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亲本环境铜胁迫对后代发育的影响:DNA甲基化修饰及差异甲基化区域相关基因在转录表达中的响应

Effects of parental environmental copper stress on offspring development: DNA methylation modification and responses of differentially methylated region-related genes in transcriptional expression.

作者信息

Tai Zhipeng, Guan Pengpeng, Zhang Ting, Liu Wenye, Li Lingya, Wu You, Li Guoliang, Liu Jing-Xia

机构信息

College of Fisheries, Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Huazhong Agricultural University, Wuhan 430070, China.

College of Informatics, Agricultural Bioinformatics Key Laboratory of Hubei Province, Hubei Engineering Technology Research Center of Agricultural Big Data, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

J Hazard Mater. 2022 Feb 15;424(Pt C):127600. doi: 10.1016/j.jhazmat.2021.127600. Epub 2021 Oct 28.

Abstract

Parental environmental copper (Cu) exposure is widespread, causing problems for sustainability of fish populations, and epigenetics is suggested to be fundamental during the process, but the mechanism is scarcely reported. Here, we describe the effects of parental environmental Cu exposure on zebrafish developmental abnormality in subsequent generation. This study demonstrated for the first time that: 1. offspring from Cu-stressed paternal adult zebrafish showed developmental defects in the nervous and digestive system and changes in transcriptome; 2. Cu-induced alterations in sperm methylome and transcriptome could induce loci-specific alterations in DNA methylome and corresponding changes in the related gene transcription in offspring; 3. differentially methylated regions in pmpcb, crebl2 and tab2 promoters acted pivotally in their transcription; 4. pmpcb, crebl2 and tab2 are key individual contributors to parental Cu exposure-induced developmental defects in the nervous system, retina and digestive system of the offspring. Those data revealed that Cu-induced alterations in sperm methylome and transcriptome can be passed down to their fertilized offspring, reprogramming the epigenetic and transcriptional regulation of embryogenesis and causing embryonic developmental defects, suggesting that environmental Cu might pose a huge threat to the sustainability of fish populations.

摘要

亲代环境铜(Cu)暴露十分普遍,给鱼类种群的可持续性带来问题,表观遗传学被认为在此过程中至关重要,但相关机制鲜有报道。在此,我们描述了亲代环境铜暴露对斑马鱼后代发育异常的影响。本研究首次证明:1. 来自铜胁迫的成年雄斑马鱼的后代在神经和消化系统出现发育缺陷以及转录组变化;2. 铜诱导的精子甲基化组和转录组改变可诱导后代DNA甲基化组的位点特异性改变以及相关基因转录的相应变化;3. pmpcb、crebl2和tab2启动子中的差异甲基化区域在其转录中起关键作用;4. pmpcb、crebl2和tab2是亲代铜暴露诱导后代神经系统、视网膜和消化系统发育缺陷的关键个体因素。这些数据表明,铜诱导的精子甲基化组和转录组改变可传递给其受精后代,重新编程胚胎发育的表观遗传和转录调控并导致胚胎发育缺陷,这表明环境铜可能对鱼类种群的可持续性构成巨大威胁。

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