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功能表征 DNA 损伤修复/耐受 100(DRT100)基因在 Sedum alfredii Hance 中对基因组稳定性维持和 Cd 超耐性的作用。

Functional characterization of a DNA-damage repair/tolerance 100 (DRT100) gene in Sedum alfredii Hance for genome stability maintenance and Cd hypertolerance.

机构信息

School of Basic Medical Sciences, Zhejiang Chinese Medical University, Hangzhou, 310053, China.

Fungal Research Center, Shaanxi Institute of Microbiology, Xi'an, 710043, Shaanxi, China.

出版信息

Environ Pollut. 2023 Jun 15;327:121546. doi: 10.1016/j.envpol.2023.121546. Epub 2023 Apr 3.

Abstract

Cd contamination is a world-wild concern for its toxicity and accumulation in food chain. Sedum alfredii Hance (Crassulaceae) is a zinc (Zn) and cadmium (Cd) hyperaccumulator native to China and widely applied for the phytoremediation at Zn or Cd contaminated sites. Although many studies report the uptake, translocation and storage of Cd in S. alfredii Hance, limited information is known about the genes and underlying mechanisms of genome stability maintenance under Cd stress. In this study, a gene resembling DNA-damage repair/toleration 100 (DRT100) was Cd inducible and designated as SaDRT100. Heterologous expression of SaDRT100 gene in yeasts and Arabidopsis thaliana enhanced Cd tolerance capability. Under Cd stress, transgenic Arabidopsis with SaDRT100 gene exhibited lower levels of reactive oxygen species (ROS), fewer Cd uptake in roots and less Cd-induced DNA damage. Evidenced by the subcellular location in cellular nucleus and expression in aerial parts, we suggested the involvement of SaDRT100 in combating Cd-induced DNA damage. Our findings firstly uncovered the roles of SaDRT100 gene in Cd hypertolerance and genome stability maintenance in S. alfredii Hance. The potential functions of DNA protection make SaDRT100 gene a candidate in genetic engineering for phytoremediation at multi-component contaminated sites.

摘要

镉污染因其毒性和在食物链中的积累而受到全世界的关注。中国原产的景天属植物(景天科)是一种锌(Zn)和镉(Cd)超积累植物,广泛应用于 Zn 或 Cd 污染场地的植物修复。尽管许多研究报告了 Cd 在 S. alfredii Hance 中的吸收、转运和储存,但关于 Cd 胁迫下基因组稳定性维持的基因和潜在机制的信息有限。在这项研究中,一个类似于 DNA 损伤修复/耐受 100(DRT100)的基因被 Cd 诱导,并被命名为 SaDRT100。SaDRT100 基因在酵母和拟南芥中的异源表达增强了 Cd 耐受性。在 Cd 胁迫下,转 SaDRT100 基因的拟南芥表现出较低的活性氧(ROS)水平、根系中较少的 Cd 吸收和较少的 Cd 诱导的 DNA 损伤。根据 SaDRT100 在细胞核中的亚细胞定位和在地上部分的表达,我们推测它参与了对抗 Cd 诱导的 DNA 损伤。我们的研究结果首次揭示了 SaDRT100 基因在 S. alfredii Hance 中对 Cd 超耐受性和基因组稳定性维持的作用。DNA 保护的潜在功能使 SaDRT100 基因成为多组分污染场地植物修复遗传工程的候选基因。

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