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采用代谢组学和基因表达联合分析揭示感虫和抗虫水稻植株对褐飞虱为害的不同系统响应。

Revealing different systems responses to brown planthopper infestation for pest susceptible and resistant rice plants with the combined metabonomic and gene-expression analysis.

机构信息

Key Laboratory of Ministry of Education for Plant Development Biology, College of Life Sciences, Wuhan University, Wuhan 430072, China.

出版信息

J Proteome Res. 2010 Dec 3;9(12):6774-85. doi: 10.1021/pr100970q. Epub 2010 Nov 1.

Abstract

Brown planthopper (BPH) is a notorious pest of rice plants attacking leaf sheaths and seriously affecting global rice production. However, how rice plants respond against BPH remains to be fully understood. To understand systems metabolic responses of rice plants to BPH infestation, we analyzed BPH-induced metabolic changes in leaf sheaths of both BPH-susceptible and resistant rice varieties using NMR-based metabonomics and measured expression changes of 10 relevant genes using quantitative real-time PCR. Our results showed that rice metabonome was dominated by more than 30 metabolites including sugars, organic acids, amino acids, and choline metabolites. BPH infestation caused profound metabolic changes for both BPH-susceptible and resistant rice plants involving transamination, GABA shunt, TCA cycle, gluconeogenesis/glycolysis, pentose phosphate pathway, and secondary metabolisms. BPH infestation caused more drastic overall metabolic changes for BPH-susceptible variety and more marked up-regulations for key genes regulating GABA shunt and biosynthesis of secondary metabolites for BPH-resistant variety. Such observations indicated that activation of GABA shunt and shikimate-mediated secondary metabolisms was vital for rice plants to resist BPH infestation. These findings filled the gap of our understandings in the mechanistic aspects of BPH resistance for rice plants and demonstrated the combined metabonomic and qRT-PCR analysis as an effective approach for understanding plant-herbivore interactions.

摘要

褐飞虱(BPH)是一种危害水稻叶片鞘部的恶名昭著的害虫,严重影响全球水稻生产。然而,水稻植物如何抵御 BPH 仍未被充分理解。为了了解水稻植物对 BPH 侵害的系统代谢反应,我们使用基于 NMR 的代谢组学分析了 BPH 敏感和抗性水稻品种叶片鞘部的 BPH 诱导代谢变化,并使用定量实时 PCR 测量了 10 个相关基因的表达变化。我们的结果表明,水稻代谢组主要由 30 多种代谢物组成,包括糖、有机酸、氨基酸和胆碱代谢物。BPH 侵害导致 BPH 敏感和抗性水稻植物发生深刻的代谢变化,涉及转氨基作用、GABA 支路、TCA 循环、糖异生/糖酵解、戊糖磷酸途径和次生代谢物。BPH 侵害对 BPH 敏感品种引起更剧烈的整体代谢变化,对调节 GABA 支路和次生代谢物生物合成的关键基因的上调更为明显。这些观察表明,GABA 支路和莽草酸介导的次生代谢物的激活对于水稻植物抵抗 BPH 侵害至关重要。这些发现填补了我们对水稻植物 BPH 抗性机制方面理解的空白,并证明了代谢组学和 qRT-PCR 分析的结合是理解植物-草食动物相互作用的有效方法。

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