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Proteomics approach for identifying osmotic-stress-related proteins in soybean roots.

机译:蛋白质组学方法用于鉴定大豆根中与渗透压相关的蛋白质。

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Osmotic stress can endanger the survival of plants. To investigate the mechanisms by which plants respond to osmotic stress, protein profiles from soybean plants treated with polyethylene glycol (PEG) were monitored by a proteomics approach. Treatment with 10% aqueous PEG reduced the lengths of roots and hypocotyls of soybean seedlings. Proteins from soybean roots were separated by two-dimensional polyacrylamide gel electrophoresis, and 415 proteins were detected by Coomassie brilliant blue staining. Thirty-seven proteins changed by PEG treatment were analyzed using Edman sequencing and peptide-mass fingerprinting method and this group included proteins involved in disease/defense. Seven proteins were selected for further experiments using the results of cluster analysis and statistical analysis of the abundance change. A comparison with the effects of other abiotic stresses showed that caffeoyl-CoA-O-methyltransferase and 20S proteasome alpha subunit A were decreased and increased by abiotic stresses, respectively. Expression analyses of these transcripts were also changed by PEG treatment. Caffeoyl-CoA-O-methyltransferase and 20S proteasome alpha subunit A may control the sensitivity of several regulatory genes specific to short exposure to osmotic stress.
机译:渗透胁迫会危害植物的生存。为了研究植物响应渗透胁迫的机制,通过蛋白质组学方法监测了用聚乙二醇(PEG)处理的大豆植物的蛋白质谱。用10%PEG水溶液处理可减少大豆幼苗的根和下胚轴长度。大豆根部蛋白质通过二维聚丙烯酰胺凝胶电泳分离,考马斯亮蓝染色检测到415种蛋白质。使用Edman测序和肽质量指纹分析方法分析了PEG处理后改变的37种蛋白质,该组中包括与疾病/防御相关的蛋白质。使用聚类分析和丰度变化的统计分析结果,选择了七个蛋白质用于进一步的实验。与其他非生物胁迫作用的比较表明,咖啡因-CoA-O-甲基转移酶和20S蛋白酶体α亚基A分别因非生物胁迫而减少和增加。这些转录物的表达分析也通过PEG处理而改变。咖啡酰-CoA-O-甲基转移酶和20S蛋白酶体α亚基A可能控制几种调控基因的敏感性,这些基因对短期暴露于渗透胁迫下具有特异性。

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