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同域和异域形态蝴蝶的 Z 染色体进化率增加。

Increased Evolutionary Rate in the Z chromosome of Sympatric and Allopatric Species of Morpho Butterflies.

机构信息

Institut de Systématique, Evolution et Biodiversité (UMR 7205 CNRS/MNHN/SU/EPHE/UA), Muséum National d'Histoire Naturelle - CP50, 45 rue Buffon, Paris 75005, France.

Centre Interdisciplinaire de Recherche en Biologie (UMR 7241 CNRS/INSERM/Collège de France) 11, place Marcelin Berthelot, Paris 75005, France.

出版信息

Genome Biol Evol. 2024 Nov 1;16(11). doi: 10.1093/gbe/evae227.

Abstract

Divergent evolution of genomes among closely related species is shaped by both neutral processes and ecological forces, such as local adaptation and reinforcement. These factors can drive accelerated evolution of sex chromosomes relative to autosomes. Comparative genomic analyses between allopatric and sympatric species with overlapping or divergent ecological niches offer insights into reinforcement and ecological specialization on genome evolution. In the butterfly genus Morpho, several species coexist in sympatry, with specialization across forest strata and temporal niches. We analyzed the genomes of eight Morpho species, along with previously published genomes of three others, to compare chromosomal rearrangements and signs of positive selection in the Z chromosome vs. autosomes. We found extensive chromosomal rearrangements in Z chromosome, particularly in sympatric species with similar ecological niches, suggesting a role for inversions in restricting gene flow at a postzygotic level. Z-linked genes also exhibited significantly higher dN/dS ratios than autosomal genes across the genus, with pronounced differences in closely related species living in sympatry. Additionally, we examined the evolution of eight circadian clock genes, detecting positive selection in Period, located on the Z chromosome. Our findings suggest that the Z chromosome evolves more rapidly than autosomes, particularly among closely related species, raising questions about its role in prezygotic and postzygotic isolation mechanisms.

摘要

亲缘关系密切的物种之间的基因组趋异进化是由中性过程和生态力量共同塑造的,如局部适应和强化。这些因素可以驱动性染色体相对于常染色体的加速进化。对具有重叠或不同生态位的地理隔离和同域物种进行比较基因组分析,可以深入了解强化和生态专化对基因组进化的影响。在闪蝶属 Morpho 中,几个物种共存于同域中,在森林层次和时间生态位上存在特化。我们分析了 8 种 Morpho 物种的基因组,以及之前发表的另外 3 种的基因组,以比较 Z 染色体与常染色体的染色体重排和正选择迹象。我们发现 Z 染色体上存在广泛的染色体重排,特别是在具有相似生态位的同域物种中,这表明倒位可能在阻止合子后水平的基因流方面发挥作用。Z 连锁基因的 dN/dS 比值也明显高于整个属的常染色体基因,在同域生活的亲缘关系密切的物种中存在显著差异。此外,我们还研究了 8 个生物钟基因的进化,检测到位于 Z 染色体上的 Period 基因发生了正选择。我们的研究结果表明,Z 染色体比常染色体进化得更快,尤其是在亲缘关系密切的物种中,这引发了对其在合子前和合子后隔离机制中作用的疑问。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f53/11562113/410e975ab673/evae227f1.jpg

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