

Gov. Alfredo G. Marañon said that the farmers will also be trained on how to make organic fertilizers to augment their production. He added that this there is big money in organic farming while at the same time it is good for people who are health conscious because organic vegetables are free of pesticides and other harmful chemicals. /Capitol News

Source: http://www.negros-occ.gov.ph/current-events/press-release/capitol-news/organic-vegetable-training-class-01-16-launched-in-sagay-city.html





Wednesday, January 20, 2016

Sweetpotato Roundtable Discussion Addresses Industry Gaps


Issues, trends, and imperatives to improve the country’s sweetpotato industry were tackled during the recent Sweetpotato Industry Roundtable Discussion. 

Held at the Astoria Hotel, the event was organized by the Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development of the Department of Science and Technology (DOST-PCAARRD) and the International Potato Center (CIP).

 Sweetpotato’s potential in meeting food and nutritional needs; value-adding in the competitive industry; and its role in climate change and disaster mitigation, were discussed during the event. 
Representatives from the food and non-food industries; sweetpotato producers/small rural enterprises; research and development (R&D) institutions and advocates; and the government sector participated in the event.

Nerisa Alob of the Sapang Primary Multi-Purpose Cooperative (PMPC) said that sweetpotato producers in Tarlac are faced by various constraints: lack of clean planting materials, increasing cost of chemical fertilizer, limited extension services for sweetpotato producers, lack of organized groups for sweetpotato producers, limited access to common service facilities, limited knowledge in value-addition strategies, poor infrastructures such as farm-to-market roads, and low skills in marketing and bargaining.

PCAARRD-Crops Research Division (CRD) Director, Dr. Jocelyn Eusebio, provided the overview of research and development (R&D) initiatives in sweetpotato and a briefer about sweetpotato and its production in Asia and the world. 
Eusebio  also presented the programs and initiatives of PCAARRD under the Industry Strategic S&T Program (ISP) on Sweetpotato. She explained that one  of the main outcomes of the program is to increase the sweetpotato’s national average yield from 5.11 metric tons (mt)/ hectare (ha) in 2012 to 10 mt/ha in 2016 and 12 mt/ha in 2020.

Eusebio also discussed several ongoing projects under the PCAARRD ISP on sweetpotato as well as the programs and initiatives of the Department of Agriculture (DA)-High Value Crops Development Program (HVCDP) on the same concern.

DA-HVCDP strategies and policies seek to strengthen the rootcrop research and development and extension (RDE) system, increase production through intercropping with appropriate cash crops for land use optimization, improve value-added products for the local and external markets, and develop efficient supply chains.

The said strategies and policies also work on export promotion for both fresh and processed products by effecting the necessary  regulatory services and accreditation and certification system for nurseries and agricultural practices.

The Roundtable Discussion identified gaps and other researchable areas through Science and Technology (S&T)-based program approach and potential food and other industry markets, and value chain development opportunities, among others.

“Sweetpotato has a great market demand for flour and chips and other processed products such as catsup, starch, and fries. It also provides health benefits,” one of the participating groups said.
Identified as necessities in addressing the gaps facing the sweetpotato industry were: clustering production, postharvest, processing, and marketing, including the required R&D activities to achieve the efficiency  of these systems.

Other identified needs, as suggested, include marketing linkages, improved strategy on technology, knowledge and information dissemination, and collaboration. 

Source: http://www.pcaarrd.dost.gov.ph/home/portal/index.php/quick-information-dispatch/2645-sweetpotato-roundtable-discussion-addresses-industry-gaps






Tuesday, January 12, 2016

Sipag Fiesta: The best in Science and Technology 2010 - 2016

The Department of Science and Technology (DOST) and the Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development (PCAARRD) invites all to the Sipag Fiesta the Best of 2010 - 2016.

The Sipag Fiesta is composed of champion research and programs from a wide range of agriculture and aquaculture and has been in program since 2010. It aims to boost the development of Philiuppine innovation in these critical areas since these are the basic economic foundations of most Filipinos. 

Sipag Fiesta 2010-2016 will fgeaturethe best of the strategic Science and Technology Programs for Agri-Aqua Growth (SIPAG) througgh farms and industry ecounters through the Science and Technology Agenda.

Siapg Fiesta will be held on January 27 - 29, 2016 at the PCAARRD, Los Banos, Laguna.





Thursday, January 7, 2016

Attain a Yield of 170 cavans per Hectare!


 Aringay, La Union farmer Federico Rullamas efforts yielded him 170 cavans of high-value organic red rice per hectare. He was awarded the “Highest Yielder of Naturally Grown Organic Rice Farming”  for 2015.

Rullamas used a new method of growing rice called the system of rice intensification (SRI), which involves a simple set of rice management practices that farmers can easily learn in one season. He also supplemented SRI with composted chicken manure plus home-made organic sprays which he learned from SRI Pilipinas trainer Venancio Garde Jr.

