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大豆生物钟和干旱响应基因的昼夜振荡。

Diurnal oscillations of soybean circadian clock and drought responsive genes.

机构信息

Embrapa Soybean, Brazilian Agricultural Research Corporation, Londrina, Paraná, Brazil ; Department of Biology, State University of Londrina, Londrina, Paraná, Brazil.

Embrapa Soybean, Brazilian Agricultural Research Corporation, Londrina, Paraná, Brazil.

出版信息

PLoS One. 2014 Jan 27;9(1):e86402. doi: 10.1371/journal.pone.0086402. eCollection 2014.

Abstract

Rhythms produced by the endogenous circadian clock play a critical role in allowing plants to respond and adapt to the environment. While there is a well-established regulatory link between the circadian clock and responses to abiotic stress in model plants, little is known of the circadian system in crop species like soybean. This study examines how drought impacts diurnal oscillation of both drought responsive and circadian clock genes in soybean. Drought stress induced marked changes in gene expression of several circadian clock-like components, such as LCL1-, GmELF4- and PRR-like genes, which had reduced expression in stressed plants. The same conditions produced a phase advance of expression for the GmTOC1-like, GmLUX-like and GmPRR7-like genes. Similarly, the rhythmic expression pattern of the soybean drought-responsive genes DREB-, bZIP-, GOLS-, RAB18- and Remorin-like changed significantly after plant exposure to drought. In silico analysis of promoter regions of these genes revealed the presence of cis-elements associated both with stress and circadian clock regulation. Furthermore, some soybean genes with upstream ABRE elements were responsive to abscisic acid treatment. Our results indicate that some connection between the drought response and the circadian clock may exist in soybean since (i) drought stress affects gene expression of circadian clock components and (ii) several stress responsive genes display diurnal oscillation in soybeans.

摘要

内源性生物钟产生的节律对于植物对环境的响应和适应起着至关重要的作用。虽然在模式植物中,生物钟与非生物胁迫的响应之间存在着明确的调控联系,但对于大豆等作物物种的生物钟系统知之甚少。本研究探讨了干旱如何影响大豆中干旱响应和生物钟基因的昼夜振荡。干旱胁迫诱导了几个生物钟样成分的基因表达发生明显变化,如 LCL1、GmELF4 和 PRR 样基因,这些基因在胁迫植物中的表达降低。同样的条件导致 GmTOC1 样、GmLUX 样和 GmPRR7 样基因的表达出现相位提前。同样,大豆干旱响应基因 DREB、bZIP、GOLS、RAB18 和 Remorin 样的节律表达模式在植物暴露于干旱后发生了显著变化。对这些基因启动子区域的计算机分析揭示了存在与应激和生物钟调节相关的顺式元件。此外,一些具有上游 ABRE 元件的大豆基因对脱落酸处理有反应。我们的研究结果表明,大豆中可能存在干旱响应和生物钟之间的某些联系,因为:(i)干旱胁迫影响生物钟成分的基因表达;(ii)几种应激响应基因在大豆中表现出昼夜振荡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f90/3903518/9fcdd27224b5/pone.0086402.g001.jpg

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