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Eukaryotic genes of archaebacterial origin are more important than the more numerous eubacterial genes, irrespective of function

机译:无论功能如何,古细菌来源的真核基因比许多真细菌基因更重要

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The traditional tree of life shows eukaryotes as a distinct lineage of living things, but many studies have suggested that the first eukaryotic cells were chimeric, descended from both Eubacteria (through the mitochondrion) and Archaebacteria. Eukaryote nuclei thus contain genes of both eubacterial and archaebacterial origins, and these genes have different functions within eukaryotic cells. Here we report that archaebacterium-derived genes are significantly more likely to be essential to yeast viability, are more highly expressed, and are significantly more highly connected and more central in the yeast protein interaction network. These findings hold irrespective of whether the genes have an informational or operational function, so that many features of eukaryotic genes with prokaryotic homologs can be explained by their origin, rather than their function. Taken together, our results show that genes of archaebacterial origin are in some senses more important to yeast metabolism than genes of eubacterial origin. This importance reflects these genes' origin as the ancestral nuclear component of the eukaryotic genome.
机译:传统的生命树显示真核生物是一种独特的生物谱系,但是许多研究表明,第一个真核细胞是嵌合的,既来自真细菌(通过线粒体)又是古细菌。因此,真核细胞核包含真细菌和古细菌起源的基因,这些基因在真核细胞中具有不同的功能。在这里我们报道,古细菌来源的基因显着更有可能对酵母的生存力至关重要,表达更高,并且在酵母蛋白质相互作用网络中的连接度更高,更重要。这些发现与基因是否具有信息功能或操作功能无关,因此具有原核同源物的真核基因的许多特征可以通过其来源而不是其功能来解释。两者合计,我们的结果表明,在某种意义上,古细菌来源的基因比真细菌来源的基因在酵母代谢中更重要。这种重要性反映了这些基因的起源是真核生物基因组的祖先核成分。

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