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重金属暴露对褐藻分子响应的野外研究:一种(表观)遗传学方法。

A field study of the molecular response of brown macroalgae to heavy metal exposure: An (epi)genetic approach.

机构信息

Instituto Español de Oceanografía (IEO-CSIC), Centro Oceanográfico de A Coruña, A Coruña, Spain; CRETUS, Ecology Unit, Universidade de Santiago de Compostela, Spain.

Department of Integrative Biology, University of South Florida, Tampa, USA.

出版信息

J Hazard Mater. 2024 Dec 5;480:136304. doi: 10.1016/j.jhazmat.2024.136304. Epub 2024 Oct 28.

Abstract

Our understanding of the relative contribution of genetic and epigenetic mechanisms to organismal response to stress is largely biased towards specific taxonomic groups (e.g. seed plants) and environmental stresses (e.g. drought and salinity). In previous work, we found intraspecific differences in heavy metal (HM) uptake capacity in the brown macroalgae Fucus vesiculosus. The molecular mechanisms underlying these differences, however, remained unknown. Here, we evaluated the concentrations of HMs, and characterized the genetic (single nucleotide polymorphisms) and epigenetic (cytosine DNA methylation) variability in reciprocal transplants of F. vesiculosus between two polluted and two unpolluted sites on the NW Spanish coast after 90 days. Genetic and epigenetic differentiation did not explain the phenotypic differentiation observed, possibly due to the combined effect of multiple environmental factors acting on the algae in their natural habitats. Nonetheless, we provide further evidence of intraspecific genetic differentiation in F. vesiculosus at short spatial scales, as well as first evidence of population-specific epigenetic changes in brown macroalgae in response to changes in environmental conditions (i.e. transplantation ex situ). We propose that both genetic and, to some extent, epigenetic mechanisms might impinge upon the adaptive potential of this species to environmental change, but this needs to be further addressed.

摘要

我们对遗传和表观遗传机制对生物体对应激反应的相对贡献的理解在很大程度上偏向于特定的分类群(例如种子植物)和环境应激(例如干旱和盐度)。在之前的工作中,我们发现褐藻泡叶藻在重金属(HM)摄取能力上存在种内差异。然而,这些差异的分子机制尚不清楚。在这里,我们评估了 HM 的浓度,并在西班牙西北部海岸的两个污染和两个未污染地点之间的泡叶藻的相互移植 90 天后,对其遗传(单核苷酸多态性)和表观遗传(胞嘧啶 DNA 甲基化)变异性进行了特征描述。遗传和表观遗传分化并不能解释观察到的表型分化,这可能是由于多种环境因素在藻类的自然栖息地中共同作用的结果。尽管如此,我们在短空间尺度上为泡叶藻的种内遗传分化提供了进一步的证据,以及褐藻对环境条件变化(即体外移植)产生的特定种群的表观遗传变化的首次证据。我们提出,遗传和在某种程度上是表观遗传机制可能会影响该物种对环境变化的适应潜力,但这需要进一步研究。

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