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Multi-Platform Next-Generation Sequencing of the Domestic Turkey (Meleagris gallopavo): Genome Assembly and Analysis

机译:土耳其国内多平台下一代测序(Meleagris gallopavo):基因组组装和分析

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摘要

A synergistic combination of two next-generation sequencing platforms with a detailed comparative BAC physical contig map provided a cost-effective assembly of the genome sequence of the domestic turkey (Meleagris gallopavo). Heterozygosity of the sequenced source genome allowed discovery of more than 600,000 high quality single nucleotide variants. Despite this heterozygosity, the current genome assembly (∼1.1 Gb) includes 917 Mb of sequence assigned to specific turkey chromosomes. Annotation identified nearly 16,000 genes, with 15,093 recognized as protein coding and 611 as non-coding RNA genes. Comparative analysis of the turkey, chicken, and zebra finch genomes, and comparing avian to mammalian species, supports the characteristic stability of avian genomes and identifies genes unique to the avian lineage. Clear differences are seen in number and variety of genes of the avian immune system where expansions and novel genes are less frequent than examples of gene loss. The turkey genome sequence provides resources to further understand the evolution of vertebrate genomes and genetic variation underlying economically important quantitative traits in poultry. This integrated approach may be a model for providing both gene and chromosome level assemblies of other species with agricultural, ecological, and evolutionary interest.
机译:两个下一代测序平台与详细的比较BAC物理重叠群图的协同组合,为家养火鸡(Meleagris gallopavo)的基因组序列提供了经济高效的组装方法。测序的源基因组的杂合性允许发现超过600,000个高质量的单核苷酸变体。尽管有这种杂合性,当前的基因组组装(约1.1 Gb)仍包含分配给特定火鸡染色体的917 Mb序列。注释识别了近16,000个基因,其中15,093个被识别为蛋白质编码基因,而611个被识别为非编码RNA基因。对火鸡,鸡和斑马雀科的基因组进行比较分析,并将禽类与哺乳动物进行比较,可以支持禽类基因组的特征稳定性,并鉴定出禽类谱系特有的基因。禽类免疫系统的基因数量和种类存在明显差异,其中扩展和新基因的发生频率低于基因丧失的例子。火鸡基因组序列为进一步了解脊椎动物基因组的进化和家禽具有重要经济数量特征的遗传变异提供了资源。这种综合方法可能是为其他具有农业,生态和进化意义的物种提供基因和染色体水平装配的模型。

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