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Analysis of initial changes in the proteins of soybean root tip under flooding stress using gel-free and gel-based proteomic techniques

机译:使用凝胶和基于凝胶的蛋白质组学技术分析大豆根尖蛋白蛋白质的初始变化

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Flooding has a severe negative effect on soybean cultivation in the early stages of growth. To obtain a better understanding of the response mechanisms of soybean to flooding stress, initial changes in root tip proteins under flooding were analyzed using two proteomic techniques. Two-day-old soybeans were treated with flooding for 3, 6, 12, and 24 h. The weight of soybeans increased during the first 3 h of flooding, but root elongation was not observed. Using gel-based and gel-free proteomic techniques, 115 proteins were identified in root tips, of which 9 proteins were commonly detected by both methods. The 71 proteins identified by the gel-free proteomics were analyzed by a hierarchical clustering method based on induction levels during the flooding, and the proteins were divided into 5 clusters. Additional interaction analysis of the proteins revealed that ten proteins belonging to cluster I formed the center of a protein interaction network. mRNA expression analysis of these ten proteins showed that citrate lyase and heat shock protein 70 were down-regulated, whereas calreticulin was up-regulated in initial phase of flooding. These results suggest that flooding stress to soybean induces calcium-related signal transduction, which might play important roles in the early responses to flooding.
机译:洪水对初期生长的早期培养具有严重的负面影响。为了更好地理解大豆对洪水应力的响应机制,使用两种蛋白质组学技术分析了洪水下的根尖蛋白的初始变化。两天历史的大豆受到洪水适用于3,6,12和24小时。大豆的重量在洪水的前3小时内增加,但未观察到根伸长率。使用基于凝胶和无凝胶蛋白质组学技术,在根尖中鉴定115个蛋白质,其中两种方法通常检测9个蛋白质。通过基于灌溉过程中的诱导水平的分层聚类方法分析了由无凝胶蛋白质组学鉴定的71个蛋白质,并且将蛋白质分成5个簇。蛋白质的额外相互作用分析显示,属于簇的十种蛋白质I形成了蛋白质相互作用网络的中心。这十个蛋白质的mRNA表达分析表明,柠檬酸盐裂解酶和热休克蛋白70被调节,而CalreteLin在初始洪水阶段上调。这些结果表明,泛滥对大豆的压力诱导钙相关信号转导,这可能在早期反应中发挥重要作用。

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