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首页> 外文期刊>BMC Plant Biology >Abscisic acid synergizes with sucrose to enhance grain yield and quality of rice by improving the source-sink relationship
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Abscisic acid synergizes with sucrose to enhance grain yield and quality of rice by improving the source-sink relationship

机译:通过改善源水槽关系,脱落酸和蔗糖促进籽粒产量和水稻品质

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Abscisic acid (ABA) and sucrose act as molecular signals in response to abiotic stress. However, how their synergy regulates the source-sink relationship has rarely been studied. This study aimed to reveal the mechanism underlying the synergy between ABA and sucrose on assimilates allocation to improve grain yield and quality of rice. The early indica rice cultivar Zhefu802 was selected and planted in an artificial climate chamber at 32/24?°C (day/night) under natural sunlight conditions. Sucrose and ABA were exogenously sprayed (either alone or in combination) onto rice plants at flowering and 10?days after flowering. ABA plus sucrose significantly improved both the grain yield and quality of rice, which was mainly a result of the higher proportion of dry matter accumulation and non-structural carbohydrates in panicles. These results were mainly ascribed to the large improvement in sucrose transport in the sheath-stems in response to the ABA plus sucrose treatment. In this process, ABA plus sucrose significantly enhanced the contents of starch, gibberellic acids, and zeatin ribosides as well as the activities and gene expression of enzymes involved in starch synthesis in grains. Additionally, remarkable increases in trehalose content and expression levels of trehalose-6-phosphate synthase1, trehalose-6-phosphate phosphatase7, and sucrose non-fermenting related protein kinase 1A were also found in grains treated with ABA plus sucrose. The synergy between ABA and sucrose increased grain yield and quality by improving the source-sink relationship through sucrose and trehalose metabolism in grains.
机译:脱离酸(ABA)和蔗糖作为响应非生物胁迫的分子信号。但是,他们的协同作用如何调节源水槽关系很少已经过了。本研究旨在揭示ABA与蔗糖协同作用的机制,以提高水稻产量和品质的增育分配。在自然阳光条件下在32/24℃(日/夜)的32/24℃(日/夜)中选择并种植早期的籼稻品种。将蔗糖和ABA外源喷洒(单独或组合)在开花和10次开花后10天植物。 ABA Plus蔗糖显着提高了大米的籽粒产量和质量,主要是胰腺中干物质积累和非结构碳水化合物比例较高的结果。这些结果主要赋予鞘茎中蔗糖输送的大改善,响应于ABA加蔗糖处理。在该方法中,ABA加蔗糖显着增强了淀粉,赤霉酸和扎丁氏骨苷的含量以及参与颗粒中淀粉合成中的酶的活性和基因表达。另外,在与ABA加蔗糖处理的颗粒中也发现了海藻糖-6-磷酸酶1,海藻糖-6-磷酸酶1,海藻糖-6-磷酸酶7和蔗糖非发酵相关蛋白激酶1A的显着增加。通过在谷物中通过蔗糖和海藻糖代谢改善源水槽关系,ABA和蔗糖之间的协同作用增加了籽粒产量和质量。

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