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Optimizing rice plant photosynthate allocation reduces N2O emissions from paddy fields.


ABSTRACT: Rice paddies are a major source of anthropogenic nitrous oxide (N2O) emissions, especially under alternate wetting-drying irrigation and high N input. Increasing photosynthate allocation to the grain in rice (Oryza sativa L.) has been identified as an effective strategy of genetic and agronomic innovation for yield enhancement; however, its impacts on N2O emissions are still unknown. We conducted three independent but complementary experiments (variety, mutant study, and spikelet clipping) to examine the impacts of rice plant photosynthate allocation on paddy N2O emissions. The three experiments showed that N2O fluxes were significantly and negatively correlated with the ratio of grain yield to total aboveground biomass, known as the harvest index (HI) in agronomy (P?

SUBMITTER: Jiang Y 

PROVIDER: S-EPMC4932627 | biostudies-literature | 2016 Jul

REPOSITORIES: biostudies-literature

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Optimizing rice plant photosynthate allocation reduces N2O emissions from paddy fields.

Jiang Yu Y   Huang Xiaomin X   Zhang Xin X   Zhang Xingyue X   Zhang Yi Y   Zheng Chengyan C   Deng Aixing A   Zhang Jun J   Wu Lianhai L   Hu Shuijin S   Zhang Weijian W  

Scientific reports 20160705


Rice paddies are a major source of anthropogenic nitrous oxide (N2O) emissions, especially under alternate wetting-drying irrigation and high N input. Increasing photosynthate allocation to the grain in rice (Oryza sativa L.) has been identified as an effective strategy of genetic and agronomic innovation for yield enhancement; however, its impacts on N2O emissions are still unknown. We conducted three independent but complementary experiments (variety, mutant study, and spikelet clipping) to ex  ...[more]

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