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Monday, May 31st, 2010

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E.extension capacity building and to improve agricultural productivity in India

Summary
Green, white revolutions and blue, gave us food security. The high-yielding varieties and new technologies were webbed and agriculture chemicals. Even today, we have significant gaps in terms of productivity of cereals between farms and technology with traditional farming practices. Chemical farming has led to degradation soil, water pollution, soil erosion and salinity. A Today, we face problems of land degradation on 173 million hectares which is approximately 53% of cultivated land. Every 5000 years we lose topsoil Ringtones million dollars with NPK losses of 5-8 tonnes per year.
Mahrastra In a survey showed that black soil depth of 60 cm in 1910 which has now been reduced. About 18% of it has transformed the shallow soil. Reduction of soil depth has resulted in low productivity, increased runoff and soil drought like conditions. Therefore, to avoid these effects negative, we have solid information linking and communication methods for mapping soil, annual rainfall data, rainfall and forecasts climate with farms (Wani, 2005).
Resource conservation and proper use of adequate knowledge needs, which may be obtained by the system satellite peak and was based again through the mechanism of communication. Thus, to improve agricultural production, communication tools should be use.
It is time for sustainable agriculture. We use sewage sludge, farm waste manure cakes patio, municipal waste and green waste for increases in phosphorus, nitrogen and micro-nutrients in the soil. It was found that these substitutes have a capacity to 1-2% of phosphorus and nitrogen and provide 40-45% more than trace elements. Therefore, a new draft strategy for the use of crop residues tree leaves, garden waste residues and other machinery agricultural soil improvement should be advocated.
Although use a value of 3.5 billion rupees pesticides. In urban India, pesticide use 1000 crores at home. In 1948, the malaria life of 2-8 million people in Malaysia. With the use of DDT brought the death toll to 17 in 1963. Therefore, a balance between food security and environmental purity must be maintained in developing countries. This interview is a balance between food security and environmental protection or purity. The ways and means to this end should be discussed in this document.
1. Introduction
The green, white and blue revolutions gave us security food. The high-yielding varieties and new technologies were webbed and agriculture chemicals. Even today, we have significant gaps in terms of productivity of cereals by the use of technology and traditional farmer produced in the area. Chemical farming has led to soil degradation, water pollution, soil erosion and soil salinity. We now face a problem of land degradation on 173 million hectares, which is about 53% of cultivated land. Every 5000 years we lose topsoil Ringtones million dollars with NPK losses of 5-8 tonnes per year. Mahrastra In a survey showed that soil depth Black was 60 cm in 1910 which has now been reduced. About 18% of it has transformed the shallow soil. Reduction of soil depth has resulted in low productivity, increased soil runoff and drought like conditions. Therefore, to avoid these negative effects, we need to link information solid and communication methods for mapping soil, annual rainfall data, rainfall and weather forecasts to Farms (Wani, 2005). Conservation of resources and the proper use of appropriate knowledge needs, which may be obtained by the satellite system peak and claiming through mechanism communication. Therefore, to improve agricultural production of communication tools should be used.
2. Tenure
We have to use more technology-based culture systems to increase productivity of the plots. horizontal expansion is not possible. Prohibition of indiscriminate use chemical fertilizers, pesticides and other agricultural products used agent is another obstacle to increasing the productivity of foodgrains. Unfortunately, our cereal production has decreased the rate. The growth rate of 1-2% has put pressure on our economy. Imports of cereals, anomalies in the last decade, the problems caused needs analysis.
The whole system of national agricultural research, extension and field officers have reported of fatigue. Similarly, degradation of soil mineral depletion mechanism and the new demands of pollution of the environment to increase productivity. Such time use electronic media, e-extension and agrarian reform in the form of revised system KVK, ATMA, the level of development of rural people, groups and information Mutual agro-KIOS needs introduction. State Agriculture Management and Extension Training Institute (Samet) can help make adjustments to our operating systems to integrate agriculture, aquaculture, water conservation and the benefits gained by acquiring new technology-based companies. This policy requires the maintenance farmer-friendly and sustainable agriculture. In these pages we will discuss the role of communication in the application of agricultural technologies to increase productivity and profits per unit of land. awareness and application of technology is bound to produce more per unit of land. We are fortunate that our yields are lower than those of many counties and even neighboring countries (Samra and Sastry, 2002).
