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copt5突变体中铜转运缺陷影响镉耐受性。

Defective copper transport in the copt5 mutant affects cadmium tolerance.

作者信息

Carrió-Seguí Angela, Garcia-Molina Antoni, Sanz Amparo, Peñarrubia Lola

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat de València, Av. Doctor Moliner, 5, ES-46100 Burjassot, Valencia, Spain.

Departament de Bioquímica i Biologia Molecular, Universitat de València, Av. Doctor Moliner, 5, ES-46100 Burjassot, Valencia, Spain Present address: Lehrstuhl für Systembiologie der Pflanzen, Technische Universität München-Weihenstephan, Emil-Ramann-Straße, 4, D-85354 Freising, Germany.

出版信息

Plant Cell Physiol. 2015 Mar;56(3):442-54. doi: 10.1093/pcp/pcu180. Epub 2014 Nov 27.

Abstract

Cadmium toxicity interferes with essential metal homeostasis, which is a problem for both plant nutrition and the consumption of healthy food by humans. Copper uptake is performed by the members of the Arabidopsis high affinity copper transporter (COPT) family. One of the members, COPT5, is involved in copper recycling from the vacuole toward the cytosolic compartment. We show herein that copt5 mutants are more sensitive to cadmium stress than wild-type plants, as indicated by reduced growth. Exacerbated cadmium toxicity in copt5 mutants is due specifically to altered copper traffic through the COPT5 transporter. Three different processes which have been shown to affect cadmium tolerance are altered in copt5 mutants. First, ethylene biosynthesis diminishes under copper deficiency and, in the presence of cadmium, ethylene production diminishes further. Copper deficiency responses are also attenuated under cadmium treatment. Remarkably, while copt5 roots present higher oxidative stress toxicity symptoms than controls, aerial copt5 parts display lower oxidative stress, as seen by reduced cadmium delivery to shoots. Taken together, these results demonstrate that copper transport plays a key role in cadmium resistance, and suggest that oxidative stress triggers an NADPH oxidase-mediated signaling pathway, which contributes to cadmium translocation and basal plant resistance. The slightly lower cadmium levels that reach aerial parts in the copt5 mutants, irrespective of the copper content in the media, suggest a new biotechnological approach to minimize toxic cadmium entry into food chains.

摘要

镉毒性会干扰必需金属的稳态,这对植物营养以及人类食用健康食品而言都是个问题。拟南芥高亲和力铜转运蛋白(COPT)家族成员负责铜的吸收。其中一个成员COPT5参与了铜从液泡向胞质区室的循环利用。我们在此表明,copt5突变体比野生型植物对镉胁迫更敏感,这表现为生长受抑制。copt5突变体中镉毒性加剧具体是由于通过COPT5转运蛋白的铜运输发生了改变。已证明影响镉耐受性的三个不同过程在copt5突变体中发生了改变。首先,在铜缺乏时乙烯生物合成减少,并且在有镉存在的情况下,乙烯产量进一步减少。在镉处理下,对铜缺乏的响应也减弱。值得注意的是,虽然copt5根比对照呈现出更高的氧化应激毒性症状,但copt5地上部分显示出较低的氧化应激,这可从向地上部输送的镉减少看出。综上所述,这些结果表明铜运输在镉抗性中起关键作用,并表明氧化应激触发了一条由NADPH氧化酶介导的信号通路,该通路有助于镉的转运和植物的基础抗性。无论培养基中的铜含量如何,copt5突变体地上部分的镉含量略低,这提示了一种新的生物技术方法,可将有毒镉进入食物链的量降至最低。

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