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iTRAQ protein profile analysis of sugar beet under salt stress: different coping mechanisms in leaves and roots

机译:盐胁迫下糖甜菜蛋白质概况分析:叶子与根中的不同应对机制

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Salinity is one of the most serious threats to world agriculture. An important sugar-yielding crop sugar beet, which shows some tolerance to salt via a mechanism that is poorly understood. Proteomics data can provide important clues that can contribute to finally understand this mechanism. Differentially abundant proteins (DAPs) in sugar beet under salt stress treatment were identified in leaves (70 DAPs) and roots (76 DAPs). Functions of these DAPs were predicted, and included metabolism and cellular, environmental information and genetic information processing. We hypothesize that these processes work in concert to maintain cellular homeostasis. Some DAPs are closely related to salt resistance, such as choline monooxygenase, betaine aldehyde dehydrogenase, glutathione S-transferase (GST) and F-type H+-transporting ATPase. The expression pattern of ten DAPs encoding genes was consistent with the iTRAQ data. During sugar beet adaptation to salt stress, leaves and roots cope using distinct mechanisms of molecular metabolism regulation. This study provides significant insights into the molecular mechanism underlying the response of higher plants to salt stress, and identified some candidate proteins involved in salt stress countermeasures.
机译:盐度是世界农业最严重的威胁之一。一种重要的糖产量糖甜菜,其通过理解不良的机制显示出对盐的一些耐受性。蛋白质组学数据可以提供重要的线索,可以有助于最终理解这种机制。在盐胁迫处理下糖甜菜中的差异丰富的蛋白质(隔板)在叶子(70点)和根(76点)中鉴定出盐胁迫处理。预测这些点的功能,并包括代谢和蜂窝,环境信息和遗传信息处理。我们假设这些过程在音乐会中致力于维持细胞稳态。一些隔板与耐盐性密切相关,例如胆碱单氧基酶,甜菜碱醛脱氢酶,谷胱甘肽S-转移酶(GST)和F型H + -Transporting ATP酶。编码基因的十个跳闸的表达模式与ITRAQ数据一致。在甜菜甜菜适应盐胁迫下,使用不同的分子代谢调节机制来应对盐胁迫。本研究提供了对高等植物响应到盐胁迫的响应的分子机制的显着见解,并确定了一些参与盐胁迫对策的候选蛋白质。

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