3. Organic farming.
Organic Agriculture is recommended that modern technology. We left our traditional organic agriculture for the adoption of chemical agriculture as landed into trouble. This rotation of modernity and traditionalism that high taxes. We can be a leap in technology adoption or test without comparing them with our own practices. Now back to our own traditional way is fraught with problems too. The questions are often asked, can maintain or even maintain our level of productivity through organic?. The mixture of modern day technology and traditional technology in recent years, they can respond to this question. information and communication skills and the bridge of technology a new union?
4. Information and Communication Technologies
The information for today and Communication Technology overrun all barriers of race, religion, culture and country. A comprehensive review of 23 documents and a dozen books and journals has by (Wania, 2005). A detailed description of how communication and information can help maintain yields and production has been discussed (Wani, 2006). early warning systems for high-risk climate, floods and cyclones, pests and mites can help to increase awareness of cultures. Agriculture and knowledge in the press, mass emails is now possible. The role of competitive agriculture, study and economic evaluation agriculture and the integration of women needs attention. Women, half the agricultural labor force still lacks technology skills. Barriers customs, the veil, religious and social servitude could be overcome by educating them on television, tapes, emails or other devices modern communications.
5. Phyto Remediation
Technology transfer is easy. We can share technology practices or even to demonstrate. The key issue is its adoption. India with 25% of its GDP devoted to agriculture about 12% of its GDP on subsidies and the transfer technology. The mixture of agricultural export subsidies drastically reduce the scope of WTO agreements. The limit for global market access for imports of 3% is further complicated matters. International standards of sanitation is necessary to increase the farmer's door. Our exports of products from 12 agricultural farm products has been far and export almost 18.45% in agricultural fitness of beekeeping flowers, fruits, mushrooms, spices, sugar, molasses, rice, tropical fruit juices, pulp, concentrates and even agrochemicals. Fruits and vegetables have increased our export earnings. Our limitations in the expansion of our exports are to provide the global infrastructure Biosafe packaging, sanitation and quarantine of plants. Our yields are too low for compete with others. Thus, technology transfer should not be limited to procedural guarantees, the publication of brochures, flyers, newsletters, newspapers, magazines, press interviews published on paper, rural agricultural emissions or on television, but must be supplemented by video conferencing, through campaigns awareness of the population, including videotapes, books and other cable television network to local farmers. Propaganda, advertising and persuasion must have communication skills as rural journalism, popular participation, motivation and more with a systems information management.
Visits to farms, farmers' calls, letters should be intensified. Farmers need information about markets, organic standards and marketing research and mechanisms for networking.
6. small producers of small
Another vulnerable group India is small (owner). Over 65% of our farmers are smallholders. Technologies are generated for most commercial producers. The Los small producers have limited not only to seize the land, but also in the information. His case is more complex because they no longer work for small farms that are not are not enough to support them. They have limited access to knowledge. Even the word or Bauern Ländlicher Gebiete (German), a farmer or a country (in English) campaign, Bush and farmers (in French) and the Field / Spanish Peasant designate the extension work is a mission. One love for the countryside and farmers alone could perform this task successfully. It must be very familiar with the objectives, problems, objectives and implementation process. Analysis should be of the situation and avoid confrontation group in the country. Thus, knowledge and experiences of farmers, psychological values, expectations, needs and attitudes should be organized. This organization and the evaluation is not possible without the use of modern communication methods and apply. Communication with the welding technology Agri-is the need of the hour.
7. Communication Methods
Transmission of information to farmers is an important foundation of any outreach activity. Need basic processes of learning is communication.
Factors influencing the communication range of a person his personality, his social relationships, knowledge, social and economic parameters of the farmers. Their expectation of knowledge, experience and perceived need for monitoring and evaluation prior to transfer of technology.
8. Review of Communication v. Agricultural Production

I. reducing the achievement gap critical.

In Kenya, the use of advanced information and communication technologies reduce differences in yields between research and agricultural fields of the farmer. (Ogui and Bellamy, 2001). A country with a population of 70% is related to agriculture for their livelihood, directly or indirectly 80% of its agricultural exports are going. The reduction in yield spreads by effective use of information and communications will have a big impact.
II. Climate Risk communication
The low productivity of soybean taken into account due to the adoption of the recommendations partial production of farmers Mahrastra, India. The low yield factors were analyzed. Economic constraints, factors and communication gaps in agricultural production, protection, seed treatment and fertilizer application have been found responsible (Jaiswal et al, 2002).
The modernization of equipment and technology has enabled Cuba to increase agricultural production and rural development on a pilot basis (Albelo. et al. 2002).
