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A pseudomolecule assembly of the Rocky Mountain elk genome

机译:落基山麋鹿基因组的假暗模拟

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摘要

Rocky Mountain elk ( Cervus canadensis ) populations have significant economic implications to the cattle industry, as they are a major reservoir for Brucella abortus in the Greater Yellowstone area. Vaccination attempts against intracellular bacterial diseases in elk populations have not been successful due to a negligible adaptive cellular immune response. A lack of genomic resources has impeded attempts to better understand why vaccination does not induce protective immunity. To overcome this limitation, PacBio, Illumina, and Hi-C sequencing with a total of 686-fold coverage was used to assemble the elk genome into 35 pseudomolecules. A robust gene annotation was generated resulting in 18,013 gene models and 33,422 mRNAs. The accuracy of the assembly was assessed using synteny to the red deer and cattle genomes identifying several chromosomal rearrangements, fusions and fissions. Because this genome assembly and annotation provide a foundation for genome-enabled exploration of Cervus species, we demonstrate its utility by exploring the conservation of immune system-related genes. We conclude by comparing cattle immune system-related genes to the elk genome, revealing eight putative gene losses in elk.
机译:岩石山麋鹿(Cervus Canadensis)人口对牛行业具有显着的经济影响,因为它们是大黄石地区布鲁氏菌的主要水库。由于可忽略的适应性细胞免疫应答,抗菌药物患者对麋鹿群细菌疾病的疫苗接种试图尚未成功。缺乏基因组资源阻碍了更好地理解为什么疫苗接种不会引起保护性免疫力。为了克服这种限制,使用总共686倍覆盖的PACBIO,Illumina和Hi-C测序用于将ELK基因组组装成35个假致颗粒。产生稳健的基因注释,导致18,013种基因模型和33,422 mRNA。使用Synteny向红鹿和牛基因组评估组件的准确性,鉴定几种染色体重排,融合和排泄。由于这种基因组组装和注释为能够对宫颈物种的基因组勘探提供了基础,因此我们通过探索免疫系统相关基因的保护来证明其效用。我们通过将牛免疫系统相关基因与麋鹿基因组进行比较,揭示麋鹿中的八种诱导基因损失。

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