植物修复
APX公司
镉
环境修复
WRKY蛋白质结构域
污染
环境污染
生物
植物
园艺
谷胱甘肽
化学
重金属
环境化学
拟南芥
环境科学
生态学
污染
环境保护
生物化学
有机化学
基因
突变体
酶
作者
Xiaolu Wu,Qi Chen,Lulu Chen,Feifei Tian,Xiaoxi Chen,Chengyu Han,Jia‐Xuan Mi,Xinyi Lin,Xueqin Wan,Beibei Jiang,Qinglin Liu,Fang He,Lianghua Chen,Fan Zhang
标识
DOI:10.1016/j.ecoenv.2022.113630
摘要
Cadmium (Cd) pollution has detrimental effects on the ecological environment and human health. Currently, phytoremediation is considered an environmentally friendly way to remediate Cd pollution. The application of transgenic plants to remediate soil pollution is a new technology that has emerged in recent years. In this study, PyWRKY75 was isolated and cloned from Populus yunnanensis, and the functionality of PyWRKY75 in woody plants (poplar) under Cd stress was verified. The increase in plant height of the OE-41 line (overexpression poplar) was 33.2% higher than that of the wild type (WT). Moreover, PyWRKY75 significantly promoted the absorption and accumulation of Cd in poplar, which increased by 51.32% in the OE-41 line when compared with the WT. The chlorophyll content of transgenic poplar leaves was higher than that of the WT, which reflected a protective mechanism of PyWRKY75. Other antioxidants, such as POD, SOD, CAT, APX, AsA, GSH and PCs, also made the transgenic poplars more tolerant to Cd, and they behaved differently in roots, stems and leaves. In general, PyWRKY75 played a potential role in regulating plant tolerance to Cd stress. This study provides a scientific basis and a new type of modified poplar for Cd pollution remediation.
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