Chromosome length genome assembly of the stone marten (Martes foina, Mustelidae): a new view on one of the cornerstones in carnivore cytogenetics.

IF 3 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Andrey Tomarovsky, Ruqayya Khan, Olga Dudchenko, Azamat Totikov, Natalia A Serdyukova, David Weisz, Nadejda V Vorobieva, Tatiana Bulyonkova, Alexei V Abramov, Wenhui Nie, Jinhuan Wang, Svetlana A Romanenko, Anastasiya A Proskuryakova, Nikolay Cherkasov, Malcolm A Ferguson-Smith, Fengtang Yang, Elena Balanovskaya, M Thomas P Gilbert, Alexander S Graphodatsky, Erez Lieberman Aiden, Roger Powell, Klaus-Peter Koepfli, Polina L Perelman, Sergei Kliver
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Abstract

The stone marten (Martes foina) is an important species for cytogenetic studies in the order Carnivora. ZooFISH probes created from its chromosomes provided a strong and clean signal in chromosome painting experiments and were valuable for studying the evolution of carnivoran genome architecture. The research revealed that the stone marten chromosome set is similar to the presumed ancestral karyotype of the Carnivora, which added an additional value for the species. Using linked-read and Hi-C sequencing, we generated a chromosome-length genome assembly of a male stone marten (Gansu province, China) from a primary cell line. The stone marten assembly had a length of 2.42 Gbp, scaffold N50 of 144 Mbp, and a 96.2% BUSCO completeness score. We identified 19 chromosomal scaffolds (2n=38) and assigned them chromosome ids based on chromosome painting data. Annotation identified 20,087 protein-coding gene models, of which 18,283 were assigned common names. Comparison of the stone marten assembly with the cat, dog, and human genomes revealed several small syntenic blocks absent on the published painting maps. Finally, we assessed the heterozygosity and its distribution over the chromosomes. The detected low heterozygosity level (0.4 hetSNPs/kbp) and the presence of long RoHs require further research and a new evaluation of the conservation status of the stone marten in China. Combined with available carnivoran genomes in large scale synteny analysis, the stone marten genome will highlight new features and events in carnivoran evolution, hidden from cytogenetic approaches.

石貂(Martes foina, Mustelidae)染色体长度基因组组装:食肉动物细胞遗传学基石之一的新观点。
石貂(Martes foina)是食肉目中细胞遗传学研究的重要物种。由其染色体构建的ZooFISH探针在染色体绘制实验中提供了强烈而清晰的信号,对研究食肉动物基因组结构的进化具有重要价值。研究表明,石貂的染色体组与假定的食肉目祖先核型相似,这为该物种增加了额外的价值。利用链读和Hi-C测序,我们从一个原代细胞系中获得了雄性石貂(中国甘肃省)的染色体长度基因组组装。石鼠体组件长度为2.42 Gbp,支架N50为144 Mbp, BUSCO完整性评分为96.2%。我们鉴定了19个染色体支架(2n=38),并根据染色体绘制数据为其分配了染色体id。Annotation共鉴定出20,087个蛋白质编码基因模型,其中18283个被赋予了通用名称。将石貂组合与猫、狗和人类基因组进行比较,发现了一些在已发表的绘画地图上缺失的小的合成块。最后,我们评估了杂合性及其在染色体上的分布。检测到的低杂合度(0.4 hetSNPs/kbp)和较长的RoHs存在,需要进一步研究,并对中国石鼬的保护状况进行新的评价。结合大规模合成分析中可用的食肉动物基因组,石貂基因组将突出食肉动物进化的新特征和事件,这些特征和事件隐藏在细胞遗传学方法中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Heredity
Journal of Heredity 生物-遗传学
CiteScore
5.20
自引率
6.50%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Over the last 100 years, the Journal of Heredity has established and maintained a tradition of scholarly excellence in the publication of genetics research. Virtually every major figure in the field has contributed to the journal. Established in 1903, Journal of Heredity covers organismal genetics across a wide range of disciplines and taxa. Articles include such rapidly advancing fields as conservation genetics of endangered species, population structure and phylogeography, molecular evolution and speciation, molecular genetics of disease resistance in plants and animals, genetic biodiversity and relevant computer programs.
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