Rullamas employed a new method called System of Rice Intensification (SRI) wherein farmers can easily learn simple sets rice management practices within one planting season. SRI is also combined with composts from chicken manure and organic sprays produced in their own homes as instructed by SRI Pilipinas trainer Venancio Garde, Jr.

Garde calls his original formulation the “soil nutrient enhancer” but adds that this is no secret and that it can be learned for free via text to SRI Pilipinas Hotline (0939-1178999).

In a training jointly sponsored by the LGU of Aringay, La Union and SRI Pilipinas, farmers like Rullamas learned of the new method in boosting rice yields. The Dangunniang Bayan of Aringay budgeted Php300,000 annually for the conduct of SRI training among the farmers in its locality and more than 100 farmers have already become beneficiaries of the training.

The method involves planting 12 day old seedlings singly, at a distance of 12 inches. Alternate wetting and drying and the utilization of mechanical weeders to control weed infestation.

This resulted in the 170 cavans per hectare compared to the national average of 80 cavans per hectare. The use of non-fossil based chemical fertilizers reduces significantly carbon dioxide emissions and that by drying the rice field regularly minimizes methane emissions.

SRI is also considered climate-resilient, because the resulting rice plants are also sturdier, deeper-rooted, and therefore less vulnerable to droughts, floods and high winds.

(For details, contact Mr. Mangaoang at 0920-8788979 or Roberto Verzola, 0917-8117747)

Source: http://business.inquirer.net/205076/climate-friendly-rice-growing-method-yields-more#ixzz3wWOLdlWw







Tuesday, January 5, 2016

Agri Pinoy



Agrikulturang Pilipino or Agri-Pinoy is the over-all strategic framework of the Department of Agriculture that guide the various services and programs of the DA from 2011-2016 and beyond.

Agri-Pinoy incorporates principles and practices that optimize the development of Philippine resources, natural and human, to achieve Philippine goals in agriculture and fisheries, and contribute to national development.

This executive summary of Agri-Pinoy has three sections:

    The four guiding principles of Agri-Pinoy
    The Agri-Pinoy checklist
    The challenges to the DA family

Four Guiding Principles of Agri-Pinoy

    Food security and self-sufficiency
    Sustainable agriculture and fisheries
    Natural resource management
    Local development

Food security and self-sufficiency. Agri-Pinoy seeks to meet the food needs of the Philippines, particularly staple food, and make them accessible, affordable, safe and nutritious. Sapat, ligtas, at abot-kayang pagkain sa lahat.

In the pursuit of food security, Agri-Pinoy seeks to minimize our dependence on food imports, especially of staple food, by optimizing the development of the natural and human resources of the Philippines, toward increased productivity and increased incomes especially of primary producers.

Agri-Pinoy promotes the principle of food self-sufficiency with full awareness of our global interdependence, and our various commitments international trade agreements. Our trade policies and practices are integral to our efforts to achieve food security and self-sufficiency.

Sustainable agriculture and fisheries. To meet the ever growing needs of a growing Philippine population, we need to continually increase productivity. But in doing so, we must also insure sustainability, both ecologically and economically.

Agri-Pinoy’s emphasis on sustainable agricultural and fisheries principles and practices takes into account the limited bio-physical carrying capacity of the Philippines, while investing to expand the capacity of our human resources.

Natural resource management. In line with our goals of self-reliance and sustainability, Agri-Pinoy focuses on the natural resource endowments of the Philippines, and how to manage them so that they are not exhausted, while enhancing their competitive advantage.

Local development. The devolution of governance and the recognition of an eco-system framework of development reinforce the Agri-Pinoy guiding principle of local development.

While all outputs can be aggregated to calculate the total contribution of agriculture and fisheries to national development, Agri-Pinoy gives due emphasis to the contribution of agriculture and fisheries to local development.

These four guiding principles of Agri-Pinoy are interrelated and overlap. Together, they also provide agriculture and fisheries in the Philippines a better chance to face the two major challenges of climate change and changes in the global market.

The Agri-Pinoy Check List

    Broad-based
    From Farm to Table
    Sustainable systems
    Resilience
    Partnership

Broad-based. At the heart of Agri-Pinoy is a commitment to a broad-based strategy for the growth and development of agriculture and fisheries.

Why is a broad-based strategy needed? Agricultural and rural development must start from the reality that through agrarian reform, majority of our farms are family-sized or even smaller.

This need not be a disadvantage since there are enough evidence that small farm systems can be as productive as large farms.

In fact, at their current level of productivity, the small producers still contribute the biggest percentage of production in agriculture and fisheries.

A broad-based strategy calls for equitable and proportional allocation of DA services and resources to small, medium, and big players. From the 30-35 per cent who have been traditionally reached by DA services, we need to reach out to the majority who are small producers.

