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海龟进化枝的单倍型解析参考基因组揭示了具有分化热点的超共线性基因组。

Haplotype-resolved reference genomes of the sea turtle clade unveil ultra-syntenic genomes with hotspots of divergence.

作者信息

Arantes Larissa S, Brown Tom, De Panis Diego, Whiting Scott D, Young Erina J, LaCasella Erin L, Carvajal Gabriella A, Kennedy Adam, Edmunds Deana, Bentley Blair P, Balacco Jennifer, Whelan Conor, Jain Nivesh, Tilley Tatiana, O'Toole Brian, Traore Patrick, Jarvis Erich D, Berry Oliver, Dutton Peter H, Komoroske Lisa M, Mazzoni Camila J

机构信息

Department of Evolutionary Genetics, Leibniz Institute for Zoo- and Wildlife Research (IZW), 10315 Berlin, Germany.

Berlin Center for Genomics in Biodiversity Research (BeGenDiv), 14195 Berlin, Germany.

出版信息

Gigascience. 2025 Jan 6;14. doi: 10.1093/gigascience/giaf105.

Abstract

BACKGROUND

Reference genomes for the entire sea turtle clade have the potential to reveal the genetic basis of traits driving the ecological and phenotypic diversity in these ancient and iconic marine species. Furthermore, these genomic resources can support conservation efforts and deepen our understanding of their unique evolution.

RESULTS

We present haplotype-resolved, chromosome-level reference genomes and high-quality gene annotations for 5 sea turtle species. This completes the catalog of reference genomes of the entire sea turtle clade when combined with our previously published reference genomes. Our analysis reveals remarkable genome synteny and collinearity across all species, despite the clade's origin dating back more than 60 million years. Regions of high interspecific genetic distance and intraspecific genetic diversity are consistently clustered in genomic hotspots, which are enriched with genes coding for immune response proteins, olfactory receptors, zinc fingers, and G-protein-coupled receptors. These hotspot regions may offer insights into the genetic mechanisms driving phenotypic divergence among species and represent areas of significant adaptive potential. Ancient demographic analysis revealed a synchronous population expansion among sea turtle species during the Pleistocene, with varying magnitudes of demographic change, likely shaped by their diverse ecological adaptations and biogeographic contexts.

CONCLUSIONS

Our work provides genomic resources for exploring genetic diversity, evolutionary adaptations, and demographic histories of sea turtles. We outline genomic regions with increased diversity, linked to immune response, sensory evolution, and adaptation to varying environments that have historically been subject to strong diversifying selection and likely will underpin sea turtles' responses to future environmental change. These reference genomes can assist conservation by providing insights into the demographic and evolutionary processes that sustain and threaten these iconic species.

摘要

背景

整个海龟类群的参考基因组有潜力揭示驱动这些古老且具有标志性的海洋物种生态和表型多样性的性状的遗传基础。此外,这些基因组资源能够支持保护工作,并加深我们对其独特进化的理解。

结果

我们展示了5种海龟的单倍型解析、染色体水平的参考基因组和高质量基因注释。与我们之前发表的参考基因组相结合,这就完成了整个海龟类群参考基因组的编目。我们的分析揭示了所有物种间显著的基因组同线性和共线性,尽管该类群的起源可追溯到6000多万年前。种间遗传距离高和种内遗传多样性高的区域始终聚集在基因组热点中,这些热点富含编码免疫反应蛋白、嗅觉受体、锌指和G蛋白偶联受体的基因。这些热点区域可能为驱动物种间表型分化的遗传机制提供见解,并代表着显著的适应潜力区域。古代种群动态分析揭示了更新世期间海龟物种间同步的种群扩张,种群变化幅度各异,这可能是由它们多样的生态适应和生物地理背景所塑造的。

结论

我们的工作为探索海龟的遗传多样性、进化适应和种群历史提供了基因组资源。我们概述了多样性增加的基因组区域,这些区域与免疫反应、感官进化以及对不同环境的适应相关,这些环境在历史上一直受到强烈的多样化选择,并且可能将支撑海龟对未来环境变化的反应。这些参考基因组可以通过深入了解维持和威胁这些标志性物种的种群动态和进化过程来协助保护工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e91/12448945/b463e9eb3241/giaf105fig1.jpg

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