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Evolutionary systems biology: links between gene evolution and function

机译:进化系统生物学:基因进化与功能之间的联系

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The recent accumulation of genome-wide data on various facets of gene expression, function and evolution stimulated the emergence of a new field, evolutionary systems biology. Many significant correlations were detected between variables that characterize the functioning of a gene, such as expression level, knockout effect, connectivity of genetic and protein-protein interaction networks, and variables that describe gene evolution, such as sequence evolution rate and propensity for gene loss. The first attempts on multidimensional analysis of genomic data yielded composite variables that describe the 'status' of a gene in the genomic community. However, it remains uncertain whether different functional variables affect gene evolution synergistically or there is a single, dominant factor. The number of translation events, linked to selection for translational robustness, was proposed as a candidate for such a major determinant of protein evolution. These developments show that, although the methodological basis of evolutionary systems biology is not yet fully solidified, this area of research is already starting to yield fundamental biological insights.
机译:最近在基因表达,功能和进化各个方面的全基因组数据积累,刺激了一个新领域的出现,即进化系统生物学。在表征基因功能的变量之间(例如表达水平,敲除效应,遗传和蛋白质-蛋白质相互作用网络的连通性)与描述基因进化的变量(例如序列进化速率和基因丧失的倾向)之间检测到许多显着的相关性。 。对基因组数据进行多维分析的首次尝试产生了复合变量,这些变量描述了基因组社区中基因的“状态”。然而,仍然不确定不同的功能变量是否会协同影响基因进化,还是只有一个主要因素。与选择翻译稳健性相关的翻译事件数量被认为是蛋白质进化的主要决定因素。这些发展表明,尽管进化系统生物学的方法学基础尚未完全巩固,但这一研究领域已经开始产生基本的生物学见解。

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