The other implication is that we need to take account of the different stakeholders in the whole value chain, and adopt specific and appropriate interventions to different stakeholders

Broad-based refers not only to size but also to diversity of crops and production systems. This is important for flexibility and resilience in the face of climate change and changes in global trading system. There are many downsides to large-scale monoculture, not just because of the impact on biodiversity but also because of disproportionate risks.

From Farm to Table. Agri-Pinoy addresses the whole system, from production to consumption. Both supply-side management and demand-side management are needed.

Instead of looking mainly into production, There is a need to pay attention to the whole value chain. This includes good soil and water management, and improved seeds. The community seed-banking program seeks to encourage local seed growers to produce certified seeds and farmers to use them. The extension system needs to be revitalized through the massive retraining of technicians and farmers themselves.

The policy of the DA is to devote public resources to those items that the farmers cannot take care of, like irrigation systems, infrastructure, post-harvest facilities, and other public goods.

But the DA also has responsibility to insure food safety and quality, primarily through our regulatory function. 

Sustainable farming and fisheries systems. The need to integrate sustainability into efforts to increase productivity is well established. The challenge is to provide primary producers information and assistance so that they can adopt and develop innovative technologies and management systems.

The Gulayan sa Paaralan project with the Department of Education seeks to develop an appreciation for agriculture from an early age. We also need to review and draw lessons from programs like the 4-H clubs and Future Farmers Clubs.

But to enhance the appeal of farming and fishing,  promote a social appreciation of the role of farmers and fishers.  There is a need to develop role models of farmer-technicians, farmer-scientists, and farmer-entrepreneurs.

Resilience. Although implicit in the concept of sustainability, we give resilience a distinct emphasis because of the increased impacts of climate change and changes in the global market.

These actual and potential impacts have to be integrated into any agricultural and fisheries development plan. There is also a need to combine satellite mapping of vulnerabilities with soil suitability and market analysis.

One key strategy is the empowerment of farmers and fishers, including provision of timely and useful information about climate change and market change. This can help them shift back from a situation of uncertainty to calculable risks.

In addition, they must be assisted to diversify options and introduced to adaptive technologies.

Partnerships. The promotion and development of Agri-Pinoy calls for partnerships at various levels.

    Partnerships with national agencies. Our starting partnership is with the members of the National Convergence Initiative which is chaired by the DA – the Department of Agrarian Reform and the department of Environment and Natural Resources. However, other national agencies may come into this partnership.

    The NCI has adopted an ecosystem approach to rural development and governance: From ridge, through river, to reef. We bring to it our commitment to a broad-based approach favoring small producers and farms, but using information and organization to achieve the needed scale in planning and marketing, “from farm to table.”

    Partnerships with local governments. Devolution demands this. We need to work with the DILG to assist LGUs to integrate agriculture and fisheries into their local development plans. This calls for technical assistance and capacity building, and strategic project partnerships.

    Partnerships with NGOs and people’s organizations. The two or more million farmers and fishers are the backbone of the production system. They need to be organized and also developed to become farmer-technicians, farmer-scientists, and farmer-entrepreneurs. To accomplish this, we need to partner with rural development NGOs who are willing to work within a shared Agri-Pinoy framework.

    Partnerships with the private sector. Our Agri-Pinoy framework of “farm to table” requires that we partner with many stakeholders, and the private sector play crucial roles across the whole value chain. In addition, it is government policy to promote public-private partnerships especially in larger projects.

    In forging partnerships, we follow the principle of diversity. We are open to work with different organizations and even different political persuasions, so long as they are willing to enter into principled partnerships, based on the principles of Agri-Pinoy.
      





Monday, January 4, 2016

Philippines makes headway in Japonica rice production



Rice production is important to the food supply in the Philippines, with rice being a staple of the Filipino diet.

The Philippines, a tropical country, is home to Indica rice.  Japonica rice, one of the two major eco-geological races of O. sativa, thrives well in temperate countries. 

Japonica is a relatively short plant with narrow, dark green leaves and medium-height tillers. Its grains are short and round, do not shatter easily and have low amylose content, making them moist and sticky when cooked.

Cavite State University professor Antonio G. Papa said a study by CvSU researchers titled “On-farm Research Trial on the Adoptability of Japonica Rice Varieties in Cavite” yielded positive results.

The study showed that the three National Seed Industry Council’s approved Japonica rice varieties were suited for tropical cultivation, particularly in the Philippines.

Using three approved Japonica rice varieties by the National Seed Industry Council, namely: NSIC Rc170 (Maligaya Special 11 or MS 11), NSIC Rc220 SR (Japonica 1) and NSIC Rc242 SR (Japonica 2) in the trials, results showed that the yields of the newly approved Japonica varieties were comparable to that of Indica varieties which are best suited for tropical cultivation.

Papa said results of the study showed that the yield of the three varieties during the dry season were high, ranging from 4.3 to 4.6 tons per hectare.

However, only MS 11 had considerable yield during the wet season cultivation with 2.7 tons per hectare.    

“Results further indicate that cultivating Japonica rice in Cavite would generate increased income for lowland farmers,” Papa said.
 