9 .. Precision Agriculture
Profile Precision Agriculture focused on a specific site collection data for the management of land and crops. Technologies for field operations, typical of that place and automated registration data are available, but rarely affect the improvement of precision agriculture. Application of precision agriculture should be beaten with the information and communication networks for profit and improve productivity. This network can consist of an open software platform, which can be exploited by the farmer himself. Internet for effective communication and communication phones have been identified as important. The development of information and communication network incorporating a modern software (Java, GIS) and hardware (GPS, Internet) technologies in a new user friendly manner is necessary to achieve greater acceptance of technology and productivity improvement (Lütticken, et al 2000).
10. Satellite data communications source
The use of satellite data (Star and Point – lite) helped time – dependent critical applications in Australia. The Australian Centre for Remote Sensing (acres) has introduced a new service to provide satellite data real-time applications. The STAR (Speedy Transmission after receiving) provides access to digital product data in high resolution satellite or compressed format within 12 hours of satellite overpass. Data from ground stations is processed at a facility through a communication link with high speed and priority treatment. This system provides satellite data for critical applications such as modeling of crop yields before harvest forecast production of crops, crop disease detection, monitoring crop stress, pest infestations, floods, fires and oil spills.
SPOT – LITE is a cost down and out tray ACRES satellite data product is ideal for use in a geographic information system (GIS). SPOT-LITE ® can be accessed anytime via Internet and is available in the form of tiles that cover most of Australia (Thankappanm 2001).
Preliminary studies applications to increase agricultural production needs to spread rapidly. The effect of rooting zone restriction (RZR) on vegetative growth, reproductive fruits namely fruit trees, grapes, peaches and citrus fruits was investigated. We know that productivity has improved crops of low water availability. (Wang et al. 2002)
11. communication networks
The means of communication available to agricultural information in India's 15 states surveyed. (Ghosh, 2002). The results suggest that although the communication networks opens the agricultural economy is not profitable. The creation of communication networks must be profitable efficient.
The attempt to better communication between the different divisions of Forestry Research and other organizations interested in sustainable forestry have shown encouraging results. (Barbour and Wong 2001)
An attempt was made for the rapid flow of information between researchers and extension workers and producers dairy in East Azerbaijan, Iran. The input, output and communication between the systems studied. The communication link has improved productivity. (Rezvanfar, 2001)
The basic tools of the marketing of fertilizers premotion India has been studied. (Yadav, 2002). Information as advertising, public relations and personal selling was found to be the best promoters.
In the "Unique Selling" approach to target the effects of communicator. The impact of an integrated approach that uses teams of agricultural information dissemination in Greece and Poland were studied. (Tzortzios et al 2001). The gap in technology known and applied in the field of farmers has been found. The researchers are not trained in the use of new information technologies. Therefore, improving agricultural productivity should keep pace with advances in communications and information technology using computers.
problem of joint sessions the communications network solution and information on agriculture has improved sugar cane production in Mauritius (Jhoty et al, 2001).
12. Technology Foresight
The technological gap between research yields and the yields are large farmers. The technological know-how generated in recent years is still on the shelf. Much of it is stuck, if not dead in the front of the institutions. The location accurate, crop and soil specific innovations in agricultural practices are few. Our integrated and mixed farming practiced by the needs of our farmers improvements that are not recognized to come. Our research centers most experiments imitated in commercial agriculture in the west, with some modifications and additions with the same period. Our Traditional farming still exist in remote areas vormiculture include the use of manure and use of agricultural waste. Problems Current soil fertility, reducing yields and soil salinity have emerged due to overuse of chemical inputs in agriculture, with little care for land.
This scenario resulted in incomplete due to innovative approaches to research. Our researchers blindly defended the use of more fertilizers, pesticides and fungicides, which has won the revolutions of the grain, but left a legacy contaminated water, air and soil environment degraded. These revolutions prohibits subsistence future. It is due to poor perception and vision to see the front of the net long-term outcome.
The immediate need is to make researchers similar to the technology Information and communication technologies. The rapid development of information science education requires quick and rapid technology transfer and comments, even farmers who require rapid implementation. Productivity is better that technological advances are adopted and their impact known. Knowledge hardware, software and networking channels of information and points of sale is essential. New Farmer with school concept can solve communication system 70% of farmers on the ground. Kissan Call Center (1551) and is expanding Zraye Paigam messages.
13. Decision Support
Globalization marketing of agricultural products presented new challenges. This is not only performance that counts, but the benefit / cost. Economic viability an important agricultural product details. The product, even if all the economic and competitive world must pass quality tests. Sanitation international phytosanitary standards will be more severe. The emergence of diseases like mad cow disease, or even be linked to cultures Saars animal diseases and other agricultural products Biosafe good agricultural and livestock products. The decision must be supported by information not only in marketing, is security, but also a law regulating agencies and too many regulations. Lack of support system might lead to bankruptcy. Therefore, a strong case for management tools Information and entry into force.
