Zimmer Andreas, Lang Daniel, Richardt Sandra, Frank Wolfgang, Reski Ralf, Rensing Stefan A
Plant Biotechnology, Faculty of Biology, University of Freiburg, Schaenzlestr. 1, 79104, Freiburg, Germany.
Mol Genet Genomics. 2007 Oct;278(4):393-402. doi: 10.1007/s00438-007-0257-6. Epub 2007 Jun 26.
Orthologs generally are under selective pressure against loss of function, while paralogs usually accumulate mutations and finally die or deviate in terms of function or regulation. Most ortholog detection methods contaminate the resulting datasets with a substantial amount of paralogs. Therefore we aimed to implement a straightforward method that allows the detection of ortholog clusters with a reduced amount of paralogs from completely sequenced genomes. The described cross-species expansion of the reciprocal best BLAST hit method is a time-effective method for ortholog detection, which results in 68% truly orthologous clusters and the procedure specifically enriches single-copy orthologs. The detection of true orthologs can provide a phylogenetic toolkit to better understand evolutionary processes. In a study across six photosynthetic eukaryotes, nuclear genes of putative mitochondrial origin were shown to be over-represented among single copy orthologs. These orthologs are involved in fundamental biological processes like amino acid metabolism or translation. Molecular clock analyses based on this dataset yielded divergence time estimates for the red/green algae (1,142 MYA), green algae/land plant (725 MYA), mosses/seed plant (496 MYA), gymno-/angiosperm (385 MYA) and monocotyledons/core eudicotyledons (301 MYA) divergence times.
直系同源基因通常受到功能丧失的选择压力,而旁系同源基因通常会积累突变,最终在功能或调控方面死亡或发生偏离。大多数直系同源基因检测方法会使所得数据集被大量旁系同源基因污染。因此,我们旨在实现一种直接的方法,能够从完全测序的基因组中检测出旁系同源基因数量减少的直系同源基因簇。所描述的相互最佳BLAST比对方法的跨物种扩展是一种用于直系同源基因检测的省时方法,它能产生68%真正的直系同源基因簇,并且该过程特别富集单拷贝直系同源基因。真正直系同源基因的检测可以提供一个系统发育工具包,以更好地理解进化过程。在一项对六种光合真核生物的研究中,推测为线粒体起源的核基因在单拷贝直系同源基因中被证明过度富集。这些直系同源基因参与氨基酸代谢或翻译等基本生物学过程。基于该数据集的分子钟分析得出了红藻/绿藻(11.42亿年前)、绿藻/陆地植物(7.25亿年前)、苔藓/种子植物(4.96亿年前)、裸子植物/被子植物(3.85亿年前)以及单子叶植物/核心双子叶植物(3.01亿年前)分歧时间的估计值。