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攀爬鲈(Anabas testudineus)卵巢组织对久效磷暴露的 DNA 甲基化分析。

DNA Methylation Profiling of Ovarian Tissue of Climbing Perch (Anabas testudienus) in Response to Monocrotophos Exposure.

机构信息

ICAR-Central Institute of Freshwater Aquaculture, Bhubaneswar, 751 002, Odisha, India.

ICAR-Central Institute of Fisheries Education, Mumbai, 400 061, Maharashtra, India.

出版信息

Mar Biotechnol (NY). 2023 Dec;25(6):1123-1135. doi: 10.1007/s10126-023-10264-x. Epub 2023 Oct 23.

Abstract

Epigenetic modifications like DNA methylation can alter an organism's phenotype without changing its DNA sequence. Exposure to environmental toxicants has the potential to change the resilience of aquatic species. However, little information is available on the dynamics of DNA methylation in fish gonadal tissues in response to organophosphates. In the present work, reduced-representation bisulfite sequencing was performed to identify DNA methylation patterns in the ovarian tissues of Anabas testudienus exposed to organophosphates, specifically monocrotophos (MCP). Through sequencing, an average of 41,087 methylated cytosine sites were identified and distributed in different parts of genes, i.e., in transcription start sites (TSS), promoters, exons, etc. A total of 1058 and 1329 differentially methylated regions (DMRs) were detected as hyper-methylated and hypo-methylated in ovarian tissues, respectively. Utilizing whole-genome data of the climbing perch, the DMRs, and their associated overlapping genes revealed a total of 22 genes within exons, 45 genes at transcription start sites (TSS), and 218 genes in intergenic regions. Through gene ontology analysis, a total of 16 GO terms particularly involved in ovarian follicular development, response to oxidative stress, oocyte maturation, and multicellular organismal response to stress associated with reproductive biology were identified. After functional enrichment analysis, relevant DMGs such as steroid hormone biosynthesis (Cyp19a, 11-beta-HSD, 17-beta-HSD), hormone receptors (ar, esrrga), steroid metabolism (StAR), progesterone-mediated oocyte maturation (igf1ar, pgr), associated with ovarian development in climbing perch showed significant differential methylation patterns. The differentially methylated genes (DMGs) were subjected to analysis using real-time PCR, which demonstrated altered gene expression levels. This study revealed a molecular-level alteration in genes associated with ovarian development in response to chemical exposure. This work provides evidence for understanding the relationship between DNA methylation and gene regulation in response to chemicals that affect the reproductive fitness of aquatic animals.

摘要

表观遗传修饰,如 DNA 甲基化,可以在不改变其 DNA 序列的情况下改变生物体的表型。环境毒物的暴露有可能改变水生物种的弹性。然而,关于鱼类性腺组织中 DNA 甲基化对有机磷的反应动力学的信息很少。在本工作中,采用简化重亚硫酸盐测序的方法,鉴定了暴露于有机磷(如久效磷,MCP)的攀鲈卵巢组织中的 DNA 甲基化模式。通过测序,鉴定了平均 41087 个甲基化胞嘧啶位点,并分布在基因的不同部位,如转录起始位点(TSS)、启动子、外显子等。在卵巢组织中,分别检测到 1058 个和 1329 个超甲基化和低甲基化的差异甲基化区域(DMR)。利用攀鲈的全基因组数据,对 DMRs 及其相关重叠基因进行分析,共鉴定出 22 个位于外显子内的基因、45 个位于转录起始位点(TSS)的基因和 218 个位于基因间区的基因。通过基因本体分析,共鉴定出 16 个与卵巢滤泡发育、氧化应激反应、卵母细胞成熟和多细胞生物体对与生殖生物学相关的应激反应有关的 GO 术语。在功能富集分析后,相关的 DMGs 如类固醇激素生物合成(Cyp19a、11-β-HSD、17-β-HSD)、激素受体(ar、esrrga)、类固醇代谢(StAR)、孕激素介导的卵母细胞成熟(igf1ar、pgr)等,与攀鲈的卵巢发育有关,表现出显著的差异甲基化模式。对差异甲基化基因(DMGs)进行实时 PCR 分析,结果显示基因表达水平发生了改变。本研究揭示了化学暴露引起的与卵巢发育相关的基因在分子水平上的改变。这项工作为了解 DNA 甲基化与基因调控之间的关系提供了证据,这种关系与影响水生动物生殖适应性的化学物质有关。

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