International computer networks and communications systems can only help make the right decisions for agricultural production and economic development. (Tzortzios et al 2001) 20
14. Agri-intelligent.
Now we talk about organic pest control based on Integrated Pest place (MIP). The watchword for the future in this regard is Intelligent Pest Management (IPM). As the system currently does not cover is recommended to spray pesticides chemicals, but intelligent and a well calculated pest management, which incorporates the economic viability and long-term safe and bio products. Such Once a well-documented interaction between farmers, extension education of workers, researchers and policy makers is necessary. Be needed years if the communication method of videoconferencing, satellite internet and technological developments related to communication is not used. That's what the future intelligent farm management.
15. Participatory Management
The whole system of agricultural research and extension education NARS in renovation needs. A system composed LRA must be presented with a strong base of communication and information technology. All programs in the field must be participatory. All organizations whether ICAR, CSIR, RRL, universities, UAS and other institutions and industry should be webbed getter extension systems in the field. farmers more involvement in planning and implementing the project, or mission mega seeds of horticulture is required.
A true system transparent and open selection for management positions and scientific posts should be advocated. Changing standards for persons is a crime. People at high should show the truth of justice and fair play. The task of politics and politicians should be minimal in the delivery system in the country. Awareness through media and is the only viable solution.
16. Vision
1. Mixed cultivation Agricultural University:
greatest productivity gains can be achieved by implementing the recommendations of technology and production in farmers' fields. We have 65% of farmers small and marginal, the potential of awareness is low. The production system in place with these farmers is a mixed farming or compound. Unlike agriculture U.S. and Europe is our need to increase the "factory of livestock and fish farming integrated production system with multiple livelihoods." As So we need innovative policies that our own education and training. A Joint University Agriculture and Education UPS is our need. On Right now we're losing in our need. Quick and prompt action is necessary to unify our educational system, with the participation of all disciplines and agriculture, industries, business sectors and the establishment of farmers.
2. The concerns of increased productivity:
Agricultural India's pride in the years since the green revolution of 1968 saw the reduction of food imports and eventually win white, blue and other revolutions supported our population pressure and agricultural growth. Our rate of growth of agricultural sector (AGR) should be equal, if not more, the population growth rate (PGR). Our goal should be double the PGR AGR.
This is important because the rate of consumption, purchasing power and increase employment prospects. An estimated food grain at 210 million tonnes today may need to double over the next 10 years. We have high productivity growth expanding vertically horizontal land is not possible. Dr. MS Swaminathan cited figures that 160 million tonnes of rice by 40 hac of land, creating the productivity target of 4 t / h. Given that the rational production of 100 million tons wheat 25 million 25 million tonnes of wheat need 4t/hac Hectors productivity. Our goal of doubling the productivity of hac our needs in the extension staff, industry and gross root level.
Climate disasters, earthquakes, tsunamis, floods Titanic, have made our agricultural production in the past and further requirements must be taken into account in planning for food security. We need to increase spending Per capita consumption of Rs.600 per month. We have to close the gap between potential and reality yields in farmers. The dangers of agricultural chemicals low soil fertility, low water availability, pollution and environmental concerns impede our agricultural development. Thus, the sophisticated technology, participatory research and training modules are required. Global Marketing The new pressures. Global trade and tariff regulations must be reconciled. All It will introduce new issues such as post-harvest management, packaging, value-added communication, information services and the credit market in our curriculum. Therefore, a further change in the academic curriculum Multidimensional consideration.
3. Quality Assurance
We are proud that the system of the second Agricultural Research (ARS) in the world. In reviewing our results are not the case in the top ten most recent publications in Agriculture worldwide. United States tops the world list with 3,62,79,842 cited publication / year, with small countries like Switzerland at 10. Scientists put in agriculture is higher in the United States with 27 Publication Lac / year, followed by Japan, Germany, United Kingdom, France, Canada, Italy, Russia, China and Australia. Our contribution to the publication Agriculture is 5.48% only with us for a quote of 2.32%. This requires more emphasis quality assurance. Our main program must be of high quality agricultural education. Our attention has focused on:
The academic quality, accreditation, desired knowledge, assessment, skills and abilities and academic audit. Quality Assurance, ways to consolidate resources, information and maintenance of educational infrastructure. Therefore need to regulate the relationship between subsidies and state-wise center.
