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在克隆性背景下,环境选择的蚜虫变体在基因组中表现出不同的甲基化模式。

Environmentally selected aphid variants in clonality context display differential patterns of methylation in the genome.

作者信息

Pasquier Claude, Clément Mathilde, Dombrovsky Aviv, Penaud Stéphanie, Da Rocha Martine, Rancurel Corinne, Ledger Neil, Capovilla Maria, Robichon Alain

机构信息

Institute of Developmental Biology and Cancer, CNRS, University Nice Sophia Antipolis, Sophia Antipolis, France.

Institute Sophia Agrobiotech, INRA/CNRS/UNS, University Nice Sophia Antipolis, Sophia Antipolis, France.

出版信息

PLoS One. 2014 Dec 31;9(12):e115022. doi: 10.1371/journal.pone.0115022. eCollection 2014.

Abstract

Heritability of acquired phenotypic traits is an adaptive evolutionary process that appears more complex than the basic allele selection guided by environmental pressure. In insects, the trans-generational transmission of epigenetic marks in clonal and/or sexual species is poorly documented. Aphids were used as a model to explore this feature because their asexual phase generates a stochastic and/or environment-oriented repertoire of variants. The a priori unchanged genome in clonal individuals prompts us to hypothesize whether covalent methyl DNA marks might be associated to the phenotypic variability and fitness selection. The full differential transcriptome between two environmentally selected clonal variants that originated from the same founder mother was mapped on the entire genomic scaffolds, in parallel with the methyl cytosine distribution. Data suggest that the assortments of heavily methylated DNA sites are distinct in these two clonal phenotypes. This might constitute an epigenetic mechanism that confers the robust adaptation of insect species to various environments involving clonal reproduction.

摘要

获得性表型性状的遗传力是一个适应性进化过程,它似乎比由环境压力引导的基本等位基因选择更为复杂。在昆虫中,克隆和/或有性物种中表观遗传标记的跨代传递记录很少。蚜虫被用作探索这一特征的模型,因为它们的无性阶段会产生随机和/或面向环境的变异库。克隆个体中先验不变的基因组促使我们假设共价甲基化DNA标记是否可能与表型变异性和适应性选择相关。将来自同一创始母体的两个经环境选择的克隆变体之间的全差异转录组映射到整个基因组支架上,并与甲基胞嘧啶分布并行。数据表明,这两种克隆表型中高度甲基化的DNA位点组合是不同的。这可能构成一种表观遗传机制,使昆虫物种能够通过克隆繁殖有力地适应各种环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f4d/4281257/bfb7e964b08c/pone.0115022.g001.jpg

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