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Dog10K_Boxer_Tasha_1.0: A Long-Read Assembly of the Dog Reference Genome

机译:dog10k_boxer_tasha_1.0:狗参考基因组的长读组件

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摘要

The domestic dog has evolved to be an important biomedical model for studies regarding the genetic basis of disease, morphology and behavior. Genetic studies in the dog have relied on a draft reference genome of a purebred female boxer dog named “Tasha” initially published in 2005. Derived from a Sanger whole genome shotgun sequencing approach coupled with limited clone-based sequencing, the initial assembly and subsequent updates have served as the predominant resource for canine genetics for 15 years. While the initial assembly produced a good-quality draft, as with all assemblies produced at the time, it contained gaps, assembly errors and missing sequences, particularly in GC-rich regions, which are found at many promoters and in the first exons of protein-coding genes. Here, we present Dog10K_Boxer_Tasha_1.0, an improved chromosome-level highly contiguous genome assembly of Tasha created with long-read technologies that increases sequence contiguity >100-fold, closes >23,000 gaps of the CanFam3.1 reference assembly and improves gene annotation by identifying >1200 new protein-coding transcripts. The assembly and annotation are available at NCBI under the accession GCF_000002285.5.
机译:国内的狗已经演变成为关于疾病,形态和行为的遗传基础研究的重要生物医学模式。在狗的遗传学研究一直依赖于一个名为“塔莎”最初发表于2005年从加之有限的基于克隆测序,最初的组装和随后的更新一桑格全基因组鸟枪测序方法派生一个纯种雌性拳师狗的参考基因组草案曾担任犬遗传学15年的主要资源。虽然最初的组件产生良好质量的草案,与在时刻产生的所有组件,它含有间隙,装配误差和丢失的序列,特别是在富含GC的区域,它们在许多启动子中发现和在蛋白的第一外显子-coding基因。在这里,我们本Dog10K_Boxer_Tasha_1.0,一种改进的染色体水平高度连续基因组装配塔刹与长读技术创建的增加序列邻接> 100倍,闭合>的CanFam3.1参考组件23000个间隙,提高了通过基因注释识别> 1200新的蛋白质编码的转录物。组装和注释可在NCBI的加入GCF_000002285.5下。

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