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苎麻在氮、磷、钾缺乏条件下响应的比较蛋白质组分析

Comparative proteome analysis of the response of ramie under N, P and K deficiency.

作者信息

Deng Gang, Liu Li Jun, Zhong Xin Yue, Lao Cheng Ying, Wang Hong Yang, Wang Bo, Zhu Cong, Shah Fahad, Peng Ding Xiang

机构信息

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.

出版信息

Planta. 2014 Jun;239(6):1175-86. doi: 10.1007/s00425-014-2040-3. Epub 2014 Feb 27.

Abstract

Ramie is an important natural fiber. There has been little research on the molecular mechanisms of ramie related to the absorption, utilization and metabolism of nitrogen (N), phosphorus (P) and potassium (K). One approach to reveal the mechanisms of N, P and K (NPK) utilization and metabolism in ramie is comparative proteome analysis. The differentially expressed proteins in the leaves of ramie were analyzed by proteome analysis after 6 days of N- and K-deficient treatments and 3 days of P-deficient treatment using MALDI-TOF/TOF mass spectrometry and 32, 27 and 51 differential proteins were obtained, respectively. These proteins were involved in photosynthesis, protein destination and storage, energy metabolism, primary metabolism, disease/defense, signal transduction, cell structure, transcription, secondary metabolism and protein synthesis. Ramie responded to NPK stress by enhancing secondary metabolism and reducing photosynthesis and energy metabolism to increase endurance. Specifically, ramie adapted to NPK deficiency by increasing signal transduction pathways, enhancing the connection between glycolysis and photosynthesis, promoting the intracellular flow of carbon and N; promoting the synthesis cysteine and related hormones and upregulating actin protein to promote growth of the root system. The experimental results provide important information for further study on the high-efficiency NPK utilization mechanism of ramie.

摘要

苎麻是一种重要的天然纤维。关于苎麻中与氮(N)、磷(P)和钾(K)的吸收、利用和代谢相关的分子机制的研究很少。揭示苎麻中氮磷钾(NPK)利用和代谢机制的一种方法是比较蛋白质组分析。采用基质辅助激光解吸电离飞行时间串联质谱(MALDI-TOF/TOF)对苎麻叶片在缺氮和缺钾处理6天以及缺磷处理3天后的差异表达蛋白质进行分析,分别获得了32、27和51个差异蛋白质。这些蛋白质参与光合作用、蛋白质转运与储存、能量代谢、初级代谢、疾病/防御、信号转导、细胞结构、转录、次生代谢和蛋白质合成。苎麻通过增强次生代谢并降低光合作用和能量代谢以提高耐受性来响应NPK胁迫。具体而言,苎麻通过增加信号转导途径、加强糖酵解与光合作用之间的联系、促进碳和氮在细胞内的流动;促进半胱氨酸及相关激素的合成以及上调肌动蛋白来促进根系生长,从而适应NPK缺乏。实验结果为进一步研究苎麻高效利用NPK的机制提供了重要信息。

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