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Gene Loss Protein Sequence Divergence Gene Dispensability Expression Level and Interactivity Are Correlated in Eukaryotic Evolution

机译:基因损失蛋白质序列差异基因可分配性表达水平和交互性与真核生物进化相关。

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摘要

Lineage-specific gene loss, to a large extent, accounts for the differences in gene repertoires between genomes, particularly among eukaryotes. We derived a parsimonious scenario ofgene losses for eukaryotic orthologous groups (KOGs) from seven complete eukaryotic genomes. The scenario involves substantial gene loss in fungi, nematodes, and insects. Based on this evolutionary scenario and estimates of the divergence times between major eukaryotic phyla, we introduce a numerical measure, the propensity for gene loss (PGL). We explore the connection among the propensity of a gene to be lost in evolution (PGL value), protein sequence divergence, the effect of gene knockout on fitness, the number of protein-protein interactions, and expression level for the genes in KOGs. Significant correlations between PGL and each of these variables were detected. Genes that have a lower propensity to be lost in eukaryotic evolution accumulate fewer substitutions in their protein sequences and tend to be essential for the organism viability, tend to be highly expressed, and have many interaction partners. The dependence between PGL and gene dispensability and interactivity is much stronger than that for sequence evolution rate. Thus, propensity of a gene to be lost during evolution seems to be a direct reflection of its biological importance.
机译:特定于谱系的基因丧失在很大程度上解释了基因组之间,特别是真核生物之间基因库的差异。我们从七个完整的真核基因组中得出了真核直系同源基因(KOGs)基因损失的简约场景。该场景涉及真菌,线虫和昆虫的大量基因损失。基于这种进化情况和对主要真核生物门之间发散时间的估计,我们引入了一种数值度量,即基因丢失的倾向性(PGL)。我们探讨了进化中丢失基因的倾向(PGL值),蛋白质序列差异,基因敲除对适应性的影响,蛋白质与蛋白质相互作用的数量以及这些基因在KOG中的表达水平之间的联系。检测到PGL与这些变量中的每一个之间的显着相关性。在真核生物进化中丢失的可能性较低的基因在其蛋白质序列中积累的取代较少,并且对于生物体的生存力而言必不可少,其表达量较高,并且具有许多相互作用伙伴。 PGL与基因可分配性和相互作用之间的依赖性比对序列进化速率的依赖性强得多。因此,基因在进化过程中丢失的倾向似乎直接反映了其生物学重要性。

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