论文标题
超基因的基因组结构和进化命运
The genomic architecture and evolutionary fates of supergenes
论文作者
论文摘要
超基因是基因组区域,其中包含一组紧密连接的基因座,可控制在平衡选择下多态性多态性多态性。基因组学的最新进展已经发现了基因组结构以及跨不同生物体系统超级基因的起源方式的显着差异。尽管已经讨论了基因组结构在超级基因起源的起源的作用,但基因组结构的差异随后也影响了超基因的进化轨迹和超级单倍型的变性速率。在这篇综述中,我们综合了最新的基因组工作和超速进化的历史模型,强调了超基因的基因组建筑如何影响其进化命运。我们讨论了有关经典超级基因的最新发现,如何参与管理蚂蚁殖民地社会形式,模仿蝴蝶和开花植物中的异体与理论期望有关。此外,我们使用正向模拟来证明基因组结构的差异会影响超基因的退化。最后,我们讨论了超基因单倍型的演变对超级基因支配的平衡多态性的长期命运的含义。
Supergenes are genomic regions containing sets of tightly linked loci that control multi-trait phenotypic polymorphisms under balancing selection. Recent advances in genomics have uncovered significant variation in both the genomic architecture as well as the mode of origin of supergenes across diverse organismal systems. Although the role of genomic architecture for the origin of supergenes has been much discussed, differences in the genomic architecture also subsequently affect the evolutionary trajectory of supergenes and the rate of degeneration of supergene haplotypes. In this review, we synthesize recent genomic work and historical models of supergene evolution, highlighting how the genomic architecture of supergenes affects their evolutionary fate. We discuss how recent findings on classic supergenes involved in governing ant colony social form, mimicry in butterflies, and heterostyly in flowering plants relate to theoretical expectations. Furthermore, we use forward simulations to demonstrate that differences in genomic architecture affect the degeneration of supergenes. Finally, we discuss implications of the evolution of supergene haplotypes for the long-term fate of balanced polymorphisms governed by supergenes.