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Sequencing and comparative genomic analysis of 1227 Felis catus cDNA sequences enriched for developmental, clinical and nutritional phenotypes

机译:丰富了发育,临床和营养表型的1227条猫属cDNA序列的测序和比较基因组分析

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Background The feline genome is valuable to the veterinary and model organism genomics communities because the cat is an obligate carnivore and a model for endangered felids. The initial public release of the Felis catus genome assembly provided a framework for investigating the genomic basis of feline biology. However, the entire set of protein coding genes has not been elucidated. Results We identified and characterized 1227 protein coding feline sequences, of which 913 map to public sequences and 314 are novel. These sequences have been deposited into NCBI's genbank database and complement public genomic resources by providing additional protein coding sequences that fill in some of the gaps in the feline genome assembly. Through functional and comparative genomic analyses, we gained an understanding of the role of these sequences in feline development, nutrition and health. Specifically, we identified 104 orthologs of human genes associated with Mendelian disorders. We detected negative selection within sequences with gene ontology annotations associated with intracellular trafficking, cytoskeleton and muscle functions. We detected relatively less negative selection on protein sequences encoding extracellular networks, apoptotic pathways and mitochondrial gene ontology annotations. Additionally, we characterized feline cDNA sequences that have mouse orthologs associated with clinical, nutritional and developmental phenotypes. Together, this analysis provides an overview of the value of our cDNA sequences and enhances our understanding of how the feline genome is similar to, and different from other mammalian genomes. Conclusions The cDNA sequences reported here expand existing feline genomic resources by providing high-quality sequences annotated with comparative genomic information providing functional, clinical, nutritional and orthologous gene information.
机译:背景技术猫科动物的基因组对兽医和模型生物的基因组学界具有重要意义,因为猫是专性食肉动物和濒危猫科动物的模型。 Felis catus基因组程序的首次公开发布为研究猫科生物学的基因组基础提供了一个框架。但是,尚未阐明整套蛋白质编码基因。结果我们鉴定并鉴定了1227个蛋白编码的猫科动物序列,其中913个映射到公共序列,而314个是新颖的。这些序列已存储在NCBI的基因库数据库中,并通过提供其他蛋白质编码序列来填补猫基因组装配中的某些空白,从而补充了公共基因组资源。通过功能和比较基因组分析,我们了解了这些序列在猫的发育,营养和健康中的作用。具体而言,我们确定了104个与孟德尔疾病相关的人类基因的直系同源基因。我们检测到序列中具有与细胞内运输,细胞骨架和肌肉功能相关的基因本体注释的阴性选择。我们在编码胞外网络,细胞凋亡途径和线粒体基因本体论注释的蛋白质序列上检测到相对较少的阴性选择。此外,我们表征了具有与临床,营养和发育表型相关的小鼠直系同源基因的猫cDNA序列。总之,该分析概述了我们cDNA序列的价值,并加深了我们对猫基因组与其他哺乳动物基因组的相似和不同之处的了解。结论此处报道的cDNA序列通过提供带有比较基因组信息的高质量序列,扩展了现有的猫基因组资源,从而提供了功能,临床,营养和直系同源基因信息。

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