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大豆叶片中乙烯和脱落酸处理的磷酸化蛋白质组比较分析。

Comparative phosphoproteome analysis upon ethylene and abscisic acid treatment in Glycine max leaves.

机构信息

Department of Plant Bioscience, Life and Industry Convergence Research Institute, Pusan National University, Miryang, 627-707, Republic of Korea.

Research Laboratory for Biotechnology and Biochemistry (RLABB), GPO Box 13265, Kathmandu, Nepal; GRADE Academy Private Limited, Adarsh Nagar-13, Birgunj, Nepal.

出版信息

Plant Physiol Biochem. 2018 Sep;130:173-180. doi: 10.1016/j.plaphy.2018.07.002. Epub 2018 Jul 4.

Abstract

Abscisic acid (ABA) and ethylene play key roles in growth and development of plants. Several attempts have been made to investigate the ABA and ethylene-induced signaling in plants, however, the involvement of phosphorylation and dephosphorylation in fine-tuning of the induced response has not been investigated much. Here, a phosphoproteomic analysis was carried out to identify the phosphoproteins in response to ABA, ethylene (ET) and combined ABA + ET treatments in soybean leaves. Phosphoproteome analysis led to the identification of 802 phosphopeptides, representing 422 unique protein groups. A comparative analysis led to the identification of 40 phosphosites that significantly changed in response to given hormone treatments. Functional annotation of the identified phosphoproteins showed that these were majorly involved in nucleic acid binding, signaling, transport and stress response. Localization prediction showed that 67% of the identified phosphoproteins were nuclear, indicating their potential involvement in gene regulation. Taken together, these results provide an overview of the ABA, ET and combined ABA + ET signaling in soybean leaves at phosphoproteome level.

摘要

脱落酸(ABA)和乙烯在植物的生长和发育中起着关键作用。已经有几次尝试来研究植物中 ABA 和乙烯诱导的信号转导,然而,磷酸化和去磷酸化在精细调节诱导反应中的参与并没有得到太多的研究。在这里,进行了磷酸蛋白质组学分析,以鉴定大豆叶片中对 ABA、乙烯(ET)和 ABA+ET 联合处理的应答中的磷酸蛋白质。磷酸蛋白质组学分析鉴定了 802 个磷酸肽,代表 422 个独特的蛋白质组。比较分析鉴定了 40 个磷酸化位点,这些位点对特定激素处理的应答显著变化。鉴定的磷酸蛋白质的功能注释表明,这些蛋白质主要参与核酸结合、信号转导、运输和应激反应。定位预测显示,鉴定的磷酸蛋白质中有 67%是核定位的,表明它们可能参与基因调控。总之,这些结果提供了 ABA、ET 和 ABA+ET 联合处理在大豆叶片中磷酸蛋白质组水平的信号转导的概述。

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