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BnXTH1 通过调节液泡区室化和细胞壁的镉结合能力来调节苎麻(Boehmeria nivea)对镉的耐受性。

BnXTH1 regulates cadmium tolerance by modulating vacuolar compartmentalization and the cadmium binding capacity of cell walls in ramie (Boehmeria nivea).

机构信息

College of Agronomy, Hunan Agricultural University, Changsha 410128, China; Hunan Academy of Forestry, Changsha 410004, Hunan, China.

College of Agronomy, Hunan Agricultural University, Changsha 410128, China.

出版信息

J Hazard Mater. 2024 May 15;470:134172. doi: 10.1016/j.jhazmat.2024.134172. Epub 2024 Mar 30.

DOI:10.1016/j.jhazmat.2024.134172
PMID:38569340
Abstract

Xyloglucan endotransglucosylase/hydrolases (XTH) are cell wall-modifying enzymes important in plant response to abiotic stress. However, the role of XTH in cadmium (Cd) tolerance in ramie remains largely unknown. Here, we identified and cloned BnXTH1, a member of the XTH family, in response to Cd stress in ramie. The BnXTH1 promoter (BnXTH1p) demonstrated that MeJA induces the response of BnXTH1p to Cd stress. Moreover, overexpressing BnXTH1 in Boehmeria nivea increased Cd tolerance by significantly increasing the Cd content in the cell wall and decreasing Cd inside ramie cells. Cadmium stress induced BnXTH1-expression and consequently increased xyloglucan endotransglucosylase (XET) activity, leading to high xyloglucan contents and increased hemicellulose contents in ramie. The elevated hemicellulose content increased Cd chelation onto the cell walls and reduced the level of intracellular Cd. Interestingly, overexpressing BnXTH1 significantly increased the content of Cd in vacuoles of ramie and vacuolar compartmentalization genes. Altogether, these results evidence that Cd stress induced MeJA accumulation in ramie, thus, activating BnXTH1 expression and increasing the content of xyloglucan to enhance the hemicellulose binding capacity and increase Cd chelation onto cell walls. BnXTH1 also enhances the vacuolar Cd compartmentalization and reduces the level of Cd entering the organelles and soluble solution.

摘要

木葡聚糖内转糖基酶/水解酶(XTH)是植物应对非生物胁迫的重要细胞壁修饰酶。然而,XTH 在苎麻镉耐性中的作用在很大程度上尚不清楚。在这里,我们鉴定并克隆了响应苎麻镉胁迫的 XTH 家族成员 BnXTH1。BnXTH1 启动子(BnXTH1p)表明 MeJA 诱导 BnXTH1p 对 Cd 胁迫的响应。此外,在苎麻中过表达 BnXTH1 可通过显著增加细胞壁中的 Cd 含量和降低苎麻细胞内的 Cd 含量来提高 Cd 耐性。Cd 胁迫诱导 BnXTH1 的表达,进而增加木葡聚糖内转糖基酶(XET)的活性,导致苎麻中的木葡聚糖含量和半纤维素含量增加。增加的半纤维素含量增加了 Cd 与细胞壁的螯合,降低了细胞内 Cd 的水平。有趣的是,过表达 BnXTH1 显著增加了苎麻液泡中 Cd 的含量和液泡区室化基因的含量。总的来说,这些结果表明 Cd 胁迫诱导苎麻中 MeJA 的积累,从而激活 BnXTH1 的表达,增加木葡聚糖的含量,增强半纤维素的结合能力,并增加 Cd 与细胞壁的螯合。BnXTH1 还增强了液泡中 Cd 的区室化,减少了 Cd 进入细胞器和可溶性溶液的水平。

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