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保护基因组学的前奏:飞鼠(鼯鼠族:)的首个染色体水平基因组组装

A Prelude to Conservation Genomics: First Chromosome-Level Genome Assembly of a Flying Squirrel (Pteromyini: ).

作者信息

Wehrenberg Gerrit, Kiebler Angelika, Greve Carola, Beltrán-Sanz Núria, Ben Hamadou Alexander, Meißner René, Winter Sven, Prost Stefan

机构信息

Ecology and Genetics Research Unit University of Oulu Oulu Finland.

Centre for Translational Biodiversity Genomics (LOEWE-TBG) Frankfurt am Main Germany.

出版信息

Ecol Evol. 2025 Sep 1;15(9):e71905. doi: 10.1002/ece3.71905. eCollection 2025 Sep.

Abstract

The Siberian flying squirrel () represents the only European Pteromyini species. Thus, it is biogeographically unique due to its specialised anatomy and biology as a volant rodent. As a result of habitat fragmentation and destruction, Siberian flying squirrels experience severe and ongoing population declines throughout most of their distribution. While considered throughout their immense Eurasian distribution, this species is red-listed as and even in parts of its range. More knowledge about the population structure and overall biology is needed to improve conservation efforts for this umbrella and flagship species of old-growth boreal forests. Here, we present the first chromosome-level genome assembly of any Pteromyini, represented by (Uoulu_pteVol_1.0). The final assembly has a total length of 2.85 Gbp in 19 chromosome-scale scaffolds with only minor differences in the chromosomal structure compared to other Sciuridae. All chromosome-scale scaffolds show indications for telomeres at both ends; the N50 value and busco as well as -mer completeness scores are high with 157.39 Mbp and 97%-99%, respectively, indicating chromosome-level quality of the assembly. Based on whole-genome data from 17 rodent species, clusters according to known evolutionary relationships. Additionally, we present a new 16,511 bp long mitogenome unveiling differences from known conspecific mitogenomes. We propose the utility of the new reference genome for further research and development of conservation-applied genetic methods. Here, we present the first chromosome-level genome assembly of any flying squirrel species (Pteromyini), specifically from the nominate subspecies of the Siberian flying squirrel (). While overall considered to be of by the IUCN, this species shows drastically declining trends in most of their distribution and is even threatened by extinction in some countries. Many studies pointed out that a genomic approach is needed to tackle current study questions comprehensively. Therefore, the novel chromosome-level genome assembly should serve as a reference for research of the species' ecology and evolution as well as for the development of genetic tools for conservation management.

摘要

西伯利亚鼯鼠()是欧洲唯一的鼯鼠科物种。因此,由于其作为会飞的啮齿动物所具有的特殊解剖结构和生物学特性,它在生物地理学上具有独特性。由于栖息地破碎化和破坏,西伯利亚鼯鼠在其大部分分布区域内经历着严重且持续的种群数量下降。尽管在其广阔的欧亚分布范围内都受到关注,但该物种在其分布范围的部分地区被列入红色名录,甚至被列为极危物种。为了加强对这种作为原始北方森林的伞护种和旗舰种的保护工作,需要更多关于其种群结构和整体生物学的知识。在此,我们展示了首个鼯鼠科物种的染色体水平基因组组装,以(乌奥卢鼯鼠_pteVol_1.0)为代表。最终组装的基因组全长2.85 Gbp,分布在19个染色体规模的支架上,与其他松鼠科相比,染色体结构仅有微小差异。所有染色体规模的支架两端均显示出端粒的迹象;N50值、BUSCO以及k-mer完整性得分都很高,分别为157.39 Mbp和97%-99%,表明该组装达到了染色体水平的质量。基于来自17种啮齿动物物种的全基因组数据,根据已知的进化关系进行聚类。此外,我们展示了一个新的长度为16,511 bp的线粒体基因组,揭示了与已知同物种线粒体基因组的差异。我们提出新的参考基因组对于进一步研究以及开发保护应用的遗传方法具有实用性。在此,我们展示了首个鼯鼠物种(鼯鼠科)的染色体水平基因组组装,具体来自西伯利亚鼯鼠指名亚种()。尽管国际自然保护联盟总体上认为该物种无危,但在其大部分分布区域内呈现出急剧下降的趋势,甚至在一些国家面临灭绝威胁。许多研究指出,需要采用基因组方法来全面解决当前的研究问题。因此,这个新的染色体水平基因组组装应作为该物种生态与进化研究以及保护管理遗传工具开发的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b0a/12400938/322889a44e3d/ECE3-15-e71905-g001.jpg

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