生物
基因组大小
基因组
进化生物学
自然选择
转座因子
有效人口规模
基因组进化
遗传学
人口
基因
遗传变异
社会学
人口学
作者
Vadim A. Pisarenco,Adrià Boada-Figueras,Marta Olivé‐Muñiz,Paula Escuer,Nuria Macías‐Hernández,Miquel A. Arnedo,Pablo Librado,Alejandro Sánchez‐Gracia,Sara Guirao‐Rico,Julio Rozas
标识
DOI:10.1101/2025.06.14.659697
摘要
Abstract Red devil spiders of the genus Dysdera colonised the Canary Islands and underwent an extraordinary diversification. Notably, their genomes are nearly half the size of their mainland counterparts (∼1.7 vs. ∼3.3 Gb). This offers a unique model to solve long-standing debates regarding the roles of adaptive and non-adaptive forces on shaping genome size genome size evolution. To address these, we conducted comprehensive genomic analyses based on three high-quality chromosome-level assemblies, including two newly generated ones. We find that insular species experienced a reduction in genome size, affecting all genomic elements, including intronic and intergenic regions, with transposable element (TE) loss accounting for most of this contraction. Additionally, autosomes experienced a disproportionate reduction compared to the X chromosome. Paradoxically, island species exhibit higher levels of nucleotide diversity and recombination, lower TE activity in recent times, and evidence of intensified natural selection, collectively pointing to larger long-term effective population sizes in species from the Canary Islands. Overall, our findings align with the non-adaptive mutational hazard hypothesis, supporting purifying selection against slightly deleterious DNA and TE insertions as the primary mechanism driving genome size reduction.
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