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拟南芥中 的过表达增强了对铅的耐受性。 (这里原文“Overexpression of ”中缺少具体基因名称,翻译只能做到这样了)

Overexpression of in Arabidopsis enhances Pb tolerance.

作者信息

Zhou Yangjiao, Li Ruimei, Wang Shijia, Ding Zhongping, Zhou Qin, Liu Jiao, Wang Yajia, Yao Yuan, Hu Xinwen, Guo Jianchun

机构信息

School of Life Sciences, Hainan University, Haikou, China.

Key Laboratory of Biology and Genetic Resources of Tropical Crops, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou, China.

出版信息

Front Plant Sci. 2022 Sep 16;13:996981. doi: 10.3389/fpls.2022.996981. eCollection 2022.

Abstract

Pb is one of the most ubiquitously distributed heavy metal pollutants in soils and has serious negative effects on plant growth, food safety, and public health. Pectin methylesterase inhibitors (PMEIs) play a pivotal role in regulating the integrity of plant cell walls; however, the molecular basis by which PMEIs promote plant resistance to abiotic stress remains poorly understood. In this study, we identified a novel PMEI gene, , from , and determined its role in plant resistance to Pb stress. The expression of was remarkably upregulated in the roots, stems, and leaves of cassava plants following exposure to Pb stress. An analysis of subcellular localization revealed that the MePMEI1 protein was localized in the cell wall. MePMEI1 inhibited commercial orange peel pectin methyltransferase (PME), and the expression of in Arabidopsis decreased the PME activity, indicating that MePMEI1 can inhibit PME activity in the cell wall. Additionally, the overexpression of in Arabidopsis reduced oxidative damage and induced the thickening of cell walls, thus contributing to Pb tolerance. Altogether, the study reports a novel mechanism by which the gene, which encodes the PMEI protein in cassava, plays an essential role in promoting tolerance to Pb toxicity by regulating the thickness of cell walls. These results provide a theoretical basis for the -mediated plant breeding for increasing heavy metal tolerance and provide insights into controlling Pb pollution in soils through phytoremediation in future studies.

摘要

铅是土壤中分布最为广泛的重金属污染物之一,对植物生长、食品安全和公众健康具有严重的负面影响。果胶甲酯酶抑制剂(PMEIs)在调节植物细胞壁完整性方面发挥着关键作用;然而,PMEIs促进植物对非生物胁迫抗性的分子基础仍知之甚少。在本研究中,我们从木薯中鉴定出一个新的PMEI基因,并确定了其在植物对铅胁迫抗性中的作用。在接触铅胁迫后,木薯植株的根、茎和叶中该基因的表达显著上调。亚细胞定位分析表明,MePMEI1蛋白定位于细胞壁。MePMEI1抑制商业橙皮果胶甲基转移酶(PME),并且在拟南芥中该基因的表达降低了PME活性,这表明MePMEI1可以抑制细胞壁中的PME活性。此外,在拟南芥中过表达该基因减少了氧化损伤并诱导了细胞壁增厚,从而有助于提高对铅的耐受性。总之,该研究报道了一种新机制,即木薯中编码PMEI蛋白的该基因通过调节细胞壁厚度在促进对铅毒性的耐受性方面发挥重要作用。这些结果为通过该基因介导的植物育种提高重金属耐受性提供了理论基础,并为未来研究通过植物修复控制土壤中的铅污染提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5536/9523724/14f44aeb9958/fpls-13-996981-g0001.jpg

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