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Silicon improves rice grain yield and photosynthesis specifically when supplied during the reproductive growth stage

机译:硅可以提高水稻的籽粒产量和光合作用,特别是在生殖生长期提供时

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Silicon (Si) has been recognized as a beneficial element to improve rice (Oryza sativa L.) grain yield. Despite some evidence suggesting that this positive effect is observed when Si is supplied along the reproductive growth stage (from panicle initiation to heading), it remains unclear whether its supplementation during distinct growth phases can differentially impact physiological aspects of rice and its yield and the underlying mechanisms. Here, we investigated the effects of additions/removals of Si at different growth stages and their impacts on rice yield components, photosynthetic performance, and expression of genes (Lsi1, Lsi2 and Lsi6) involved in Si distribution within rice shoots. Positive effects of Si on rice production and photosynthesis were manifested when it was specifically supplied during the reproductive growth stage, as demonstrated by: (1) a high crop yield associated with higher grain number and higher 1000-grain weight, whereas the leaf area and whole-plant biomass remained unchanged; (2) an increased sink strength which, in turn, exerted a feed-forward effect on photosynthesis that was coupled with increases in both stomatal conductance and biochemical capacity to fix CO2; (3) higher Si amounts in the developing panicles (and grain husks) in good agreement with a remarkable up-regulation of Lsi6 (and to a lesser extent Lsi1). We suggest that proper levels of Si in these reproductive structures seem to play an as yet unidentified role culminating with higher grain number and size. (C) 2016 Elsevier GmbH. All rights reserved.
机译:硅(Si)被公认为是提高水稻(Oryza sativa L.)谷物产量的有益元素。尽管有证据表明,当沿着生殖生长阶段(从穗开始到抽穗)供应硅时,可以观察到这种积极作用,但目前尚不清楚在不同的生长期补充硅是否可以差异影响水稻的生理特性及其产量和基础。机制。在这里,我们调查了在不同生长阶段添加/去除硅的影响及其对水稻产量构成,光合性能以及与水稻芽内硅分布有关的基因(Lsi1,Lsi2和Lsi6)表达的影响。硅在生殖生长阶段专门供应时,对水稻的生产和光合作用具有积极作用,这表明:(1)作物产量高,籽粒数高和千粒重高,叶面积和千粒重高。全株生物量保持不变; (2)增加的沉陷强度,进而对光合作用产生前馈作用,同时增加气孔导度和固定CO2的生化能力; (3)发育中的穗(和谷壳)中较高的Si含量与Lsi6的显着上调(Lsi1的上调程度较小)良好吻合。我们认为,在这些生殖结构中适当水平的硅似乎起着尚未确定的作用,最终随着更高的晶粒数量和尺寸而上升。 (C)2016 Elsevier GmbH。版权所有。

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