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转录组和甲基组分析显示,适应多环芳烃的大西洋灯鱼的生物合成过程发生显著变化,种群内基因表达方差降低。

Transcriptomic and Methylomic Analyses Show Significant Shifts in Biosynthetic Processes and Reduced Intrapopulation Gene Expression Variance in PAH-Adapted Atlantic Killifish.

机构信息

Nicholas School of the Environment, Duke University, Durham 27708, North Carolina, United States.

School of Marine Sciences, University of Maine, Bangor 44069, Maine, United States.

出版信息

Environ Sci Technol. 2024 Nov 26;58(47):20859-20872. doi: 10.1021/acs.est.4c06845. Epub 2024 Nov 17.

Abstract

Environmental contaminants pose a significant selection pressure across taxa, potentiating evolved resistance to chemicals. However, rapid evolution may alter molecular and physiological homeostasis leading to trade-offs. To elucidate molecular underpinnings of evolved chemical resistance, we compared liver gene expression and methylation profiles in polycyclic aromatic hydrocarbon (PAH)-adapted Atlantic killifish () in the Republic site (RP), Elizabeth River, Virginia with PAH-sensitive Kings Creek (KC) fish. We found 1607 differentially expressed and 2252 alternatively spliced genes between RP and KC, with highly enriched genes involving lipid and amino acid metabolism, respectively. While 308 genes had differentially methylated regions, only 13 of these genes were differentially expressed. The aryl hydrocarbon receptor 2b gene () was differentially methylated and expressed, as well as alternatively spliced signifying its critical role in mediating PAH tolerance. Notably, the intrapopulation coefficient of variation (CoV) was lower in 82% of 17,566 expressed genes in RP fish compared to KC fish. Among other pathways, these genes with low CoV were highly enriched in bioenergetic processes inferring reduced metabolic physiological variation as a population in RP fish. Altered metabolic gene expression and overall reduced gene expression variance in RP fish warrant further studies on fitness trade-offs including altered susceptibility to other stressors associated with rapid adaptation to anthropogenic pressures.

摘要

环境污染物在整个分类群中构成了重大的选择压力,增强了对化学物质的进化抗性。然而,快速进化可能会改变分子和生理平衡,导致权衡。为了阐明进化化学抗性的分子基础,我们比较了适应多环芳烃 (PAH) 的大西洋鲷()在弗吉尼亚伊丽莎白河共和国点 (RP) 与对 PAH 敏感的金斯克里克 (KC) 鱼的肝脏基因表达和甲基化谱。我们发现 RP 和 KC 之间有 1607 个差异表达和 2252 个选择性剪接基因,分别涉及脂质和氨基酸代谢的基因高度富集。虽然有 308 个基因有差异甲基化区域,但只有 13 个基因差异表达。芳香烃受体 2b 基因 () 差异甲基化和表达,以及选择性剪接表明其在介导 PAH 耐受性方面具有关键作用。值得注意的是,与 KC 鱼相比,RP 鱼中 17566 个表达基因中有 82%的基因的种群内变异系数 (CoV) 较低。在其他途径中,这些 CoV 较低的基因在生物能量过程中高度富集,这意味着 RP 鱼的代谢生理变异性降低。RP 鱼代谢基因表达的改变和整体基因表达方差的降低,需要进一步研究适应人为压力的快速进化所带来的权衡问题,包括对其他应激源敏感性的改变。

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