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在……遗传分化背景下与对不同栖息地反应相关的表观遗传变异 。 你提供的原文似乎不完整,最后的“in.”后面缺少具体内容。

Epigenetic variation associated with responses to different habitats in the context of genetic divergence in .

作者信息

Qiu Tian, Liu Zhiyuan, Yang Yunfei, Liu Bao

机构信息

School of Life Sciences Changchun Normal University Changchun China.

Institute of Grassland Science Key Laboratory of Vegetation Ecology Ministry of Education Northeast Normal University Changchun China.

出版信息

Ecol Evol. 2021 Jul 30;11(17):11874-11889. doi: 10.1002/ece3.7954. eCollection 2021 Sep.

Abstract

The mechanisms underlying heritable phenotypic divergence associated with adaptation in response to environmental stresses may involve both genetic and epigenetic variations. Several prior studies have revealed even higher levels of epigenetic variation than genetic variation. However, few population-level studies have explored the effects of epigenetic variation on species with high levels of genetic diversity distributed across different habitats. Using AFLP and methylation-sensitive AFLP markers, we tested the hypothesis that epigenetic variation may contribute to differences in plants occupying different habitats when genetic variation alone cannot fully explain adaptation. As a cosmopolitan invasive species, (common reed) together with high genetic diversity and remarkable adaptability has been suggested as a model for responses to global change and indicators of environmental fluctuations. We found high levels of genetic and epigenetic diversity and significant genetic/epigenetic structure within each of 12 studied populations sampled from four natural habitats of . . Possible adaptive epigenetic variation was suggested by significant correlations between DNA methylation-based epigenetic differentiation and adaptive genetic divergence in populations across the habitats. Meanwhile, various AMOVAs indicated that some epigenetic differences may respond to various local habitats. A partial Mantel test was used to tease out the correlations between genetic/epigenetic variation and habitat after controlling for the correlation between genetic and epigenetic variations. We found that epigenetic diversity was affected mostly by soil nutrient availability, suggesting that at least some epigenetic differentiation occurred independently of genetic variation. We also found stronger correlations between epigenetic variation and phenotypic traits than between genetic variation and such traits. Overall, our findings indicate that genetically based differentiation correlates with heterogeneous habitats, while epigenetic variation plays an important role in ecological differentiation in natural populations of . . In addition, our results suggest that when assessing global change responses of plant species, intraspecific variation needs to be considered.

摘要

与适应环境胁迫相关的可遗传表型差异背后的机制可能涉及遗传和表观遗传变异。先前的几项研究表明,表观遗传变异水平甚至高于遗传变异。然而,很少有群体水平的研究探讨表观遗传变异对分布在不同栖息地、具有高水平遗传多样性的物种的影响。我们使用扩增片段长度多态性(AFLP)和甲基化敏感AFLP标记,检验了这样一个假设:当仅遗传变异不能完全解释适应性时,表观遗传变异可能导致占据不同栖息地的植物之间产生差异。作为一种世界性入侵物种,(芦苇)具有高遗传多样性和显著的适应性,被认为是应对全球变化的模型和环境波动的指标。我们从的四个自然栖息地采集了12个研究种群,发现每个种群内都有高水平的遗传和表观遗传多样性以及显著的遗传/表观遗传结构。基于DNA甲基化的表观遗传分化与不同栖息地种群的适应性遗传分化之间的显著相关性表明存在可能的适应性表观遗传变异。同时,各种分子变异分析(AMOVA)表明,一些表观遗传差异可能与各种当地栖息地有关。在控制了遗传和表观遗传变异之间的相关性之后,我们使用部分曼特尔检验来梳理遗传/表观遗传变异与栖息地之间的相关性。我们发现表观遗传多样性主要受土壤养分有效性的影响,这表明至少一些表观遗传分化独立于遗传变异而发生。我们还发现表观遗传变异与表型性状之间的相关性比遗传变异与这些性状之间的相关性更强。总体而言,我们的研究结果表明,基于遗传的分化与异质栖息地相关,而表观遗传变异在的自然种群的生态分化中起重要作用。此外,我们的结果表明,在评估植物物种对全球变化的响应时,需要考虑种内变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19d4/8427615/cbd69ae237ff/ECE3-11-11874-g003.jpg

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