Effect of CO2Concentration, Temperature and N Fertilization on Biomass Production of Soybean Genotypes Differing in N Fixation Capacity

Author:

Matsunami Toshinori12,Otera Masafumi1,Amemiya Shun1,Kokubun Makie1,Okada Masumi2

Affiliation:

1. Graduate School of Agricultural Science,Tohoku University Sendai 981-8555, Japan

2. National Agricultural Research Center for Tohoku Region Morioka 020-0198 Japan

Publisher

Informa UK Limited

Subject

Agronomy and Crop Science

Reference9 articles.

1. Allen, L.H.Jr. and Boote, K.J. 2000. Crop ecosystem responses to climatic change: soybean. In K.R. Reddy and H.F. Hodges eds., Climatic Change and Global Crop Productivity. CABI Publishing, Wallingford. 133–160.

2. Farage, P.K., McKee, I.F. and Long, S.P. 1998. Does a low N supply necessarily lead to acclimation of photosynthesis to elevated CO2? Plant Physiol. 118 : 573–580.

3. Harper, J.E. 1987. Nitrogen metabolism, In J.R. Wilcox ed., Soybeans: Improvement, Production, and Uses, 2ndedition. ASA, CSSA, SSSA , Madison. 497–534.

4. IPCC. 2007. Climate Change 2007: The physical science basis. Summary for policy makers. Website: http://www.ipcc.ch.

5. Kobayashi, K., Okada, M., Kim, H.Y., Lieffering, M., Miura, S. and Hasegawa, T. 2006. Paddy rice responses to free-air [CO2] enrichment. In Nösberger et al. eds., Managed Ecosystems and [CO2] Case Studies, Processes, and Perspectives. Springer-Verlag, Berling. 87–104.

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