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EFFECT OF THE SYSTEM OF RICE INTENSIFICATION (SRI) ON ...

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Sheehy, J.E., Peng, S., Dobermann, A., Mitchell, P.L., Ferrer, A.,<br />

Yang, J., Zou, Y., Zhong, X., Huang, J. 2004. Fantastic yields in<br />

the system of rice intensification: fact or fallacy? Field Crops<br />

Research 88: 1-8.<br />

Sinha, S.K & Talati, J. 2007. Productivity impacts of the system of<br />

rice intensification (<strong>SRI</strong>): A case study in West Bengal, India.<br />

Agricultural Water Management 87: 55 – 60.<br />

Singh, N.T. 1984. Green manures as sources of nutrients in rice<br />

production. In: Organic matter and rice. International Rice Research<br />

Institute. Manilla, Phillipines. pp: 217-228.<br />

Stevenson, F.J. & Cole, M.A. 1999. Soil Organic Matter quality and<br />

characterization. In Cycles of Soil. Carbon, Nitrogen, Phosphorus,<br />

Sulfur, Micronutrients. 2 nd edition. John Wiley & Sons, INC. Newy<br />

York, USA. pp: 78-106.<br />

Street, J. E. & Bollich, P.K. 2003. Rice Production. In: In Rice.<br />

Origen, History, Technology and Production. Eds: Smith, C.W. &<br />

Dilday, R.H. John Wiley & Sons, Inc. USA. pp: 271-295.<br />

Stoop, A.W., Uphoff, N., Kassam, A. 2002. A review of agricultural<br />

research issues raised by the system of rice intensification (<strong>SRI</strong>) from<br />

Madagascar: opportunities for improving farming systems for<br />

resource-poor farmers. Agricultural Systems 71: 249-274.<br />

Surridge, C. 2004. Feast or Famine? Nature Vol (428): 360-361.<br />

Tong, L., Yoshida, T., Maeda, T., Kimijima, H. 2007. Effects of<br />

Temperature, Sowing Depth and Soil Hardness on Seedling<br />

Establishment and Yield of Cambodian Rice Direct-seeded in Flood<br />

Paddy Fields. Plant Prod. Sci. 10(1):129-<br />

135.<br />

Tong, L. & Yoshida, T. 2008. Genetic Diversity of Cambodian Rice<br />

Cultivars. Plant Prod. Sci. 11(3): 366-367.<br />

Tripp, R., Wijeratne, H., Piyadasa, V,H. 2005. What should we<br />

expect from Farmer Field Schools? A Sri Lanka Case Study. World<br />

Development Vol 33 (10): 1705-1720.<br />

Tsubo, M., Fukai, S., Tuong, T.P., Ouk, M. 2007. A water balance<br />

model for rainfed lowland rice fields emphasising lateral water<br />

movement within a toposequence. Ecological Modelling 204: 503-<br />

515.<br />

Tsujimoto, Y., Horie, T., Randriamihary, H., Shiraiwa, T.,<br />

Homma, K. 2009. Soil management: The key factors for higher<br />

productivity in the fields utilizing the system of rice intensification<br />

(<strong>SRI</strong>) in the central highland of Madagascar. Agricultural Systems<br />

100: 61-71.<br />

Uphoff, N. 1999. Agroecological Implications of the System of Rice<br />

Intensification (<strong>SRI</strong>) in Madagascar. Environment, Development and<br />