Of the three Japonica varieties, MS 11 yielded the highest profit, both as raw palay or milled rice for both seasons. Japonica 1 and Japonica 2 are preferably cultivated during the dry season than wet season.

“Higher income could be observed if the farmer sells his produce as milled rice than as raw palay. Approximately, a farmer can generate annual net income of P113,059.22 from raw palay and P179,018.37 from milled rice in a one-hectare lowland farm planted to Japonica rice varieties,” Papa said.

Papa said the cultural management practices for Japonica rice production are relatively similar to that of Indica rice varieties which are known to be well adopted in Philippine conditions.

Apart from this, Japonica rice commands higher price than the typical Indica rice varieties because of its excellent eating quality, making it more profitable for rice farmers.

Sensory evaluation results showed that both MS11 and Japonica 2 have no aroma, no off-odor and no off-taste and are cohesive, glossy, tender and smooth. MS11, however, was bland while Japonica 2 was slightly tasty.

The research project was funded by the Department of Science and Technology-Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development (DOST-PCAARRD), in partnership with the provincial government of Cavite.

 





Monday, December 14, 2015

National Food Security Needs Our Young Scientists



The Filipino youth is being harked upon to enter the field of the sciences, specifically into agro-biotechnology. This will enable the country to ensure its food security. This was disclosed by agriculturists at a recently held biotechnology convention. “We need the young ones, our future scientists and agriculturists, to continue our works for the agriculture sector, so that more food will be served on our table in the next years,” Rita Laude of UP Los Baños (UPLB) said at a science and technology forum on agri-biotechnology during the National Biotechnology Week celebrated by the Department of Science and Technology (DOST) last week.

Laude, who gave a presentation on “Genomics Overview and Its Application in Crops,” said that agri-biotechnology was seen as a field of science that can address global concerns on food security.

Genomics has been in use in agriculture for some time by now and it has resulted in increasing the yields of crops, make the crops more resilient to climate change and infestation by parasites.  The sequencing of the genome of plants, animals and microorganisms has resulted in understanding the dynamics and their interplay within the whole ecological framework.

The Philippines, despite its vast fertile farmlands, might face a possible food shortage if the government will not invest in biotechnology, experts warned at the forum.

In a discussion dubbed S&T Forum on Agri-Biotech held in the recent National Biotechnology Week (NBW) 2015 at SM Dasmariñas in Cavite, scientists and agriculturists from the DOST-Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development (DOST-PCAARRD), UPLB, and UPLB – National Institute of Molecular Biology and Biotechnology (UPLB-BIOTECH) discussed the programs, processes, and researches associated with biotechnology and genomics, with mostly agriculture and biology students in the audience.
The other speakers at the forum were Hayde Galvez of UPLB who discussed the “Coconut Genomics Program” of the Philippine Genome Center Development Program for Agriculture, and Mannix Pedro of UPLB-BIOTECH who presented his group’s project on the development of a plant biostimulant funded by PCAARRD.

A biostimulant is any substance based on natural resources made into a specific form and applied to plants, seeds, soil and others to stimulate the natural processes of plants and make them benefit from nutrient efficiency.







Thursday, December 10, 2015

The SC kills Bt talong, and takes down Philippine science as well




By: Michael Purugganan
 
“No consensus on safety,” says the headline as news outlets reported yesterday that the Supreme Court has banned field trials for Bt talong, a GMO eggplant developed to resist pests.

I have no words. But as a scientist and as a plant biologist, I have to speak up.

There is clear consensus! Ask the various national academies of science around the world, or the various independent scientific professional societies. They have concluded that GMO technology is safe. 

An Italian research in 2014 published a major review of 1,783 research papers, reports and other material on GMO safety in the journal Critical Review of Biotechnology. They found “little to no evidence” that GMO crops had a negative impact on the environment. 

In a review of European Union-funded research on GMO safety conducted between 2001-2010, the European Commission concluded that there is “no scientific evidence associating GMOs with higher risks for the environment or for food and feed safety than conventional plants and organisms.” The EU Science Adviser Anne Glover declared publicly that GMO crops are safe – and was fired last year in part because she dared tell the world what the scientific community had concluded.

What the SC ruling stops is work by UPLB scientists who engineered the Bt protein into eggplant, rendering it immune to the ravages of insect pests. 

Bt is so safe, even the organic farming community certifies it can be used as a spray in organic farms. Bt corn, soybean and cotton have been grown since the mid 1990s in the US and elsewhere over tens of millions of hectares. There has been no scientifically credible evidence that growing these Bt crops over the last decade has had a substantial environmental impact. And because of the introduction of Bt crops, insecticide use has been lowered in farms that carry these GMO crops, reducing the exposure of farmers and consumers to synthetic insecticides.

But there is a larger context to this issue that strikes at the heart of our ability as a nation to harness modern technology for our own needs. 

