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Myotis rufoniger genome sequence and analyses: M. rufoniger’s genomic feature and the decreasing effective population size of Myotis bats

机译:鲁氏沼虾的基因组序列和分析:鲁氏沼虾的基因组特征和蝙蝠有效种群的减少

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摘要

Myotis rufoniger is a vesper bat in the genus Myotis. Here we report the whole genome sequence and analyses of the M. rufoniger. We generated 124 Gb of short-read DNA sequences with an estimated genome size of 1.88 Gb at a sequencing depth of 66× fold. The sequences were aligned to M. brandtii bat reference genome at a mapping rate of 96.50% covering 95.71% coding sequence region at 10× coverage. The divergence time of Myotis bat family is estimated to be 11.5 million years, and the divergence time between M. rufoniger and its closest species M. davidii is estimated to be 10.4 million years. We found 1,239 function-altering M. rufoniger specific amino acid sequences from 929 genes compared to other Myotis bat and mammalian genomes. The functional enrichment test of the 929 genes detected amino acid changes in melanin associated DCT, SLC45A2, TYRP1, and OCA2 genes possibly responsible for the M. rufoniger’s red fur color and a general coloration in Myotis. N6AMT1 gene, associated with arsenic resistance, showed a high degree of function alteration in M. rufoniger. We further confirmed that the M. rufoniger also has bat-specific sequences within FSHB, GHR, IGF1R, TP53, MDM2, SLC45A2, RGS7BP, RHO, OPN1SW, and CNGB3 genes that have already been published to be related to bat’s reproduction, lifespan, flight, low vision, and echolocation. Additionally, our demographic history analysis found that the effective population size of Myotis clade has been consistently decreasing since ~30k years ago. M. rufoniger’s effective population size was the lowest in Myotis bats, confirming its relatively low genetic diversity.
机译:Myotis rufoniger是Myotis属的蝙蝠蝙蝠。在这里,我们报告了整个基因组序列和鲁氏沼虾的分析。我们以66倍的测序深度生成了124 Gb的短读DNA序列,估计的基因组大小为1.88 Gb。以96.50%的作图率将序列与白兰地蝙蝠参照基因组比对,以10x的覆盖率覆盖95.71%的编码序列区域。 Myotis蝙蝠家族的发散时间估计为1150万年,rufoniger与其最接近的物种大卫分枝杆菌之间的发散时间估计为1040万年。我们从929个基因中发现了1,239个改变功能的M. rufoniger特异氨基酸序列,与其他Myotis蝙蝠和哺乳动物基因组相比。通过对929个基因的功能富集测试,发现可能与 M 有关的黑色素相关DCT,SLC45A2, TYRP1 OCA2 基因的氨基酸变化。 rufoniger 的红色皮毛颜色和 Myotis 中的一般颜色。 N6AMT1 基因与砷抗性相关,在 M 中具有高度的功能改变。 rufoniger 。我们进一步确认了 M rufoniger FSHB GHR IGF1R TP53 中也有蝙蝠特异性序列, MDM2 SLC45A2 RGS7BP RHO OPN1SW 已经公开的CNGB3 基因与蝙蝠的繁殖,寿命,飞行,低视力和回声定位有关。此外,我们的人口历史分析发现,自约3万年前以来, Myotis 进化枝的有效种群数量一直在减少。 M rufoniger 的有效种群数量在 Myotis 蝙蝠中最低,证实了其相对较低的遗传多样性。

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