Microbial genescapes: a prokaryotic view of the yeast genome.

M A Ragan, T Gaasterland
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引用次数: 19

Abstract

We examine the translated open reading frames (ORFs) of the yeast Saccharomyces cerevisiae, focusing on those that have FASTA matches in phyletically defined sets of completely sequenced genomes. On this basis, we identify archaeal yeast, bacterial yeast, universal yeast, and yeast ORFs that do not have a match in any of nine prokaryote genomes. Similarly, we examine the yeast mitochondrial genome and the subset of the yeast nuclear ORFs identified as being involved in mitochondrial biogenesis. For the yeast ORFs that match one or more ORFs in these prokaryote genomes, we examine the phyletic and functional distributions of these matches as a function of match strength. These results provide genome level insights into the origin of the eukaryotic cell and the origin of mitochondria. More generally, they exemplify how the growing database of prokaryote genome sequences can help us understand eukaryote genomes.

微生物基因逃逸:酵母基因组的原核观点。
我们研究了酿酒酵母的翻译开放阅读框(orf),重点关注那些在种系定义的完全测序基因组中具有FASTA匹配的人。在此基础上,我们确定了在9个原核生物基因组中没有匹配的古菌酵母、细菌酵母、通用酵母和酵母orf。同样,我们研究了酵母线粒体基因组和酵母核orf的子集,确定参与线粒体生物发生。对于与这些原核生物基因组中的一个或多个orf匹配的酵母orf,我们研究了这些匹配的种系和功能分布作为匹配强度的函数。这些结果为真核细胞的起源和线粒体的起源提供了基因组水平的见解。更一般地说,它们说明了不断增长的原核生物基因组序列数据库如何帮助我们了解真核生物基因组。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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