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NADPH氧化酶在镉毒性作用下对活性氧代谢和养分吸收进行差异调节。

NADPH oxidases differentially regulate ROS metabolism and nutrient uptake under cadmium toxicity.

作者信息

Gupta D K, Pena L B, Romero-Puertas M C, Hernández A, Inouhe M, Sandalio L M

机构信息

Department of Biochemistry and Cellular and Molecular Biology of Plants, Estación Experimental del Zaidín, CSIC, C/Prof. Albareda No 1, Granada, 18008, Spain.

Department of Biological Chemistry, Faculty of Pharmacy and Biochemistry, IQUIFIB, CONICET, University of Buenos Aires, Buenos Aires, C1113AAD, Argentina.

出版信息

Plant Cell Environ. 2017 Apr;40(4):509-526. doi: 10.1111/pce.12711. Epub 2016 Apr 1.

Abstract

The role of NADPH oxidases under cadmium (Cd) toxicity was studied using Arabidopsis thaliana mutants AtrbohC, AtrbohD and AtrbohF, which were grown under hydroponic conditions with 25 and 100 μM Cd for 1 and 5 days. Cadmium reduced the growth of leaves in WT, AtrbohC and D, but not in AtrbohF. A time-dependent increase in H O and lipid peroxidation was observed in all genotypes, with AtrbohC showing the smallest increase. An opposite behaviour was observed with NO accumulation. Cadmium increased catalase activity in WT plants and decreased it in Atrboh mutants, while glutathione reductase and glycolate oxidase activities increased in Atrboh mutants, and superoxide dismutases were down-regulated in AtrbohC. The GSH/GSSG and ASA/DHA couples were also affected by the treatment, principally in AtrbohC and AtrbohF, respectively. Cadmium translocation to the leaves was severely reduced in Atrboh mutants after 1 day of treatment and even after 5 days in AtrbohF. Similar results were observed for S, P, Ca, Zn and Fe accumulation, while an opposite trend was observed for K accumulation, except in AtrbohF. Thus, under Cd stress, RBOHs differentially regulate ROS metabolism, redox homeostasis and nutrient balance and could be of potential interest in biotechnology for the phytoremediation of polluted soils.

摘要

利用拟南芥突变体AtrbohC、AtrbohD和AtrbohF研究了NADPH氧化酶在镉(Cd)毒性作用下的作用,这些突变体在水培条件下,分别用25和100μM的Cd处理1天和5天。镉降低了野生型、AtrbohC和AtrbohD叶片的生长,但对AtrbohF没有影响。在所有基因型中均观察到过氧化氢(H₂O₂)和脂质过氧化随时间的增加,其中AtrbohC的增加幅度最小。一氧化氮(NO)积累则呈现相反的趋势。镉增加了野生型植物中的过氧化氢酶活性,而在Atrboh突变体中则降低了该活性,同时谷胱甘肽还原酶和乙醇酸氧化酶活性在Atrboh突变体中增加,超氧化物歧化酶在AtrbohC中下调。谷胱甘肽(GSH)/氧化型谷胱甘肽(GSSG)和抗坏血酸(ASA)/脱氢抗坏血酸(DHA)对也受到处理的影响,主要分别体现在AtrbohC和AtrbohF中。处理1天后,Atrboh突变体中镉向叶片的转运严重减少,在AtrbohF中即使处理5天后也是如此。对于硫(S)、磷(P)、钙(Ca)、锌(Zn)和铁(Fe)的积累也观察到类似结果,而钾(K)积累则呈现相反趋势,但AtrbohF除外。因此,在镉胁迫下,呼吸爆发氧化酶同源物(RBOHs)对活性氧(ROS)代谢、氧化还原稳态和养分平衡具有不同的调节作用,在生物技术用于污染土壤植物修复方面可能具有潜在价值。

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