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非生物和生物胁迫组合

Abiotic and biotic stress combinations.

作者信息

Suzuki Nobuhiro, Rivero Rosa M, Shulaev Vladimir, Blumwald Eduardo, Mittler Ron

机构信息

Department of Biological Sciences, College of Arts and Sciences, University of North Texas, 1155 Union Circle #305220, Denton, TX, 76203-5017, USA.

出版信息

New Phytol. 2014 Jul;203(1):32-43. doi: 10.1111/nph.12797. Epub 2014 Apr 11.

Abstract

Environmental stress conditions such as drought, heat, salinity, cold, or pathogen infection can have a devastating impact on plant growth and yield under field conditions. Nevertheless, the effects of these stresses on plants are typically being studied under controlled growth conditions in the laboratory. The field environment is very different from the controlled conditions used in laboratory studies, and often involves the simultaneous exposure of plants to more than one abiotic and/or biotic stress condition, such as a combination of drought and heat, drought and cold, salinity and heat, or any of the major abiotic stresses combined with pathogen infection. Recent studies have revealed that the response of plants to combinations of two or more stress conditions is unique and cannot be directly extrapolated from the response of plants to each of the different stresses applied individually. Moreover, the simultaneous occurrence of different stresses results in a high degree of complexity in plant responses, as the responses to the combined stresses are largely controlled by different, and sometimes opposing, signaling pathways that may interact and inhibit each other. In this review, we will provide an update on recent studies focusing on the response of plants to a combination of different stresses. In particular, we will address how different stress responses are integrated and how they impact plant growth and physiological traits.

摘要

干旱、高温、盐度、低温或病原体感染等环境胁迫条件会对田间条件下的植物生长和产量产生毁灭性影响。然而,这些胁迫对植物的影响通常是在实验室可控的生长条件下进行研究的。田间环境与实验室研究中使用的可控条件有很大不同,并且常常使植物同时暴露于一种以上的非生物和/或生物胁迫条件下,例如干旱与高温、干旱与低温、盐度与高温的组合,或者任何一种主要的非生物胁迫与病原体感染的组合。最近的研究表明,植物对两种或更多种胁迫条件组合的反应是独特的,不能直接从植物对单独施加的每种不同胁迫的反应中推断出来。此外,不同胁迫的同时发生导致植物反应具有高度复杂性,因为对复合胁迫的反应很大程度上受不同的、有时甚至是相反的信号通路控制,这些信号通路可能相互作用并相互抑制。在本综述中,我们将提供关于近期聚焦于植物对不同胁迫组合反应的研究的最新情况。特别是,我们将探讨不同的胁迫反应是如何整合的,以及它们如何影响植物生长和生理特性。

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