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首页> 外文期刊>Journal of proteome research >Comparative Quantitative Proteomics Analysis of the ABA Response of Roots of Drought-Sensitive and Drought-Tolerant Wheat Varieties Identifies Proteomic Signatures of Drought Adaptability
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Comparative Quantitative Proteomics Analysis of the ABA Response of Roots of Drought-Sensitive and Drought-Tolerant Wheat Varieties Identifies Proteomic Signatures of Drought Adaptability

机译:干旱敏感性和耐旱小麦品种根的ABA响应的定量蛋白质组学比较分析确定了干旱适应性的蛋白质组学特征。

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摘要

Wheat is one of the most highly cultivated cereals in the world. Like other cultivated crops, wheat production is significantly affected by abiotic stresses such as drought. Multiple wheat varieties suitable for different geographical regions of the world have been developed that are adapted to different environmental conditions; however, the molecular basis of such adaptations remains unknown in most cases. We have compared the quantitative proteomics profile of the roots of two different wheat varieties, Nesser (drought-tolerant) and Opata (droughtsensitive), in the absence and presence of abscisic acid (ABA, as a proxy for drought). A labeling LC-based quantitative proteomics approach using iTRAQ was applied to elucidate the changes in protein abundance levels. Quantitative differences in protein levels were analyzed for the evaluation of inherent differences between the two varieties as well as the overall and variety-specific effect of ABA on the root proteome. This study reveals the most elaborate ABA-responsive root proteome identified to date in wheat. A large number of proteins exhibited inherently different expression levels between Nesser and Opata. Additionally, significantly higher numbers of proteins were ABA-responsive in Nesser roots compared with Opata roots. Furthermore, several proteins showed variety-specific regulation by ABA, suggesting their role in drought adaptation.
机译:小麦是世界上种植率最高的谷物之一。与其他耕种作物一样,小麦生产受到非生物胁迫(例如干旱)的显着影响。已经开发出了适合世界不同地理区域的多种小麦品种,它们适应了不同的环境条件。然而,在大多数情况下,这种适应的分子基础仍然未知。我们比较了在不存在脱落酸(ABA,作为干旱的代名词)的情况下,两种不同小麦品种耐旱的Nesser和耐旱的Opata的根的定量蛋白质组学特征。使用iTRAQ的基于LC标记的定量蛋白质组学方法被用于阐明蛋白质丰度水平的变化。分析了蛋白质水平的定量差异,以评估两个品种之间的固有差异以及ABA对根蛋白质组的总体和品种特异性影响。这项研究揭示了迄今为止在小麦中鉴定出的最精细的ABA响应根蛋白质组。大量蛋白质在Nesser和Opata之间表现出内在的不同表达水平。另外,与Opata根相比,Nesser根中显着更多的蛋白质对ABA响应。此外,几种蛋白质显示出由ABA进行的种种特异性调节,表明它们在干旱适应中的作用。

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