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整合组学分析揭示酵母种间杂交后有限的转录冲击。

Integrative Omics Analysis Reveals a Limited Transcriptional Shock After Yeast Interspecies Hybridization.

作者信息

Hovhannisyan Hrant, Saus Ester, Ksiezopolska Ewa, Hinks Roberts Alex J, Louis Edward J, Gabaldón Toni

机构信息

Centre for Genomic Regulation, Barcelona Institute of Science and Technology, Barcelona, Spain.

Department of Health and Life Sciences. Universitat Pompeu Fabra, Barcelona, Spain.

出版信息

Front Genet. 2020 May 7;11:404. doi: 10.3389/fgene.2020.00404. eCollection 2020.

Abstract

The formation of interspecific hybrids results in the coexistence of two diverged genomes within the same nucleus. It has been hypothesized that negative epistatic interactions and regulatory interferences between the two sub-genomes may elicit a so-called genomic shock involving, among other alterations, broad transcriptional changes. To assess the magnitude of this shock in hybrid yeasts, we investigated the transcriptomic differences between a newly formed × diploid hybrid and its diploid parentals, which diverged ∼20 mya. RNA sequencing (RNA-Seq) based allele-specific expression (ASE) analysis indicated that gene expression changes in the hybrid genome are limited, with only ∼1-2% of genes significantly altering their expression with respect to a non-hybrid context. In comparison, a thermal shock altered six times more genes. Furthermore, differences in the expression between orthologous genes in the two parental species tended to be diminished for the corresponding homeologous genes in the hybrid. Finally, and consistent with the RNA-Seq results, we show a limited impact of hybridization on chromatin accessibility patterns, as assessed with assay for transposase-accessible chromatin using sequencing (ATAC-Seq). Overall, our results suggest a limited genomic shock in a newly formed yeast hybrid, which may explain the high frequency of successful hybridization in these organisms.

摘要

种间杂种的形成导致两个分化的基因组在同一细胞核内共存。据推测,两个亚基因组之间的负上位性相互作用和调控干扰可能引发所谓的基因组冲击,除其他变化外,还包括广泛的转录变化。为了评估杂交酵母中这种冲击的程度,我们研究了新形成的×二倍体杂种与其二倍体亲本之间的转录组差异,这两个亲本在约2000万年前分化。基于RNA测序(RNA-Seq)的等位基因特异性表达(ASE)分析表明,杂交基因组中的基因表达变化有限,相对于非杂交背景,只有约1-2%的基因显著改变其表达。相比之下,热激改变的基因数量是其六倍。此外,两个亲本物种中直系同源基因之间的表达差异在杂种中相应的同源基因中往往会减小。最后,与RNA-Seq结果一致,我们发现杂交对染色质可及性模式的影响有限,这是通过使用测序的转座酶可及染色质分析(ATAC-Seq)评估的。总体而言,我们的结果表明新形成的酵母杂种中基因组冲击有限,这可能解释了这些生物体中成功杂交的高频率。

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