Univ. Bordeaux, CNRS, Bordeaux INP, EPOC, UMR 5805, F-33600 Pessac, France.
Univ. Bordeaux, CNRS, INRAE, La Rochelle Univ., UMS 2567 POREA, F-33615 Pessac, France.
J Hazard Mater. 2023 Aug 5;455:131579. doi: 10.1016/j.jhazmat.2023.131579. Epub 2023 May 4.
Evidence has emerged that environmentally-induced epigenetic changes can have long-lasting effects on gene transcription across generations. These recent findings highlight the need to investigate the transgenerational impacts of pollutants to assess their long term effects on populations. In this study, we investigated the transgenerational effect of cadmium on zebrafish across 4 generations. A first whole methylome approach carried out on fish of the first two generations led us to focus our investigations on the estradiol receptor alpha gene (esr1). We observed a sex-dependent transgenerational inheritance of Cd-induced DNA methylation changes up to the last generation. These changes were associated with single nucleotide polymorphisms (SNPs) that were themselves at the origin of the creation or deletion of methylation sites. Thus, Cd-induced genetic selection gave rise to DNA methylation changes. We also analyzed the transcription level of various sections of esr1 as well as estrogen responsive genes. While Cd triggered transgenerational disorders, Cd-induced epigenetic changes in esr1 contributed to the rapid transgenerational adaptation of fish to Cd. Our results provide insight into the processes underpinning rapid adaptation and highlight the need to maintain genetic diversity within natural populations to bolster the resilience of species faced with the global environmental changes.
有证据表明,环境引起的表观遗传变化可能会在多代中对基因转录产生持久影响。这些新发现强调了需要研究污染物的跨代影响,以评估它们对种群的长期影响。在这项研究中,我们研究了镉在斑马鱼中的跨代影响,跨越了 4 代。在第一代和第二代鱼类上进行的首次全甲基化组学分析使我们将研究重点放在雌激素受体 alpha 基因 (esr1) 上。我们观察到 Cd 诱导的 DNA 甲基化变化在最后一代存在性别依赖性的跨代遗传。这些变化与单核苷酸多态性 (SNP) 有关,SNP 本身是甲基化位点的产生或缺失的起源。因此,Cd 诱导的遗传选择导致了 DNA 甲基化变化。我们还分析了 esr1 以及雌激素反应基因的各个部分的转录水平。虽然 Cd 引发了跨代障碍,但 Cd 对 esr1 中的表观遗传变化有助于鱼类对 Cd 的快速跨代适应。我们的研究结果深入了解了快速适应的过程,并强调需要在自然种群中维持遗传多样性,以增强面临全球环境变化的物种的恢复力。