Sustainability 1: 297-313.<br />

Uphoff & Tefy Sainy. Year unknown. COMMENT FAIRE POUR<br />

AVOIR DES PLANTS DE RIZ QUI CROISSENT MIEUX ET QUI<br />

PRODUISENT PLUS INFORMEZ-VOUS ET INFORMEZ LES<br />

AUTRES. Available at internet:<br />

(http://tefysaina.org/manuel<strong>SRI</strong>.pdf)<br />

Soil Survey Staff. 2006. Keys to soil taxonomy. United States<br />

Department of Agriculture. 10 th edition. p. 323.<br />

Vergé, X.P.C., De Kimpe, C., Desjardings, R.L. 2007. Agricultural<br />

production, greenhouse gas emissions and mitigation potential.<br />

Agricultural and Forest Meteorology 142: 255-269.<br />

Wade, L.J., George, T., Ladha, J.K., Singh, U., Bhuiyan, S.I.,<br />

Pandey, S. 1998. Opportunities to manipulate nutrient-by-water<br />

interactions in rainfed lowland rice systems. Field Crops Research<br />

56: 93-112.<br />

Wade, L.J. Fukai, S., Samson, B.K., Ali, A., Mazid, M.A. 1999.<br />

Rainfed lowland rice: physical environment and cultivar<br />

requirements. Field Crops Research 64: 3-12.<br />

Watanabe, I. 1984. Anaerobic decomposition of organic matter in<br />

flooded rice soils. In Organic Matter and rice. International Rice<br />

Research Institute, Manilla, Philippines. pp: 237-258.<br />

Watanabe, A., Yamada, H., Kimura, M. 2005. Analysis of<br />

temperature effects on seasonal and interannual variation in CH4<br />

emissions from rice-planted pots. Agriculture, Ecosystems and<br />

Environment 105: 439-443.<br />

Wassmann, R., Neue, H.U., Lantin, R.S., Buendia, L.V.,<br />

Rennenberg, H. 2000. Characterization of methane emissions from<br />

rice fields in Asia. I. Comparison among field sites in five countries.<br />

Nutrient Cycling in Agroecosystems 58: 1-12.<br />

West, T.O. & Post, W.M. 2002. Soil Organic Carbon sequestration<br />

rates by tillage and crop rotation: A global data analysis. Soil Sci.<br />

Soc. Am. J. 66: 1930-1946.<br />

White, P., Dobermann, A., Oberthür, T., Ros, C. 2000. The rice<br />

soils of Cambodia. I. Soil classification for agronomists using the<br />

Cambodian Agronomic Soil Classification system. Soil Use and<br />

Management 16: 12-19.<br />

White, P.F. & Öberthür, T. 1997. Geomorphology and Hydrology<br />

of Cambodian Ricelands. In: The Soils used for rice production in<br />

Cambodia. A manual for their identification and management. Ed;<br />

White, P.F., Oberthür, R., Sovuthy, P. pp: 3-8. Cambodia-<br />

IRRI.Australia Project. IRRI, Manila. Philippines.<br />

White, P.F., Oberthür, T., Sovuthy, P. 1997a. Soils and rice. In:<br />

Rice production in Cambodia. Manila (Philippines): International<br />

Rice Research Institute. Ed: Nesbitt, H.J. p. 21-31.<br />

White, P.F., Reyes, R.T., Oberthür, T., Hobermann. 1997b. Key<br />

to the major soils of the rice-growing areas. In: The Soils used for<br />

rice production in Cambodia. A manual for their identification and<br />

anagement. Ed; White, P.F., Oberthür, R., Sovuthy, P. pp: 15-19.<br />

Cambodia-IRRI.Australia Project. IRRI, Manila. Philippines.<br />

White, P.F. & Seng, V. 1997. Response of rainfed lowland rice to<br />

phosphorus fertiliser application in Cambodia. In: ACIAR<br />

Proceeding No. 77: Breeding Strategies for rainfed lowland rice in<br />

drought-prone environments. Eds. ACIAR. pp. 202-208. Australian<br />

Centre for International Agricultural Research, Canberra, Australia.<br />

Yagi, K. & Minami, K. 1990. Effect of Organic Matter Application<br />

on Methane Emission from Some Japanese Paddy Fields. Soil Sci.<br />

Plant Nutr. 36 (4): 599-610.<br />

Yamah, A. 2002. The practice of the System of Rice Intensification<br />

in Sierre Leone. A presentation held at the International Conference<br />

"Assessments of the System of Rice Intensification (<strong>SRI</strong>)," Sanya,<br />

China, April 1-4, 2002.<br />

Available at Internet: http://ciifad.cornell.edu/sri/proc1/sri_24.pdf<br />

Yan, X., Akiyama, H., Yagi, K., Akimoto, H. 2009. Global<br />

estimations of the inventory and mitigation potential of methane<br />

emissios from rice cultivation conducted using the 2006<br />

Intergovernmental Panel on Climate Change Guidelines. Global<br />

Biochemical Cycles 23: 1-15.<br />

Yoshida, S. 1981. Growth and development of the rice plant. In:<br />

Fundamentals of rice crop science. International Rice Research<br />

Institute. Manilla, Philippines. pp: 1- 63.<br />

76

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