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Contrasting responses of grain yield to reducing nitrogen application rate in double- and single-season rice

机译:双季和单季水稻籽粒产量对降低氮肥施用量的对比响应

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(N0). Grain yield was lower under N90 than under N150 in DSR by 11-18%, whereas the difference was not significant in SSR. Grain yield under N0 was 36-63% lower in DSR than in SSR. There was a significant relationship between percentage change in grain yield comparing N90 to N150 with grain yield under N0. Furthermore, it was observed that grain yield under N0 was not significantly associated with growth duration but was closely associated with daily grain yield under N0, and the relationships of daily grain yield under N0 with seasonal average daily mean temperature and solar radiation were not significant. These results indicate that response of grain yield to reducing N rate was more sensitive in DSR compared to SSR due to lower soil N productivity. Growth duration and climatic conditions did not explain the difference in soil N productivity between DSR and SSR. The findings of this study should encourage more research into comparing the inherent traits of plants, especially the morphology and physiology of the root system, between DSR and SSR.
机译:(N0)。在DSR下,N90下的籽粒产量比N150下降低了11-18%,而SSR上的差异不显着。在D0下,NSR下的谷物产量比SSR低36-63%。在N0和N150下,N90与N150相比,谷物产量的百分比变化与谷物产量之间存在显着关系。此外,观察到N0下的谷物产量与生长持续时间没有显着相关,但与N0下的每日谷物产量紧密相关,并且N0下的每日谷物产量与季节性平均日平均温度和太阳辐射之间的关系不显着。这些结果表明,由于土壤氮生产率较低,与SSR相比,DSR的谷物产量对减少N的响应更为敏感。生长时间和气候条件不能解释DSR和SSR之间土壤氮生产力的差异。这项研究的结果应鼓励更多的研究来比较DSR和SSR之间植物的固有特性,尤其是根系的形态和生理特性。

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