Runemark Anna, Moore Emily C, Larson Erica L
Department of Biology, Lund University, Lund, Sweden.
Department of Biological Sciences, University of Denver, Denver, Colorado, USA.
Mol Ecol. 2024 Feb 27:e17303. doi: 10.1111/mec.17303.
Gene expression has a key role in reproductive isolation, and studies of hybrid gene expression have identified mechanisms causing hybrid sterility. Here, we review the evidence for altered gene expression following hybridization and outline the mechanisms shown to contribute to altered gene expression in hybrids. Transgressive gene expression, transcending that of both parental species, is pervasive in early generation sterile hybrids, but also frequently observed in viable, fertile hybrids. We highlight studies showing that hybridization can result in transgressive gene expression, also in established hybrid lineages or species. Such extreme patterns of gene expression in stabilized hybrid taxa suggest that altered hybrid gene expression may result in hybridization-derived evolutionary novelty. We also conclude that while patterns of misexpression in hybrids are well documented, the understanding of the mechanisms causing misexpression is lagging. We argue that jointly assessing differences in cell composition and cell-specific changes in gene expression in hybrids, in addition to assessing changes in chromatin and methylation, will significantly advance our understanding of the basis of altered gene expression. Moreover, uncovering to what extent evolution of gene expression results in altered expression for individual genes, or entire networks of genes, will advance our understanding of how selection moulds gene expression. Finally, we argue that jointly studying the dual roles of altered hybrid gene expression, serving both as a mechanism for reproductive isolation and as a substrate for hybrid ecological adaptation, will lead to significant advances in our understanding of the evolution of gene expression.
基因表达在生殖隔离中起着关键作用,对杂交基因表达的研究已经确定了导致杂种不育的机制。在这里,我们回顾了杂交后基因表达改变的证据,并概述了已证明对杂种基因表达改变有贡献的机制。超亲基因表达,即超越双亲物种的基因表达,在早期世代的不育杂种中普遍存在,但在可育的杂种中也经常观察到。我们重点介绍了一些研究,这些研究表明杂交也能在已建立的杂交谱系或物种中导致超亲基因表达。稳定杂交类群中这种极端的基因表达模式表明,杂种基因表达的改变可能导致杂交衍生的进化新奇性。我们还得出结论,虽然杂种中错误表达的模式有充分记录,但对导致错误表达的机制的理解仍滞后。我们认为,除了评估染色质和甲基化的变化外,联合评估杂种细胞组成的差异和基因表达的细胞特异性变化,将显著推进我们对基因表达改变基础的理解。此外,揭示基因表达的进化在多大程度上导致单个基因或整个基因网络的表达改变,将推进我们对选择如何塑造基因表达的理解。最后,我们认为,联合研究杂种基因表达改变的双重作用,即作为生殖隔离的一种机制和作为杂种生态适应的一个底物,将在我们对基因表达进化的理解上取得重大进展。