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AnnoTree: visualization and exploration of a functionally annotated microbial tree of life

机译:Annotree:对功能注释的微生物树的可视化和探索

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Bacterial genomics has revolutionized our understanding of the microbial tree of life; however, mapping and visualizing the distribution of functional traits across bacteria remains a challenge. Here, we introduce AnnoTree-an interactive, functionally annotated bacterial tree of life that integrates taxonomic, phylogenetic and functional annotation data from over 27 000 bacterial and 1500 archaeal genomes. AnnoTree enables visualization of millions of precomputed genome annotations across the bacterial and archaeal phylogenies, thereby allowing users to explore gene distributions as well as patterns of gene gain and loss in prokaryotes. Using AnnoTree, we examined the phylogenomic distributions of 28 311 gene/protein families, and measured their phylogenetic conservation, patchiness, and lineage-specificity within bacteria. Our analyses revealed widespread phylogenetic patchiness among bacterial gene families, reflecting the dynamic evolution of prokaryotic genomes. Genes involved in phage infection/defense, mobile elements, and antibiotic resistance dominated the list of most patchy traits, as well as numerous intriguing metabolic enzymes that appear to have undergone frequent horizontal transfer. We anticipate that AnnoTree will be a valuable resource for exploring prokaryotic gene histories, and will act as a catalyst for biological and evolutionary hypothesis generation. AnnoTree is freely available at http://annotree.uwaterloo.ca
机译:细菌基因组学彻底改变了我们对微生物树的了解;然而,映射和可视化细菌功能性的分布仍然是一个挑战。在这里,我们介绍了Annotree-Anteractive,功能注释的生命之树,将分类学,系统发育和功能注释数据与超过27000个细菌和1500个古代基因组整合。 Annotree能够在细菌和古物学发育中可视化数百万预先染色的基因组注释,从而允许用户探索基因分布以及基因生物的模式和原核生物的损失。使用Annotree,我们检查了28311个基因/蛋白质家族的系统核发生物分布,并测量了细菌内的系统发育守恒,斑块和谱系特异性。我们的分析揭示了细菌基因家族中的广泛的系统发育斑块,反映了原核基因组的动态演化。参与噬菌体感染/防御,移动元件和抗生素抗性的基因占据了大多数斑块性状的列表,以及许多有趣的代谢酶,似乎经过频繁的水平转移。我们预计Annotree将是探索原核基因历史的宝贵资源,并将作为生物和进化假设产生的催化剂。 Annotree在http://annotree.uwaterloo.ca上免费提供

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