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Epigenetic programming: the challenge to species hybridization. (Special Issue: Molecular Plant on epigenetics and plant development.)

机译:表观遗传程序设计:对物种杂交的挑战。 (特刊:关于表观遗传学和植物发育的分子植物。)

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摘要

In many organisms, the genomes of individual species are isolated by a range of reproductive barriers that act before or after fertilization. Successful mating between species results in the presence of different genomes within a cell (hybridization), which can lead to incompatibility in cellular events due to adverse genetic interactions. In addition to such genetic interactions, recent studies have shown that the epigenetic control of the genome, silencing of transposons, control of non-additive gene expression and genomic imprinting might also contribute to reproductive barriers in plant and animal species. These genetic and epigenetic mechanisms play a significant role in the prevention of gene flow between species. In this review, we focus on aspects of epigenetic control related to hybrid incompatibility during species hybridization, and also consider key mechanism(s) in the interaction between different genomes.
机译:在许多生物中,单个物种的基因组是通过一系列在受精之前或之后起作用的生殖屏障而分离的。物种之间的成功交配会导致细胞内存在不同的基因组(杂交),这可能由于不利的遗传相互作用而导致细胞事件不相容。除了这种遗传相互作用外,最近的研究表明,基因组的表观遗传控制,转座子沉默,非加性基因表达控制和基因组印迹也可能导致动植物繁殖障碍。这些遗传和表观遗传机制在防止物种之间的基因流动中起着重要作用。在这篇综述中,我们着重于与物种杂交过程中的杂交不相容性有关的表观遗传控制,并考虑了不同基因组之间相互作用的关键机制。

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