2006Plant Nutrition and Fertilizing ScienceRequires access

Effects of nitrogen forms and water stress on photosynthesis and water use efficiency of rice at seeding-tillering stage

Shen QiRong

Open publisher page 2 citations

Abstract

By using nutrient solution culture and simulated water stress by PEG(6000),the effects of different nitrogen forms(NO~-_3-N, NH~+_4-N and the mixture of NO~-_3-N and NH~+_4-N) and water statuses(non-water stress and water stress) on water use efficiency(WUE) and the biological characteristics of rice plants at seedling-tillering stage were studied.The results showed that,under non-water stress,the biomass of rice plants were about 49.63% and 63.25% higher under the supply of mixture of NO~-_3-N and NH~+_4N than either sole supply of NO~-_3-N or NH~+_4-N,respectively.However,under water stress,the biomass of rice plants were about 5.76% and 484.01% higher under sole ammonium supply than the other two treatments,WUE of rice plants were also 11.36% and 81.63% higher than the two treatments,while 12.39% higher than the same nitrogen form supply under non-water stress.Furthermore,rice plants grown with ammonium nutrition showed a stronger tolerance to water stress,due to their higher chlorophyll content,leaves area,tillers,and net photosynthetic rate et al.compared with those grown with nitrate nutrition.

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What this paper is about

By using nutrient solution culture and simulated water stress by PEG(6000),the effects of different nitrogen forms(NO~-_3-N, NH~+_4-N and the mixture of NO~-_3-N and NH~+_4-N) and water statuses(non-water stress and water stress) on water use efficiency(WUE) and the biological characteristics of rice plants at seedling-tillering stage were studied.The results showed that,under non-water stress,the biomass of rice plants were about 49.63% and 63.25% higher under the supply of mixture of NO~-_3-N and NH~+_4N than either sole supply of NO~-_3-N or NH~+_4-N,respectively.However,under water stress,the biomass of rice plants were about 5.76% and 484.01% higher under sole ammonium supply than the other two treatments,WUE of rice plants were also 11.36% and 81.63% higher than the two treatments,while 12.39% higher than the same nitrogen form supply under non-water stress.Furthermore,rice plants grown with ammonium nutrition showed a stronger tolerance to water stress,due to their higher chlorophyll content,leaves area,tillers,and net photosynthetic rate et al.compared with those grown with nitrate nutrition.

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Available abstract

By using nutrient solution culture and simulated water stress by PEG(6000),the effects of different nitrogen forms(NO~-_3-N, NH~+_4-N and the mixture of NO~-_3-N and NH~+_4-N) and water statuses(non-water stress and water stress) on water use efficiency(WUE) and the biological characteristics of rice plants at seedling-tillering stage were studied.The results showed that,under non-water stress,the biomass of rice plants were about 49.63% and 63.25% higher under the supply of mixture of NO~-_3-N and NH~+_4N than either sole supply of NO~-_3-N or NH~+_4-N,respectively.However,under water stress,the biomass of rice plants were about 5.76% and 484.01% higher under sole ammonium supply than the other two treatments,WUE of rice plants were also 11.36% and 81.63% higher than the two treatments,while 12.39% higher than the same nitrogen form supply under non-water stress.Furthermore,rice plants grown with ammonium nutrition showed a stronger tolerance to water stress,due to their higher chlorophyll content,leaves area,tillers,and net photosynthetic rate et al.compared with those grown with nitrate nutrition.

Key concepts: Nitrogen, Photosynthesis, Water-use efficiency, Seedling, Agronomy, Biomass (ecology), Ammonium, Nitrate

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Effects of nitrogen forms and water stress on photosynthesis and water use efficiency of rice at seeding-tillering stage — Research Paper | ScholarLens