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Genetic Improvements in Rice Yield and Concomitant Increases in Radiation- and Nitrogen-Use Efficiency in Middle Reaches of Yangtze River

机译:长江中游地区水稻产量的遗传改良和辐射氮效率的同时提高

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摘要

The yield potential of rice (Oryza sativa L.) has experienced two significant growth periods that coincide with the introduction of semi-dwarfism and the utilization of heterosis. In present study, we determined the annual increase in the grain yield of rice varieties grown from 1936 to 2005 in Middle Reaches of Yangtze River and examined the contributions of RUE (radiation-use efficiency, the conversion efficiency of pre-anthesis intercepted global radiation to biomass) and NUE (nitrogen-use efficiency, the ratio of grain yield to aboveground N accumulation) to these improvements. An examination of the 70-year period showed that the annual gains of 61.9 and 75.3 kg ha>−1 in 2013 and 2014, respectively, corresponded to an annual increase of 1.18 and 1.16% in grain yields, respectively. The improvements in grain yield resulted from increases in the harvest index and biomass, and the sink size (spikelets per panicle) was significantly enlarged because of breeding for larger panicles. Improvements were observed in RUE and NUE through advancements in breeding. Moreover, both RUE and NUE were significantly correlated with the grain yield. Thus, our study suggests that genetic improvements in rice grain yield are associated with increased RUE and NUE.
机译:水稻(Oryza sativa L.)的产量潜力经历了两个重要的生长期,这与引入半矮化和利用杂种优势相吻合。在本研究中,我们确定了长江中游地区从1936年到2005年种植的水稻品种的谷物年产量增长,并研究了RUE(辐射利用效率,花前转化为截获的全球辐射对玉米的转化效率)的贡献。生物质能)和NUE(氮素利用效率,谷物产量与地上氮素积累的比值)的改善。对这70年期的调查显示,2013年和2014年的年增重分别为61.9和75.3 kg ha >- 1 ,分别对应于年均增长1.18和粮食单产分别为1.16%。谷物收成的提高是由于收获指数和生物量的增加而引起的,而且由于较大穗的育种,汇的大小(每穗的小穗)明显增大。通过育种的进步,观察到RUE和NUE有所改善。此外,RUE和NUE均与籽粒产量显着相关。因此,我们的研究表明水稻籽粒产量的遗传改良与RUE和NUE的增加有关。

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