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首页> 外文期刊>BMC Plant Biology >Role of brassinosteroids in rice spikelet differentiation and degeneration under soil-drying during panicle development
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Role of brassinosteroids in rice spikelet differentiation and degeneration under soil-drying during panicle development

机译:扁豆籽粒剂在穗发育过程中玉米穗分化与变性的作用

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Brassinosteroids (BRs) are a new group of plant hormones and play important roles in plant growth and development. However, little information is available if BRs could regulate spikelet development in rice (Oryza sativa L.) especially under soil-drying conditions. This study investigated whether and how BRs mediate the effect of soil-drying on spikelet differentiation and degeneration in rice. A rice cultivar was field-grown and exposed to three soil moisture treatments during panicle development, that is, well-watered (WW), moderate soil-drying (MD) and severe soil-drying (SD). Compared with the WW treatment, the MD treatment enhanced BRs biosynthesis in young panicles, increased spikelet differentiation and reduced spikelet degeneration. The SD treatment had the opposite effects. Changes in expression levels of key rice inflorescence development genes (OsAPO2 and OsTAW1), ascorbic acid (AsA) content, and activities of enzymes involved AsA synthesis and recycle, and amount of nonstructural carbohydrates (NSC) in young panicles were consistent with those in BRs levels, whereas hydrogen peroxide (H2O2) content showed opposite trend. Knockdown of the BRs synthesis gene OsD11 or application of a BRs biosynthesis inhibitor to young panicles markedly decreased OsAPO2 and OsTAW1 expression levels, BRs and AsA contents, activities of enzymes involved AsA synthesis and recycle, NSC amount in rice panicles and spikelet differentiation but increased the H2O2 content and spikelet degeneration compared to the control (the wide type or application of water). The opposite effects were observed when exogenous BRs were applied. The results suggest that BRs mediate the effect of soil-drying on spikelet differentiation and degeneration, and elevated BRs levels in rice panicles promote spikelet development under MD by enhancing inflorescence meristem activity, AsA recycle and NSC partitioning to the growing panicles.
机译:Brassinosteroids(BRS)是一群新的植物激素,并在植物生长和发展中发挥重要作用。但是,如果BRS可以调节水稻(Oryza Sativa L.)中的穗状花序发育,则可以使用很少的信息,特别是在土壤干燥条件下。本研究调查了BRS是否以及如何在水稻中介绍土壤干燥对小穗分化和退化的影响。在穗发育过程中,水稻品种被野外生长和暴露于三种土壤水分处理,即浇水(WW),适度的土壤干燥(MD)和严重的土壤干燥(SD)。与WW治疗相比,MD治疗增强了青少年鳞片中的BRS生物合成,增加了小穗分化和减少的小穗变性。 SD治疗具有相反的效果。关键水稻花序发育基因(OsaPO2和Ostaw1),抗坏血酸(ASA)含量和酶活性的活性等级的表达水平的变化以及青少年合成和再循环的酶活性和非结构碳水化合物(NSC)的量与BRS中的那些一致水平,而过氧化氢(H2O2)含量显示相反的趋势。 BRS合成基因OSD11的敲低或将BRS生物合成抑制剂对青少年抑制剂显着降低,显着降低了OSAPO2和OSTAW1表达水平,BRS和ASA含量,酶活性涉及ASA合成和再循环,NSC量在水稻片和小穗分化中,但增加了与对照相比,H2O2含量和皮链变性(水域宽或施加水)。当施加外源BR时,观察到相反的效果。结果表明,BRS介绍了土壤干燥对小穗分化和变性的影响,并通过增强花序分析活动,循环和NSC分配到生长圆锥花序中,升高的水稻胰腺水平升高。

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