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Genome sequence of ground tit Pseudopodoces humilis and its adaptation to high altitude

机译:地面山雀假单胞菌的基因组序列及其对高海拔的适应

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Background: The mechanism of high-altitude adaptation has been studied in certain mammals. However, in avian species like the ground tit Pseudopodoces humilis, the adaptation mechanism remains unclear. The phylogeny of the ground tit is also controversial. Results: Using next generation sequencing technology, we generated and assembled a draft genome sequence of the ground tit. The assembly contained 1.04 Gb of sequence that covered 95.4% of the whole genome and had higher N50 values, at the level of both scaffolds and contigs, than other sequenced avian genomes. About 1.7 million SNPs were detected, 16,998 protein-coding genes were predicted and 7% of the genome was identified as repeat sequences. Comparisons between the ground tit genome and other avian genomes revealed a conserved genome structure and confirmed the phylogeny of ground tit as not belonging to the Corvidae family. Gene family expansion and positively selected gene analysis revealed genes that were related to cardiac function. Our findings contribute to our understanding of the adaptation of this species to extreme environmental living conditions. Conclusions: Our data and analysis contribute to the study of avian evolutionary history and provide new insights into the adaptation mechanisms to extreme conditions in animals.
机译:背景:已经在某些哺乳动物中研究了高海拔适应的机制。然而,在像山雀Pseudopodoces humilis这样的禽类中,其适应机制仍不清楚。山雀的系统发育也存在争议。结果:使用下一代测序技术,我们生成并组装了山雀的基因组序列草图。该装配体包含1.04 Gb的序列,覆盖了整个基因组的95.4%,并且在支架和重叠群水平上的N50值均高于其他测序的禽类基因组。检测到约170万个SNP,预测了16,998个蛋白质编码基因,并将7%的基因组鉴定为重复序列。地面山雀基因组和其他鸟类基因组之间的比较显示了保守的基因组结构,并证实了地面山雀的系统发育不属于Corvidae家族。基因家族的扩展和积极选择的基因分析揭示了与心脏功能相关的基因。我们的发现有助于我们了解该物种对极端环境生活条件的适应性。结论:我们的数据和分析有助于鸟类进化史的研究,并为动物适应极端条件的适应机制提供新见解。

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