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解析木豆对棉铃虫取食抗性反应中涉及的蛋白质组学变化。

Unraveling the proteomic changes involved in the resistance response of Cajanus platycarpus to herbivory by Helicoverpa armigera.

作者信息

Rathinam Maniraj, Roschitzki Bernd, Grossmann Jonas, Mishra Pragya, Kunz Laura, Wolski Witold, Panse Christian, Tyagi Shaily, Rao Uma, Schlapbach Ralph, Sreevathsa Rohini

机构信息

ICAR-National Institute for Plant Biotechnology, Pusa Campus, New Delhi, India.

Functional Genomics Center Zürich, University of Zurich/ETH Zurich, Winterthurerstrasse 190, CH-8057, Zürich, Switzerland.

出版信息

Appl Microbiol Biotechnol. 2020 Sep;104(17):7603-7618. doi: 10.1007/s00253-020-10787-6. Epub 2020 Jul 20.

Abstract

The pigeonpea wild relative Cajanus platycarpus is resistant to Helicoverpa armigera, one of the major pests responsible for yield losses in Cajanus cajan. Deciphering the molecular mechanism underlying host plant resistance is pertinent to identify proteins that aid in the mitigation of the insect pest. The present study adopted comparative proteomics as a tool to interpret the resistance mechanism(s) in C. platycarpus vis-à-vis C. cajan during continued herbivory (up to 96 h). Over-representation analysis of the differentially expressed proteins implicated a multi-dimensional resistance response accomplished by both physical and chemical barriers in C. platycarpus. While the chemical basis for resistance was depicted by the upregulation of proteins playing a rate limiting role in the phenylpropanoid pathway, the physical basis was provided by the regulation of proteins involved in microtubule assembly and synthesis of lignins. Upregulation of proteins in the polyamine pathway indicated the role of metabolite conjugates to be negatively affecting herbivore growth. Reallocation of resources and diversion of metabolic flux to support the production of secondary metabolites could be the probable approach in the wild relative against herbivory. Our study provided deeper insights into the pod borer resistance mechanism in C. platycarpus for utility in crop improvement. KEY POINTS: • Pod borer resistance in Cajanus platycarpus is multi-dimensional. • Pod borer resistance has been arbitrated to cell wall rigidity and secondary metabolites. • Phenylpropanoid pathway derivatives apparently shaped the plant chemical defense against pod borer.

摘要

木豆野生近缘种阔叶木豆对棉铃虫具有抗性,棉铃虫是导致木豆产量损失的主要害虫之一。破解宿主植物抗性的分子机制对于鉴定有助于减轻虫害的蛋白质至关重要。本研究采用比较蛋白质组学作为工具,来阐释阔叶木豆相对于木豆在持续取食(长达96小时)期间的抗性机制。对差异表达蛋白的过表达分析表明,阔叶木豆通过物理和化学屏障实现了多维抗性反应。虽然抗性的化学基础表现为在苯丙烷途径中起限速作用的蛋白质上调,但物理基础则是由参与微管组装和木质素合成的蛋白质调控提供的。多胺途径中蛋白质的上调表明代谢物共轭物对草食动物生长具有负面影响。资源重新分配和代谢通量转向以支持次生代谢物的产生可能是该野生近缘种抵御草食动物的可能途径。我们的研究为阔叶木豆的豆荚螟抗性机制提供了更深入的见解,以便用于作物改良。要点:• 阔叶木豆对豆荚螟的抗性是多维的。• 豆荚螟抗性已归因于细胞壁刚性和次生代谢物。•苯丙烷途径衍生物显然塑造了植物对豆荚螟的化学防御。

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