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利用代谢组学解析植物对非生物胁迫的响应。

The use of metabolomics to dissect plant responses to abiotic stresses.

机构信息

Max Planck Institute of Molecular Plant Physiology, Potsdam-Golm, Germany.

出版信息

Cell Mol Life Sci. 2012 Oct;69(19):3225-43. doi: 10.1007/s00018-012-1091-5. Epub 2012 Aug 12.

Abstract

Plant metabolism is perturbed by various abiotic stresses. As such the metabolic network of plants must be reconfigured under stress conditions in order to allow both the maintenance of metabolic homeostasis and the production of compounds that ameliorate the stress. The recent development and adoption of metabolomics and systems biology approaches enable us not only to gain a comprehensive overview, but also a detailed analysis of crucial components of the plant metabolic response to abiotic stresses. In this review we introduce the analytical methods used for plant metabolomics and describe their use in studies related to the metabolic response to water, temperature, light, nutrient limitation, ion and oxidative stresses. Both similarity and specificity of the metabolic responses against diverse abiotic stress are evaluated using data available in the literature. Classically discussed stress compounds such as proline, γ-amino butyrate and polyamines are reviewed, and the widespread importance of branched chain amino acid metabolism under stress condition is discussed. Finally, where possible, mechanistic insights into metabolic regulatory processes are discussed.

摘要

植物代谢受到各种非生物胁迫的干扰。因此,植物的代谢网络必须在胁迫条件下重新配置,以允许维持代谢平衡和产生减轻胁迫的化合物。代谢组学和系统生物学方法的最新发展和采用使我们不仅能够全面概述,还能够详细分析植物对非生物胁迫的代谢反应的关键组成部分。在这篇综述中,我们介绍了用于植物代谢组学的分析方法,并描述了它们在与水、温度、光、营养限制、离子和氧化应激相关的代谢反应研究中的应用。利用文献中可用的数据评估了针对不同非生物胁迫的代谢反应的相似性和特异性。综述了经典讨论的应激化合物,如脯氨酸、γ-氨基丁酸和多胺,并讨论了支链氨基酸代谢在应激条件下的广泛重要性。最后,在可能的情况下,讨论了代谢调节过程的机制见解。

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