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Comparative Genomics Reveals the Genetic Mechanisms of Musk Secretion and Adaptive Immunity in Chinese Forest Musk Deer

机译:比较基因组学揭示了中国森林麝鹿麝香分泌和适应性免疫的遗传机制

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摘要

The Chinese forest musk deer (Moschus berezovskii; FMD) is an artiodactyl mammal and is both economically valuable and highly endangered. To investigate the genetic mechanisms of musk secretion and adaptive immunity in FMD, we compared its genome to nine other artiodactyl genomes. Comparative genomics demonstrated that eight positively selected genes (PSGs) in FMD were annotated in three KEGG pathways that were related to metabolic and synthetic activity of musk, similar to previous transcriptome studies. Functional enrichment analysis indicated that many PSGs were involved in the regulation of immune system processes, implying important reorganization of the immune system in FMD. FMD-specific missense mutations were found in two PSGs (MHC class II antigen DRA and ADA) that were classified as deleterious by PolyPhen-2, possibly contributing to immune adaptation to infectious diseases. Functional assessment showed that the FMD-specific mutation enhanced the ADA activity, which was likely to strengthen the immune defense against pathogenic invasion. Single nucleotide polymorphism-based inference showed the recent demographic trajectory for FMD. Our data and findings provide valuable genomic resources not only for studying the genetic mechanisms of musk secretion and adaptive immunity, but also for facilitating more effective management of the captive breeding programs for this endangered species.
机译:中国森林麝鹿(Moschus berezovskii; FMD)是一种偶蹄动物,在经济上既有价值又极度濒危。为了研究口蹄疫中麝香分泌和适应性免疫的遗传机制,我们将其基因组与其他九个动d基基因组进行了比较。比较基因组学表明,FMD中的八个阳性选择基因(PSG)在与麝香的代谢和合成活性相关的三个KEGG途径中被注释,类似于以前的转录组研究。功能富集分析表明,许多PSG参与了免疫系统过程的调节,这意味着FMD中免疫系统的重要重组。在两个PSG中发现了FMD特异的错义突变(MHC II类抗原DRA和ADA),被PolyPhen-2分类为有害的,可能有助于免疫适应传染性疾病。功能评估表明,FMD特异性突变增强了ADA活性,这很可能会增强针对病原体入侵的免疫防御能力。基于单核苷酸多态性的推断显示了口蹄疫的近期人口统计轨迹。我们的数据和发现不仅为研究麝香分泌和适应性免疫的遗传机制提供了宝贵的基因组资源,而且还为该濒危物种的圈养繁殖计划的更有效管理提供了便利。

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