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拟南芥中脱落酸信号传导与铜稳态之间的相互作用

Interaction Between ABA Signaling and Copper Homeostasis in Arabidopsis thaliana.

作者信息

Carrió-Seguí Àngela, Romero Paco, Sanz Amparo, Peñarrubia Lola

机构信息

Departamento de Bioquímica y Biología Molecular, Universitat de València, 46100-Burjassot, Spain.

These authors contributed equally to this work.

出版信息

Plant Cell Physiol. 2016 Jul;57(7):1568-1582. doi: 10.1093/pcp/pcw087. Epub 2016 Jun 21.

Abstract

ABA is involved in plant responses to non-optimal environmental conditions, including nutrient availability. Since copper (Cu) is a very important micronutrient, unraveling how ABA affects Cu uptake and distribution is relevant to ensure adequate Cu nutrition in plants subjected to stress conditions. Inversely, knowledge about how the plant nutritional status can interfere with ABA biosynthesis and signaling mechanisms is necessary to optimize stress tolerance in horticultural crops. Here the reciprocal influence between ABA and Cu content was addressed by using knockout mutants and overexpressing transgenic plants of high affinity plasma membrane Cu transporters (pmCOPT) with altered Cu uptake. Exogenous ABA inhibited pmCOPT expression and drastically modified COPT2-driven localization in roots. ABA regulated SPL7, the main transcription factor responsive for Cu deficiency responses, and subsequently affected expression of its targets. ABA biosynthesis (aba2) and signaling (hab1-1 abi1-2) mutants differentially responded to ABA according to Cu levels. Alteration of Cu homeostasis in the pmCOPT mutants affected ABA biosynthesis, transport and signaling as genes such as NCED3, WRKY40, HY5 and ABI5 were differentially modulated by Cu status, and also in the pmCOPT and ABA mutants. Altered Cu uptake resulted in modified plant sensitivity to salt-mediated increases in endogenous ABA. The overall results provide evidence for reciprocal cross-talk between Cu status and ABA metabolism and signaling.

摘要

脱落酸(ABA)参与植物对非最适环境条件的响应,包括养分有效性。由于铜(Cu)是一种非常重要的微量营养素,阐明ABA如何影响铜的吸收和分布对于确保处于胁迫条件下的植物获得充足的铜营养至关重要。相反,了解植物营养状况如何干扰ABA生物合成和信号传导机制对于优化园艺作物的胁迫耐受性是必要的。在这里,通过使用高亲和力质膜铜转运蛋白(pmCOPT)的敲除突变体和过表达转基因植物来研究ABA与铜含量之间的相互影响,这些植物的铜吸收发生了改变。外源ABA抑制pmCOPT表达,并显著改变COPT2在根中的定位。ABA调节SPL7,这是对铜缺乏响应的主要转录因子,随后影响其靶标的表达。ABA生物合成(aba2)和信号传导(hab1-1 abi1-2)突变体根据铜水平对ABA有不同的反应。pmCOPT突变体中铜稳态的改变影响了ABA的生物合成、运输和信号传导,因为诸如NCED3、WRKY40、HY5和ABI5等基因受到铜状态的差异调节,在pmCOPT和ABA突变体中也是如此。铜吸收的改变导致植物对盐介导的内源性ABA增加的敏感性发生改变。总体结果为铜状态与ABA代谢和信号传导之间的相互串扰提供了证据。

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