Huang Kaichi, Rieseberg Loren H
Department of Botany and Biodiversity Research Centre, University of British Columbia, Vancouver, BC, Canada.
Front Plant Sci. 2020 Mar 18;11:296. doi: 10.3389/fpls.2020.00296. eCollection 2020.
Chromosomal inversions have the potential to play an important role in evolution by reducing recombination between favorable combinations of alleles. Until recently, however, most evidence for their likely importance derived from dipteran flies, whose giant larval salivary chromosomes aided early cytogenetic studies. The widespread application of new genomic technologies has revealed that inversions are ubiquitous across much of the plant and animal kingdoms. Here we review the rapidly accumulating literature on inversions in the plant kingdom and discuss what we have learned about their establishment and likely evolutionary role. We show that inversions are prevalent across a wide range of plant groups. We find that inversions are often associated with locally favored traits, as well as with traits that contribute to assortative mating, suggesting that they may be key to adaptation and speciation in the face of gene flow. We also discuss the role of inversions in sex chromosome formation, and explore possible parallels with inversion establishment on autosomes. The identification of inversion origins, as well as the causal variants within them, will advance our understanding of chromosomal evolution in plants.
染色体倒位有可能通过减少有利等位基因组合之间的重组在进化中发挥重要作用。然而,直到最近,其可能重要性的大多数证据都来自双翅目昆虫,其巨大的幼虫唾液腺染色体有助于早期细胞遗传学研究。新基因组技术的广泛应用表明,倒位在植物和动物界的大部分区域普遍存在。在这里,我们综述了植物界中关于倒位的迅速积累的文献,并讨论了我们对其形成及其可能的进化作用的了解。我们表明,倒位在广泛的植物类群中普遍存在。我们发现,倒位通常与局部有利性状以及有助于选型交配的性状相关,这表明它们可能是面对基因流时适应和物种形成的关键。我们还讨论了倒位在性染色体形成中的作用,并探讨了与常染色体上倒位形成的可能相似之处。确定倒位起源及其内部的因果变异,将推动我们对植物染色体进化的理解。