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Genome-to-phenome research in rats: progress and perspectives

机译:大鼠的基因组到苯甲瘤研究:进度和观点

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Because of their relatively short lifespan (4 years), rats have become the second most used model organism to study health and diseases in humans who may live for up to 120 years. First-, second- and third-generation sequencing technologies and platforms have produced increasingly greater sequencing depth and accurate reads, leading to significant advancements in the rat genome assembly during the last 20 years. In fact, whole genome sequencing (WGS) of 47 strains have been completed. This has led to the discovery of genome variants in rats, which have been widely used to detect quantitative trait loci underlying complex phenotypes based on gene, haplotype, and sweep association analyses. DNA variants can also reveal strain, chromosome and gene functional evolutions. In parallel, phenome programs have advanced significantly in rats during the last 15 years and more than 10 databases host genome and/or phenome information. In order to discover the bridges between genome and phenome, systems genetics and integrative genomics approaches have been developed. On the other hand, multiple level information transfers from genome to phenome are executed by differential usage of alternative transcriptional start (ATS) and polyadenylation (APA) sites per gene. We used our own experiments to demonstrate how alternative transcriptome analysis can lead to enrichment of phenome-related causal pathways in rats. Development of advanced genome-to-phenome assays will certainly enhance rats as models for human biomedical research.? The author(s).
机译:由于它们相对较短的寿命(& 4年),大鼠已成为第二次使用的模型生物,以研究可能居住在120年的人类的健康和疾病。首先,第二代和第三代测序技术和平台产生了越来越大的测序深度和准确的读数,导致在过去20年中大鼠基因组组装的显着进展。事实上,已经完成了47株的全基因组测序(WGS)。这导致了大鼠基因组变体的发现,这已被广泛用于检测基于基因,单倍型和扫描协会分析的定量性状基因型复杂表型。 DNA变体还可以揭示应变,染色体和基因功能演进。同时,菲尼族的程序在过去15年期间大鼠中提出显着,超过10个数据库宿主基因组和/或缺陷信息。为了发现基因组和缺点之间的桥梁,已经开发了系统遗传学和综合基因组学方法。另一方面,通过每个基因的替代转录开始(ATS)和聚腺苷酸(APA)位点的差异使用来执行从基因组到苯组的多水平信息转移。我们利用我们自己的实验来证明替代转录组分析如何富集大鼠贫困的因果途径。先进的基因组到苯胺测定的发展肯定会增强大鼠作为人类生物医学研究的模型。作者。

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