In this one ruling, the Supreme Court just declared that the Philippines should no longer invest in this technology. They have set a high bar for allowing GMO trials by our scientists, a bar so high that no one can reasonably overcome the legal obstacles they have put in place.

Shackled scientists

The SC has just halted a major avenue for scientific research in our country, and has ceded future agricultural progress to the developed world, to China, or other countries that are using this technology to develop the next generation of crops. 

This SC ruling guarantees we will never be able to develop this technology for our own country. In 5-15 years, when it becomes clear that GMOs are the key to feeding the world, we will have to depend on other countries to provide the technology because we prevented our own scientists from working it out. 

Remember whom this decision affects. The big agricultural companies such as Monsanto will continue to work on GMO crops in their US labs, where there is no restriction on their work. This ruling affects our own Filipino scientists, those who have been working hard to develop biotechnology as one of the tools we can use to help our own farmers. The ones who are now shackled are the scientists at UP Los Baños, or PhilRice, or those hardworking researchers at any other agricultural laboratories in the country. 

In the next decade, our country will face enormous challenges. Our population continues to rise and we continue to need to import food because our farms do not have the yields that allow them to feed everyone in the country. Climate change is altering weather patterns, and we also urgently need to develop new crops that can withstand drought, salt water, or even flooding.

GMO crops provide a potential safe and targeted way to help our farmers feed ourselves. It is not the only answer to our food security issues, but every major agricultural scientist agrees that GMOs will be an important tool in helping feed our country (or the world, for that matter). 

This Supreme Court ruling has just decreed that, when we find out we need it the most, our own scientists will be unable to use this technology to bring new crops to the field. At that future day, not long in coming, we will find ourselves completely at the mercy of the big agricultural companies who have continued to work this technology out in their corporate labs. 

Our scientists had a chance to work with this technology and help develop crops made by Filipinos, for Filipinos. The SC, metaphorically, just shut down their labs. – Rappler.com

Michael Purugganan is a Filipino scientist, and is the Silver Professor of Biology and the Dean of Science at New York University.

Source: http://www.rappler.com/thought-leaders/115436-sc-kills-bt-talong-takes-down-philippine-science?utm_content=buffer18a74&utm_medium=social&utm_source=facebook.com&utm_campaign=buffer





Wednesday, December 9, 2015

Bt Talong Field Trials Stopped



Field testing for genetically modified eggplant, also known as Bt (Bacillus thuringiensis) talong, has been permanently stopped by the Supreme Court (SC), while applications for the contained use, field testing, propagation, commercialization, and importation of genetically modified organisms (GMOs) have been temporarily halted.

On their last regular en banc session for the year on Tuesday, high court magistrates upheld the Court of Appeals (CA) in permanently stopping field trials for Bt talong.

The CA ruled that existing regulations by the Department of Agriculture (DA) and the Department of Science and Technology (DOST) are "insufficient to guarantee the safety of the environment and the health of the people."

Using the Rules of Procedure for Environment Cases, the appellate court stressed that "over-all safety guarantee of the Bt talong 'remains unknown.'" The CA issued a writ of kalikasan against respondents led by Greenpeace Southeast Asia Philippines, and held hearings on the petition.

The petitioners in this case before the SC, which sought a reversal of the CA ruling, include International Service for the Acquisition of Agri-Biotech Applications, Inc., Environmental Management Bureau, Crop Life Philippines, University of the Philippines Los Baños, and University of the Philippines.

The SC, after reviewing the findings of the CA, stressed that scientists failed to come up with a consensus on the safety of Bt talong which, in turn, reflect the "divergent" and "continuing international debate" on GMOs.

"In sum, current scientific research indicates that the biotech industry has not sufficiently addressed the uncertainties over the safety of genetically modified foods and crops," the high court said.

The high court further said that GMO field trials in the Philippines under DA Order 08-2002 showed that the said administrative order does not meet the minimum requirements for safety under Executive Order No. 514 which established the National Biosafety Framework (NBF).

For this reason, the said order was struck down.

"The Court found that the NBF under EO No. 514 mandates a more transparent, meaningful and participatory public consultation on the conduct of consultations with some residents and government officials, and submission of written comments as provided in Order 08-2002.

"The Court found that petitioners simply followed Order 08-2002 but no real effort was made to operationalize the principles of the NBF in the conduct of field testing of Bt talong," the high court stressed.

Because of these, the high court concluded that "the DA lacks the mechanisms to mandate applicants to comply with international biosafety protocols."

Source: http://www.abs-cbnnews.com/focus/12/08/15/sc-permanently-stops-field-trials-of-bt-talong






Thursday, December 3, 2015

Science and Technology based Practices for the Phil. Mango Industry



Sustained by strong S&T-based practices, the country’s mango industry is expected to hurdle the growing demand as well as the stringent export requirements of its neighboring countries for quality and safe mangoes. These demands are seen to be tougher with the advent of the ASEAN integration. 

