首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Chilling Stress Accelerates Degradation of Seed Storage Protein and Photosynthetic Protein during Cotton Seed Germination
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Chilling Stress Accelerates Degradation of Seed Storage Protein and Photosynthetic Protein during Cotton Seed Germination

机译:低温胁迫加速棉花种子萌发过程中种子贮藏蛋白和光合蛋白的降解

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摘要

Low temperature is one of the major abiotic stresses limiting the productivity and geographical distribution of many important crops. To gain a better understanding of chilling stress responses in cotton (Gossypium hirsutum L.), we carried out a comparative proteomic analysis. Cotyledon proteins of 1-week-old cotton seedlings treated with or without chilling treatment at 4 pC were extracted, separated by a two-dimensional gel electrophoresis and compared. Among 1500 protein spots reproducibly detected on each gel, 25 protein spots were down-regulated and 29 were up-regulated. Seven cotton proteins were identified by mass spectrometry analysis as beta-globulin A precursor fragments. One was identified as a Rubisco large subunit fragment, providing evidence of both seed storage protein and photosynthetic protein destruction by chilling stress. The related physiological and biochemical analysis showed that there was a significant increase in endopeptidase activity and activated oxygen generation rate, and an obvious decrease in carboxylation efficiency and maximum net photosynthetic rate of cotton seedlings under chilling stress. Based on the above results, the degradation mechanisms of beta-globulin and Rubisco under chilling stress were discussed. In conclusion, our study provides new insights into chilling-stress responses in cotton and demonstrates the advantages of proteomic analysis.
机译:低温是限制许多重要农作物生产力和地理分布的主要非生物胁迫之一。为了更好地了解棉花(陆地棉)的冷应激反应,我们进行了比较蛋白质组学分析。提取经过或不经过4 pC冷藏处理的1周龄棉苗的子叶蛋白质,通过二维凝胶电泳进行分离并进行比较。在每个凝胶上可重复检测到的1500个蛋白点中,有25个蛋白点被下调,有29个蛋白点被上调。通过质谱分析鉴定出七个棉蛋白为β-球蛋白A前体片段。一种被鉴定为Rubisco大亚基片段,提供了种子贮藏蛋白和冷胁迫破坏光合蛋白的证据。相关的生理生化分析表明,低温胁迫下棉花幼苗的内肽酶活性和活性氧生成速率显着增加,羧化效率和最大净光合速率明显降低。基于以上结果,探讨了冷应激下β-球蛋白和Rubisco的降解机理。总之,我们的研究为棉花的冷应激反应提供了新的见解,并证明了蛋白质组学分析的优势。

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