DNA methylation correlates with transcriptional noise in response to elevated pCO2 in the eastern oyster (Crassostrea virginica).

IF 4.8 Q1 GENETICS & HEREDITY Environmental Epigenetics Pub Date : 2024-09-23 eCollection Date: 2024-01-01 DOI:10.1093/eep/dvae018
Yaamini R Venkataraman, Ariana S Huffmyer, Samuel J White, Alan Downey-Wall, Jill Ashey, Danielle M Becker, Zachary Bengtsson, Hollie M Putnam, Emma Strand, Javier A Rodríguez-Casariego, Shelly A Wanamaker, Katie E Lotterhos, Steven B Roberts
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Abstract

Ocean acidification significantly affects marine calcifiers like oysters, warranting the study of molecular mechanisms like DNA methylation that contribute to adaptive plasticity in response to environmental change. However, a consensus has not been reached on the extent to which methylation modules gene expression, and in turn plasticity, in marine invertebrates. In this study, we investigated the impact of pCO2 on gene expression and DNA methylation in the eastern oyster, Crassostrea virginica. After a 30-day exposure to control (572 ppm) or elevated pCO2 (2827 ppm), whole-genome bisulfite sequencing (WGBS) and RNA-seq data were generated from adult female gonad tissue and male sperm samples. Although differentially methylated loci (DMLs) were identified in females (89) and males (2916), there were no differentially expressed genes and only one differentially expressed transcript in females. However, gene body methylation impacted other forms of gene activity in sperm, such as the maximum number of transcripts expressed per gene and changes in the predominant transcript expressed. Elevated pCO2 exposure increased gene expression variability (transcriptional noise) in males but decreased noise in females, suggesting a sex-specific role of methylation in gene expression regulation. Functional annotation of genes with changes in transcript-level expression or containing DMLs revealed several enriched biological processes potentially involved in elevated pCO2 response, including apoptotic pathways and signal transduction, as well as reproductive functions. Taken together, these results suggest that DNA methylation may regulate gene expression variability to maintain homeostasis in elevated pCO2 conditions and could play a key role in environmental resilience in marine invertebrates.

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DNA 甲基化与东部牡蛎(Crassostrea virginica)响应 pCO2 升高时的转录噪音相关。
海洋酸化严重影响了牡蛎等海洋钙化生物,因此有必要对 DNA 甲基化等分子机制进行研究,这些机制有助于适应环境变化的可塑性。然而,对于甲基化在多大程度上影响海洋无脊椎动物的基因表达,进而影响其可塑性,目前尚未达成共识。在这项研究中,我们调查了 pCO2 对东部牡蛎(Crassostrea virginica)基因表达和 DNA 甲基化的影响。在暴露于对照组(572 ppm)或升高的 pCO2(2827 ppm)30 天后,从成年雌性生殖腺组织和雄性精子样本中生成了全基因组亚硫酸氢盐测序(WGBS)和 RNA-seq 数据。虽然在雌性(89 个)和雄性(2916 个)中发现了不同的甲基化位点(DMLs),但在雌性中没有不同表达的基因,只有一个不同表达的转录本。然而,基因体甲基化会影响精子中其他形式的基因活动,如每个基因表达的最大转录本数量和主要表达转录本的变化。pCO2升高增加了雄性精子基因表达的变异性(转录噪音),但降低了雌性精子基因表达的噪音,这表明甲基化在基因表达调控中具有性别特异性。对转录水平表达发生变化或含有 DML 的基因进行功能注释后发现,一些丰富的生物过程可能与 pCO2 升高反应有关,包括细胞凋亡途径、信号转导以及生殖功能。综上所述,这些结果表明,DNA 甲基化可能会调节基因表达的变异性,以维持 pCO2 升高条件下的平衡,并可能在海洋无脊椎动物的环境适应能力中发挥关键作用。
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来源期刊
Environmental Epigenetics
Environmental Epigenetics GENETICS & HEREDITY-
CiteScore
6.50
自引率
5.30%
发文量
0
审稿时长
17 weeks
期刊最新文献
EV-miRNA associated with environmental air pollution exposures in the MADRES cohort. Correction to: To live or let die? Epigenetic adaptations to climate change-a review. Bronchial cell epigenetic aging in a human experimental study of short-term diesel and ozone exposures. DNA methylation correlates with transcriptional noise in response to elevated pCO2 in the eastern oyster (Crassostrea virginica). Prenatal exposure to maternal smoking and adult lung cancer risk: a nested case-control study using peripheral blood leukocyte DNA methylation prediction of exposure.
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