With Integrated Crop Management (ICM) and Postharvest Quality Management (PQM) technologies serving as its strength, the country’s mango industry proves its readiness to address the above-mentioned concerns, especially after these technologies have proved to adequately address serious concerns on mangoes’ insect pests and diseases.

Developed through careful research, ICM and PQM consist of traditional and modern S&T-based practices that complement with the Good Agricultural Practices (GAP) for Mango.



ICM involves cost-effective, need-based pesticide spray program and improved cultural management interventions such as canopy development and pruning, sanitation, and bagging. These practices improve plant health and fruit yield through reduction of pest and disease incidence and promotion of plant growth and development.

PQM, on the other hand, involves postharvest handling practices to maintain freshness and safety of mango fruits while being brought to the consumers. It also focuses on meeting buyers’ specifications and trade requirements. These practices cover harvesting to transport. They include insect and postharvest disease management and quarantine treatments, packaging, and ripening.

The Department of Science and Technology (DOST) and the Philippine Council for Agriculture, Aquatic and Natural Resources Research and Development of the DOST (DOST-PCAARRD) funded the development of these technologies. 

Adoption of ICM and PQM has increased volume of harvest, recovery of quality fruits, and income of mango stakeholders. It also enabled local farmers to regulate the use of pesticides and other chemical inputs.

DOST-PCAARRD, through its partnership with government agencies and state colleges and universities, promotes the adoption of ICM and PQM practices to mango farmers in mango producing areas. These include La Union, Pangasinan, Isabela, Nueva Ecija, Tarlac, Bataan Pampanga, Zambales, Bulacan, Batangas, Laguna, Quezon, Guimaras, General Santos, Sultan Kudarat, South Cotabato, Sarangani, and North Cotabato.

The project involves Don Mariano Marcos Memorial State University, Pangasinan State University, Isabela State University, Central Luzon State University, Bulacan Agricultural State College, Tarlac College of Agriculture, Bataan Peninsula State University, Pampanga State Agricultural University, University of the Philippines Los Baños, Bureau of Plant Industry-National Mango Research and Development Center, and Sultan Kudarat State University.

At present, 20 mango clusters, composed of 155 growers and contractors, are provided with hands-on training and lectures on ICM and PQM. Success stories have been documented in the mango clusters after shifting from traditional to S&T-based practices.

Such stories have encouraged more farmers to adopt ICM and PQM in their mango farm.

The clustering strategy enables the experts to guide the mango cluster members in implementing ICM and PQM in their farms. Through the scheme, the members also learn from each other’s experiences on mango production and postharvest practices.

DOST-PCAARRD, together with its partner agencies, hopes to replicate success stories in all project sites and enhance the involvement of local government units to sustain the adoption of the S&T-based practices in mango production.

The research and development initiatives to ensure quality and safe mangoes with the use of S&T-based practices is one of the many initiatives of DOST-PCAARRD in connection with Outcome One.

Outcome One seeks to provide science-based know-how and tools that will enable the agricultural sector to raise productivity to world-class standards.






Wednesday, December 2, 2015

Possible Food Shortage in the Philippines



A bio-technology expert said the Philippines could face a food shortage if the government fails to implement a sound food security policy that encourages the use of modern, agricultural biotechnology.

Dr. Harvey Glick, senior expert for Scientific Affairs for Asia of Monsanto Asia, told members of House special committee on food security that current practices in local agriculture are not enough to satisfy the growing food requirements of the people.

As the country’s population hits 101 million, Glick said demand for food is increasing each year but agricultural production remains at 2000 levels.

He said more farmers should be trained and encouraged to use biotechnology as the method of modern plant breeding allows for the development of high yielding crops.

Glick cited a 2014 research that shows 147 other published findings on the impact of biotech crops.

Among the findings include a 22 percent increase in crop yield, 37 percent reduction in the use of pesticides, and a resulting 68 percent increase in profitability, mainly due to higher yield alongside the lowered cost of production,” Glick said.
Business ( Article MRec ), pagematch: 1, sectionmatch: 1

AAMBIS-OWA party-list Rep. Sharon Garin, chairman of the committee, said it was the first time that an expert in the field spoke to legislators on the important role of biotechnology in food security.

“We need this knowledge to decide on whether to pursue it as one of our advocacies in the 16th Congress. I gladly accepted this opportunity to hold this forum because it could enlighten us, not only the legislators, but also of other stakeholders of the potential of biotechnology and the issues it currently faces,” Garin said.

Compared with other nations in the region, the Philippines leads in allowing farmers to choose whether to use modern or conventional methods in corn farming, Glick said.

He however said the government should do more and encourage more farmers to use  modern farming methods to at least satisfy local requirements.

“I acknowledge the leadership that the Philippines has shown for being the very first country in Asean and Asia to allow their farmers the choice of using either conventional or hybrid corn. Other countries are only catching up in terms of corn production, like Indonesia and Vietnam which  have only started adopting the use of this technology,” Glick said.

