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A Systematic Approach to Quantifying Evolutionary Functional Trends Across the Universal Tree of Life

机译:量化跨越生命树的进化功能趋势的系统方法

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The accumulation of genomic and proteomic data of many organisms presents an opportunity to analyze entire phylogenetic trees in a systematic, quantified manner. The universal tree of life, constructed by genomic data, provides an evolutionary context for proteomic data of individual organisms. Using proteomic information mapped to biological functions, we survey the tree of life for evolutionary trends, where trends are low p-value linear regressions of relative protein diversity against an evolutionary timeline. These trends provide quantified perspectives across evolution that would be otherwise difficult to discern from the large amount of available bioinformatic data. We analyzed 22,762 functions across 167 proteomes for approximately 3.8 million information content calculations. Of particular interest is the rise of protein-protein interactions along the path of mammalian evolution. Of general interest are the numerous uncovered trends that open the door to future queries of focused scope.
机译:许多生物的基因组和蛋白质组学数据的积累提供了以系统,量化的方式分析整个系统发育树的机会。由基因组数据构建的通用生命树为个体生物体的蛋白质组学数据提供了一种进化背景。使用映射到生物功能的蛋白质组学信息,我们调查了生命之树以获得进化趋势,趋势是对进化时间表的相对蛋白质多样性的低p值线性回归。这些趋势提供了跨越进化的量化观点,从大量可用的生物信息数据中易于辨别。我们分析了167蛋蛋白质群体的22,762个功能,以获得约380万的信息内容计算。特别感兴趣的是沿着哺乳动物进化路径的蛋白质 - 蛋白质相互作用的兴起。一般兴趣是众多未来探讨的众多未来审核的众多未来的重点范围。

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