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通过表观遗传机制鉴定水稻金属伴侣蛋白对镉耐受性及在湿地清理中的潜在应用

Identification of a rice metallochaperone for cadmium tolerance by an epigenetic mechanism and potential use for clean up in wetland.

机构信息

Department of Biochemistry and Molecular Biology, College of Life Science, Nanjing Agricultural University, Nanjing, 210095, China; The State Key Laboratory of Subtropical Silviculture, Laboratory of Plant Molecular and Developmental Biology, Zhejiang A&F University, Hangzhou, 311300, China.

Department of Biochemistry and Molecular Biology, College of Life Science, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Environ Pollut. 2021 Nov 1;288:117837. doi: 10.1016/j.envpol.2021.117837. Epub 2021 Jul 22.

Abstract

Cadmium (Cd) is a toxic heavy metal that initiates diverse chronic diseases through food chains. Developing a biotechnology for manipulating Cd uptake in plants is beneficial to reduce environmental and health risks. Here, we identified a novel epigenetic mechanism underlying Cd accumulation regulated by an uncharacterized metallochaperone namely Heavy Metal Responsive Protein (HMP) in rice plants. OsHMP resides in cytoplasm and nucleus, dominantly induced by Cd stress and binds directly to Cd ions. OsHMP overexpression enhanced the rice growth under Cd stress but accumulated more Cd, whereas knockout or knockdown of OsHMP showed a contrasting effect. The enhanced Cd accumulation in the transgenic lines was confirmed by a long-term experiment with rice growing at the environmentally realistic Cd concentration in soil. The bisulfite sequencing and chromatin immunoprecipitation assessments revealed that Cd stress reduced significantly the DNA methylation at CpG (Cytosine-Guanine) and histone H3K9me2 marks in the upstream of OsHMP. By identifying a couple of mutants defective in DNA methylation and histone modification (H3K9me2) such as Osmet1 (methylatransfease1) and Ossdg714 (kryptonite), we found that the Cd-induced epigenetic hypomethylation at the region was associated with OsHMP overexpression, which consequently led to Cd detoxification in rice. The causal relationship was confirmed by the GUS reporter gene coupled with OsHMP and OsMET1 whereby OsMET1 repressed directly the OsHMP expression. Our work signifies that expression of OsHMP is required for Cd detoxification in rice plants, and the Cd-induced hypomethylation in the specific region is responsible for the enhanced OsHMP expression. In summary, this study gained an insight into the epigenetic mechanism for additional OsHMP expression which consequently ensures rice adaptation to the Cd-contaminated environment.

摘要

镉(Cd)是一种有毒重金属,通过食物链引发多种慢性疾病。开发一种操纵植物中 Cd 吸收的生物技术,有利于降低环境和健康风险。在这里,我们发现了一种新的表观遗传机制,即在水稻中,一种未被描述的金属伴侣蛋白即重金属响应蛋白(HMP)调节 Cd 积累。OsHMP 存在于细胞质和细胞核中,主要受 Cd 胁迫诱导,并与 Cd 离子直接结合。OsHMP 的过表达增强了 Cd 胁迫下水稻的生长,但积累了更多的 Cd,而 OsHMP 的敲除或敲低则表现出相反的效果。通过在土壤中具有实际环境 Cd 浓度的水稻长期实验,证实了转基因系中 Cd 积累的增强。亚硫酸氢盐测序和染色质免疫沉淀评估表明,Cd 胁迫显著降低了 OsHMP 上游的 CpG(胞嘧啶-鸟嘌呤)和组蛋白 H3K9me2 标记的 DNA 甲基化。通过鉴定一对在 DNA 甲基化和组蛋白修饰(H3K9me2)中缺陷的突变体(甲基转移酶 1 和 kryptonite),我们发现该区域 Cd 诱导的表观遗传去甲基化与 OsHMP 的过表达有关,从而导致水稻中的 Cd 解毒。通过将 GUS 报告基因与 OsHMP 和 OsMET1 偶联,并证实 OsMET1 直接抑制 OsHMP 的表达,证实了这种因果关系。我们的工作表明,OsHMP 的表达是水稻植物中 Cd 解毒所必需的,而特定区域的 Cd 诱导去甲基化负责增强 OsHMP 的表达。总之,这项研究深入了解了额外的 OsHMP 表达的表观遗传机制,从而确保了水稻适应 Cd 污染的环境。

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