He said as of last year an estimated 18 million farmers were using these new varieties of corn, soybeans, canola, and cotton that have been improved through biotechnology.

Glick  said 28 countries have already given their farmers a chance to plant these new and improved varieties.

He said food security entails sufficient nutrition for all.

“The challenges of food security in the Asean is very clear: The population is growing, and the demand for food is growing very quickly. In fact it is growing faster than the production of food crops. Farmers are requesting scientists to develop high-yielding crop hybrids that are also resistant to weeds, insectpests, and stress such as drought, in order to conserve on resources,” Glick said.
 
Source http://www.philstar.com/agriculture/2015/11/29/1526943/expert-warns-possible-food-shortage-philippines#sthash.JhXju1uJ.dpuf





Tuesday, December 1, 2015

Growth Industry: Philippine Native Pig Raising and Breeding



The Native Pig Industry Association of the Philippines is going full blast towards 2016. During their seminar on Effective Management for native pig breeding and raising held at the Quezon Memorial Circle last November 28, 2015, Mr. Ferds S. Medina welcomed new members of the industry association and conducted a seminar on native hog raising.

The topics included were native hog identification and physical characteristics, economic outlook on the native pig industry and tips on feeding, weaning, proper housing, health maintenance and even marketing.

The seminar also put emphasis on feeding and weaning of native piglets. The right mixture of organic and inorganic feeds was discussed at length by Mr. Medina. The need to give the native pigs access to ranging areas so that they could avail themselves on organic food.  Included in the presentation were local food sources and the kind of feeds that are ideal for native hogs.

The selection of native pigs based on proper physical characteristics were discussed as well and an important section on the health maintenance of the hogs. Common diseases were featured and the necessary steps in managing the health of the animals.

Another subject that generated interest was the EcoPig Landless Farming Program. This program allows those who do not have farmlands or a piggery compound to engage in the raising and breeding of native pigs thus generating revenues from their investment. This was crafted so as to take advantage of the potentials of the native pig industry.

The advantages of raising and breeding native pigs is that it is highly sought for the lechon industry, high value meat, adapted to native conditions, economic advantages, relatively healthy (its cholesterol content is less than the commercial breeds) and it is “organic” in nature.

The target market includes:

Lechon industry
Breeders
Medical Research

Its meet products can be made into:

Longganisa
Bagnet
Bacon
Tapa
Etag
Organic Pork Meat 





Friday, November 27, 2015

Use of Seaweeds Boosts Rice Yields by up to 65%



The Philippines supplies 80% of the worldwide demand for Carrageenan and this might just be the answer in increasing rice productivity in the country. Carrageenen is a carbohydrate found in edible seaweeds was found to increase rice yields by 63.6% to 65.4% according to scientists based at the National Crop Protection Center (NCPC) at the University of the Philippines Los Baños (UPLB).

Field trials made in Bulacan disclosed that small portions of carrageenan added to fertilizers resulted in an increase in the weight of grains. The NCPC team led by Gil Magsino found that by adding 29 milliliters  per liter of carageenan to 3 to 6 bags of fertilizers per hectare resulted in an increase of grain weight by 450 to455 grams as compared to grain weight of  275 grams that is the result of the usual methods of Filipino farmers.

The research was funded by the Philippine Council for Agriculture Aquatic and Natural Resources Research and Development of the Department of Science and Technology.

Previous studies showed that when carrageenan is degraded or reduced to tiny sizes through irradiation technology, it can promote growth in rice plants and make it resistant to certain pests. Thus, at very small doses, it becomes an effective natural fertilizer.

Higher yield, more savings

Carrageenan can improve rice productivity by strengthening rice stems which, according to the Department of Agriculture, helps prevent lodging or when stems become too weak to carry the weight of the rice grains that they fall to the field.

The substance can also promote resistance to rice plant diseases like the rice tungro virus and bacterial leaf blight.

“This innovation of applying seaweed as fertilizer empowers our farmers to have access to cheaper but highly effective plant growth enhancers that boils down to improved harvest and increased income,” said Science Secretary Mario Montejo.

Because the use of carrageenan was found to decrease the number of bags of fertilizer needed per hectare, this could mean bigger savings for farmers who devote much of their expenses to farming inputs.

The government’s finding could also impact other agricultural workers, namely seaweed farmers, by boosting demand for the substance.
Seaweed is heavily farmed in places like Tawi-Tawi, Zamboanga, Bohol, Cebu, Leyte, Samar, and Antique. In fact, the Philippines is a major global supplier of carrageenan. In 2011, it reportedly supplied 80% of the world's seaweed needs.

It is commonly used as a thickener or stabilizer for food products like ice cream and salad dressing, or as a binding agent for toothpaste and shampoo.

