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脱落酸在应激调节碳水化合物代谢中的核心作用。

A central role of abscisic acid in stress-regulated carbohydrate metabolism.

作者信息

Kempa Stefan, Krasensky Julia, Dal Santo Silvia, Kopka Joachim, Jonak Claudia

机构信息

Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, Vienna, Austria.

出版信息

PLoS One. 2008;3(12):e3935. doi: 10.1371/journal.pone.0003935. Epub 2008 Dec 12.

Abstract

BACKGROUND

Abiotic stresses adversely affect plant growth and development. The hormone abscisic acid (ABA) plays a central role in the response and adaptation to environmental constraints. However, apart from the well established role of ABA in regulating gene expression programmes, little is known about its function in plant stress metabolism.

PRINCIPAL FINDINGS

Using an integrative multiparallel approach of metabolome and transcriptome analyses, we studied the dynamic response of the model glyophyte Arabidopsis thaliana to ABA and high salt conditions. Our work shows that salt stress induces complex re-adjustment of carbohydrate metabolism and that ABA triggers the initial steps of carbon mobilisation.

SIGNIFICANCE

These findings open new perspectives on how high salinity and ABA impact on central carbohydrate metabolism and highlight the power of iterative combinatorial approaches of non-targeted and hypothesis-driven experiments in stress biology.

摘要

背景

非生物胁迫对植物生长发育产生不利影响。激素脱落酸(ABA)在植物对环境胁迫的响应和适应过程中发挥核心作用。然而,除了ABA在调控基因表达程序方面已明确的作用外,其在植物胁迫代谢中的功能鲜为人知。

主要发现

通过代谢组和转录组分析的综合多平行方法,我们研究了模式植物拟南芥对ABA和高盐条件的动态响应。我们的研究表明,盐胁迫诱导碳水化合物代谢的复杂重新调整,而ABA触发碳动员的初始步骤。

意义

这些发现为高盐度和ABA如何影响中心碳水化合物代谢开辟了新的视角,并突出了非靶向和假设驱动实验的迭代组合方法在胁迫生物学中的作用。

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