4. Employment:
We have been 45-50 Or consider the Central University of Agriculture and universality 200 48 General powers of agriculture. Total disciplines that require subsidies can be strengthened within five years by a grant to each driver quality assurance discipline. We produce 10,000 graduates in 1600 graduated after 5500 and a doctorate in agriculture every year. They are added to the unemployment fund. To be self-employed in new enterprises and jobs increase, it is necessary capacity building in the global economy and trade policies. Biotechnology, bioinformatics, bio-fertilizers, pesticides and fungicides. Development of new teachers in all universities and colleges should be run over the next five years. Such as:
Information and pest management expertise, analysis of the risk management system of decision support, geographic information system. A new level of trust must be paid to the integration of curricular practices on the ground in a way partnership with farmers. A teacher-student-farmer-industry interaction and cooperation should be developed. A new mechanical model in agriculture and programs should be integrated unified and refined in the final results. This will require the inter-and intra Faculty harmony and synchronization of curricula UG, PG and PhD level. It must be crafted to our needs on the ground and location guidelines
5. Asia specific agricultural education:
India's economy is agro-economic center that supports 70% of our population lives in rural employment. Forty-five percent of the revenues from agribusiness is (Agro) Industries. Therefore, tremendous potential and resources are hidden inside. If we think of specific Asia Agriculture, we have to play an important role in the region owns 60% of the world population. The region is rich in energy resources and oil and the buzzword of the new millennium is opening borders and the common market the first priority in peace, trust and confidence. Liftman To launch the region that need education and training in the use of human resources. Therefore, educational reforms are agriculture on our door steps to reap the benefits of economies of counties in the total ELA and Asia. These educational reforms should involve schools, colleges and Universities. The refurbishment program will incorporate the new era emerging, such as marketing climate of global competition the use of technology in disaster, restrictions, sustainability, environment, conservation of water resources factors, sanitation, etc.
Agri-education reforms are necessary for ICAR Parallels USDA, the administration of grants in aid to the entire agriculture sector. An act omnibuss agriculture shape of the U.S. farm bill for 1996 is expected. The new education policies in writing so it must be non-discriminatory, comprehensive, transparent and responsible.
6. Access to education and training:
Access to education and training of people below the poverty line, rural youth and women must be guaranteed. This necessity of total teaching restructured infrastructure. A model with three of the tires is provided, including:
1. On employment, training opportunities on the mechanization of agriculture and agriculture.
2. Vocational training, so the progression and direction rural university level, refinement and innovative participatory manner in the field of farmers. education on this problem has taught the system of daily holidays and Sundays.
3. Learning Teachers, students and farmers, industry and interaction, work plans self-employed farmers living. It ensure quality training and better use of skilled labor for use in the Asian market agriculture.
7. Informal flexible Agriculture Services Information:
A flexible curriculum models should have many options B. Sc level as:
1. Natural Science
2. Agro Science
Production System –
– Agro-business
– Social Sciences
3. International Agriculture
4. Natural Resources
5. agribusiness management
6. Bioengineering
7. Dietetrics
8. Landscape Architecture

8. Export orientation in agriculture, education:
In the era of biosecurity plant health and sanitation Zoo have assumed considerable importance. The education and knowledge has been safe and secure possession in the past. Not true. Requirements export the knowledge and the need for new patent inventions. Web design and web pages have been hidden unknown masters students. The student-teacher relationship has focused on the spiritual horizons. New goals for education policy planning and the future should be more information and technology communication. Therefore, the courses of the I & C software applications is essential. These were reinforced in the SAU and ICAR institutions in recent years. However, it requires full connectivity to farmers, farm organizations and services of use to reap the benefits of technology to reform increase our exports. Although the classification in milk production for export are scarce. Because of the poor zoo-sanitary and world are essential lobiest for our state is free. Therefore, ICAR to develop policies and programs for the agricultural export orientation.

About the Author

Professor Ghulam Mohyuddin Wani did his Ph.D from IVRI, Izatnagar in 1985 in Animal Reproduction / Gynaecology and got Dr. Med. Vet.**Additional Doc. Degree from Veterinary Institute, Deemed Univ. Hannover Germany in 1984 in the field of Animal Reproduction/ Production. He also earned DAAD Fellowship(Post Doc.) from German Academic Exchange, Hannover, Germany in Animal Breeding institute, Buetweg, Hannover,Germany and is currently Director Extension Education and Director SAMETI in the S.K. University of Agricultural Sciences and Technology of Kashmir, Shalimar – Srinagar.
The author can be contacted at: P.O.Box: 461, GPO, Srinagar by post or mailed at wanimohyuddin@yahoo.com


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