Source: Pcaarrd DOST





Thursday, November 26, 2015

Not Your Usual Vegetables at the Negros Showroom Market

On Tuesdays and Fridays, a farmers' market occupies the parking space at the Negros Showroom on Lacson Street. Early morning joggers, and the meticulous, health-conscious set make a stop here, and office people find this a convenient, welcome addition to an urban commercial strip.

The farmers themselves bring and sell their fruits and vegetables in this space. From farms in San Carlos City and Barangay Patag, Silay, these crops are transported in protective crates, not sacks, as a rule. Another rule is that only potable water should be used in the final wash of the produce. These rules are just part of the major reason why these fruits and vegetables are not the usual. The fruits and vegetables available at the Negros Showroom farmers' market are GAP-certified.

GAP stands for “Good Agricultural Practices,” the certification of which is issued by the Bureau of Agricultural and Fisheries Product Standards (BAFPS).

The Philippine GAP certification, adopted from the ASEAN and the global GAP, is an export requirement. Therefore, the produce at the Negros Showroom farmers' market are export quality.

A hallmark of a farm that is GAP-certified is its traceability. In the Code of Hygienic Practice for Fresh Fruits and Vegetables of the Codex Alimentarius Commission, “traceability is the ability to follow the movement of produce through specified stages of production and distribution.”

Traceability means that one is able to identify the source of a crop, the conditions--whether of soil, water, weather, or farmer--with which it was planted, grown and picked, and even the farm inputs administered on it. Farm lots are properly coded, mapped, and fenced, water is analyzed for cleanliness, and fertilizers and pesticides are kept at the safest levels. All these agricultural activities and information are duly recorded and maintained for two years.

Good Agricultural Practices strictly uphold food safety, environmental protection, and worker's health, but if issues on these arise, traceability ensures that things can be tracked, addressed and corrected.

From planting, to harvesting, to selling, traceability gives vegetables a history that confidently deals with questions like, how far back into the chain can you claim that a product is “safe”, “fresh”, “clean”, “chemical-free”, and “fair trade”?

Indeed, these fruits and vegetables sold at competitive prices at the Negros Showroom farmers' market are not the usual; not the usual because these are unlike most of the crops in the local market that fall below food safety standards.

In the Philippines, only 39 farms are GAP-certified. Three (3) of these are farmers' organizations are in Negros. The members of these are mostly agrarian reform beneficiaries. They were all trained in GAP, qualified, and are continuously updated and linked to market.

A program called OURFood, or “Optimizing and Upscaling Roles in the Food Supply Chain” of the AFOS Foundation from Germany guides them in GAP. Its local partner is the Association of Negros Producers (ANP) which runs the Negros Showroom.




Margarita Fores discusses the “The Philippines' Ark of Tastes” at Slow Food Summit in Negros

BACOLOD, Philippines - The Third Speaker at the Slow Food Summit is famous for her expert hand at modern Itialian Cooking that gave the public Cibo, Lusso and Grace Park.Her talk is entitled,  “THE PHILIPPINES’ ARK OF TASTES”.  The Slow Food Negros Island Summit, one of the projects of the Slow Food movement which draws attention to endangered food products in the country, on November 27, 11:00 AM at the Social Hall of the Provincial Capitol, Bacolod City.

At the
Slow Food Negros Island Summit, chefs, farmers, slow food advocates—even converts—will unite to give interesting insights on the most pressing issues about food, our food systems, and the way we eat.  

At the summit, an introduction to Slow Food will be made by Pacita Juan, Reena Gamboa-Peña, Mia Gonzaga and Dr. Anabel Villanueva at 8 to 9 a.m. of November 27.

Ige Ramos will speak on “Tuklasin ang Katutubong Kulinaryo ng Pilipinas (discover Filipino dishes) at 9 a.m., and Nico Aberasturi -Homesteading Growing Food Instead of Lawns at 10 a.m., Villanueva said.

Margarita Fores will discuss the “The Philippines' Ark of Tastes” at 11 a.m., Hindy Weber Tantoco and Melanie Go – The Holistic Life at 1:30 p.m., Amy Besa – Green is Gold in Negros at 3 p.m. 


A Slow Food tasting by the Slow Food Negros Island Convivium will be held at noon.



Slow Food Negros Island is a group of volunteers dedicated in saving endangered food, celebrating gastronomic traditions, promoting good, clean, and fair food, as well as building a healthy relationship among producers, chefs, and consumers.

Slow Food is a global, grassroots movement founded in 1989 by Carlo Petrini and a group of passionate individuals. It started when an international fast food franchise expressed its interest in opening a branch at the famous Spanish Steps in Rome, Italy. The citizens protested by sharing a big bowl of penne pasta with the crowds and began chanting “we don’t want fast food, we want slow food.” Perhaps it was the first time that it was officially coined, the tedious processes of producing and preparing various ingredients for select dishes like cheese, wine, fish, meat, as well as the traditional cooking methods have always been practiced in different parts of the world. After that incident in the ‘80s, what started as a protest to fast food grew to a global movement active in over 100 countries.









 

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