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铝感应和信号在植物耐铝性中的作用。

The role of aluminum sensing and signaling in plant aluminum resistance.

机构信息

USDA-ARS Robert W. Holley Center for Agriculture and Health, Tower Road, Cornell University, Ithaca, NY, 14853, USA.

出版信息

J Integr Plant Biol. 2014 Mar;56(3):221-30. doi: 10.1111/jipb.12162. Epub 2014 Mar 2.

Abstract

As researchers have gained a better understanding in recent years into the physiological, molecular, and genetic basis of how plants deal with aluminum (Al) toxicity in acid soils prevalent in the tropics and sub-tropics, it has become clear that an important component of these responses is the triggering and regulation of cellular pathways and processes by Al. In this review of plant Al signaling, we begin by summarizing the understanding of physiological mechanisms of Al resistance, which first led researchers to realize that Al stress induces gene expression and modifies protein function during the activation of Al resistance responses. Subsequently, an overview of Al resistance genes and their function provides verification that Al induction of gene expression plays a major role in Al resistance in many plant species. More recent research into the mechanistic basis for Al-induced transcriptional activation of resistance genes has led to the identification of several transcription factors as well as cis-elements in the promoters of Al resistance genes that play a role in greater Al-induced gene expression as well as higher constitutive expression of resistance genes in some plant species. Finally, the post-transcriptional and translational regulation of Al resistance proteins is addressed, where recent research has shown that Al can both directly bind to and alter activity of certain organic acid transporters, and also influence Al resistance proteins indirectly, via protein phosphorylation.

摘要

近年来,研究人员对植物在热带和亚热带地区普遍存在的酸性土壤中如何应对铝(Al)毒性的生理、分子和遗传基础有了更好的理解,清楚的是,这些反应的一个重要组成部分是 Al 触发和调节细胞途径和过程。在对植物 Al 信号转导的综述中,我们首先总结了对 Al 抗性生理机制的理解,这首先使研究人员意识到 Al 胁迫会在激活 Al 抗性反应时诱导基因表达并改变蛋白质功能。随后,对 Al 抗性基因及其功能的概述提供了验证,即在许多植物物种中,Al 诱导的基因表达在 Al 抗性中起主要作用。最近对 Al 诱导抗性基因转录激活的机制基础的研究导致了几个转录因子以及 Al 抗性基因启动子中的顺式元件的鉴定,这些转录因子和顺式元件在更高的 Al 诱导基因表达以及一些植物物种中更高的抗性基因组成型表达中起作用。最后,探讨了 Al 抗性蛋白的转录后和翻译调控,最近的研究表明,Al 可以直接结合并改变某些有机酸转运蛋白的活性,也可以通过蛋白磷酸化间接影响 Al 抗性蛋白。

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