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首页> 外文期刊>Journal of proteome research >A Comprehensive Analysis of the Soybean Genes and Proteins Expressed under Flooding Stress using Transcriptome and Proteome Techniques
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A Comprehensive Analysis of the Soybean Genes and Proteins Expressed under Flooding Stress using Transcriptome and Proteome Techniques

机译:利用转录组和蛋白质组学技术对淹水胁迫下大豆基因和蛋白质的表达进行综合分析

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摘要

The inducible genes and proteins were analyzed using transcriptome and proteome techniques to explore the mechanisms underlying soybean response to flooding stress. Soybean seedlings were germinated for 2 days and subjected to flooding for 12 h, and the total RNAs and proteins were extracted from the root and hypocotyl. High-coverage gene expression profiling analysis as transcriptome technique was performed. Ninety-seven out of the 29 388 peaks observed demonstrated a greater than 25-fold change following 12 h of flood-induced stress. Furthermore, 34 proteins out of 799 proteins were changed by 12 h stress. Genes associated with alcohol fermentation, ethylene biosynthesis, pathogen defense, and cell wall loosening were significantly up-regulated. Hemoglobin, acid phosphatase, and Kunitz trypsin protease inhibitor were altered at both transcriptional and translational levels. Reactive oxygen species scavengers and chaperons were changed only at the translational level. It is suggested that the early response of soybean under flooding might be important stress adaptation to ensure survival against not only hypoxia but also the direct damage of cell by water.
机译:使用转录组和蛋白质组技术分析了诱导型基因和蛋白质,以探索大豆对水淹胁迫的响应机制。将大豆幼苗发芽2天,然后浸水12 h,然后从根和下胚轴中提取总RNA和蛋白质。进行高覆盖基因表达谱分析作为转录组技术。在所观察到的29 388个峰中,有97个峰在洪水引起的压力12 h后显示出大于25倍的变化。此外,799种蛋白质中的34种蛋白质在12 h胁迫下发生了变化。与酒精发酵,乙烯生物合成,病原体防御和细胞壁松弛相关的基因被显着上调。血红蛋白,酸性磷酸酶和Kunitz胰蛋白酶蛋白酶抑制剂在转录和翻译水平上均发生改变。活性氧清除剂和分子伴侣仅在翻译水平上改变。有人认为,水淹下大豆的早期反应可能是重要的胁迫​​适应性,以确保不仅抵抗缺氧而且还可以抵抗水对细胞的直接损害而生存。

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