Biodiversity Genomics Laboratory, Institute of Biology, University of Neuchâtel, 2000 Neuchâtel, Switzerland
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Instituto de Genética Humana de Misiones (IGeHM), Parque de la Salud de la Provincia de Misiones "Dr. Ramón Madariaga," N3300KAZ Posadas, Misiones, Argentina.
Cold Spring Harb Perspect Biol. 2023 Nov 1;15(11):a041447. doi: 10.1101/cshperspect.a041447.
Chromosomal rearrangements (CRs) have been known since almost the beginning of genetics. While an important role for CRs in speciation has been suggested, evidence primarily stems from theoretical and empirical studies focusing on the microevolutionary level (i.e., on taxon pairs where speciation is often incomplete). Although the role of CRs in eukaryotic speciation at a macroevolutionary level has been supported by associations between species diversity and rates of evolution of CRs across phylogenies, these findings are limited to a restricted range of CRs and taxa. Now that more broadly applicable and precise CR detection approaches have become available, we address the challenges in filling some of the conceptual and empirical gaps between micro- and macroevolutionary studies on the role of CRs in speciation. We synthesize what is known about the macroevolutionary impact of CRs and suggest new research avenues to overcome the pitfalls of previous studies to gain a more comprehensive understanding of the evolutionary significance of CRs in speciation across the tree of life.
染色体重排 (CRs) 自遗传学诞生之初就为人所知。虽然 CRs 在物种形成中的重要作用已被提出,但证据主要来自于关注微观进化水平的理论和实证研究(即关注物种形成通常不完全的分类群对)。尽管跨进化枝系中物种多样性与 CRs 进化速率之间的关联支持了 CRs 在真核生物物种形成中的宏观进化作用,但这些发现仅限于有限的 CRs 和分类群范围。现在,更广泛适用和精确的 CR 检测方法已经可用,我们解决了在填补 CRs 在物种形成中的微观和宏观进化研究之间的概念和经验差距方面的一些挑战。我们综合了关于 CRs 对宏观进化影响的已知知识,并提出了新的研究途径,以克服以前研究的陷阱,从而更全面地了解 CRs 在整个生命之树上的物种形成中的进化意义。