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Revisiting the Impact of Inversions in Evolution: From Population Genetic Markers to Drivers of Adaptive Shifts and Speciation?

机译:重新审视进化反转的影响:从种群遗传标记到适应性转变和物种形成的驱动力?

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There is a growing appreciation that chromosome inversions affect rates of adaptation, speciation, and the evolution of sex chromosomes. Comparative genomic studies have identified many new paracentric inversion polymorphisms. Population models suggest that inversions can spread by reducing recombination between alleles that independently increase fitness, without epistasis or coadaptation. Areas of linkage disequilibrium extend across large inversions but may be interspersed by areas with little disequilibrium. Genes located within inversions are associated with a variety of traits including those involved in climatic adaptation. Inversion polymorphisms may contribute to speciation by generating underdominance owing to inviable gametes, but an alternative view gaining support is that inversions facilitate speciation by reducing recombination, protecting genomic regions from introgression. Likewise, inversions may facilitate the evolution of sex chromosomes by reducing recombination between sex determining alleles and alleles with sex-specific effects. However, few genes within inversions responsible for fitness effects or speciation have been identified.
机译:人们越来越认识到,染色体倒置会影响适应性,物种形成和性染色体的进化。比较基因组学研究已经确定了许多新的副中心反转多态性。群体模型表明,倒置可以通过减少等位基因之间的重组来扩展,这些等位基因独立地增加适应性,而没有上位或共适应。连锁不平衡的区域跨越较大的反转,但可能散布着很少不平衡的区域。位于反演范围内的基因与多种性状相关,包括那些与气候适应有关的性状。倒位多态性可能由于配子不可配而产生显性优势,从而可能有助于物种形成,但是另一种观点得到了支持,即倒位通过减少重组来促进物种形成,保护基因组区域不渗入。同样,倒位可通过减少性别决定的等位基因与具有性别特异性作用的等位基因之间的重组来促进性染色体的进化。然而,几乎没有发现反演内的适合度效应或物种形成的基因。

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