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A dendrogram of archaea based on lipid component parts composition and its relationship to rRNA phylogeny

机译:基于脂质成分组成的古细菌树状图及其与rRNA系统发育的关系

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The results of two objective and quantitative, computer-assisted analyses of the lipid component parts distribution pattern among various archaeal organisms belonging to Euryarchaeota are reported. One was a cluster analysis and the other a selection of unique combinations of lipid component parts found exclusively in a given taxon. The cluster analysis revealed that the distribution of lipid component parts was correlated with phylogeny based on small subunit rRNA sequences, although there was some discrepancy with rRNA phylogeny. A hypothesis that may explain the reason for the correlation and the discrepancy is proposed. In our scenario, we assumed that random and independent mutations on the rRNA and lipid biosynthesis genes may result largely in coincided evolution. The fact that RNA and lipid are semantide and episemantic molecules, respectively, is the fundamental difference between the phylogeny of RNA and lipid. Moreover, different selective pressures on RNA and lipids exert different effects on their evolution. Unique lipid component parts were detected for eight out of nine orders, 14 families, and 22 genera of the Euryarchaeota analyzed. A unique lipid component parts combination pattern characterized the taxon. The results confirm and extend a previously reported conclusion based on a more statistical basis.
机译:报道了两种客观和定量的计算机辅助分析方法,分析了属于Euryarchaeota的各种古细菌中脂质成分的分布方式。一种是聚类分析,另一种是选择仅在给定分类单元中发现的脂质组分的独特组合。聚类分析表明,尽管rRNA系统发育存在差异,但基于小亚基rRNA序列的脂质组成部分的分布与系统发育相关。提出了可以解释相关性和差异原因的假设。在我们的方案中,我们假设rRNA和脂质生物合成基因上的随机和独立突变可能在很大程度上导致同步进化。 RNA和脂质分别是semantide和Episemantic分子,这一事实是RNA和脂质的系统发育之间的根本区别。此外,对RNA和脂质的不同选择压力对其进化产生不同的影响。在所分析的Euryarchaeota的九个科,14个科和22属中,检测到了独特的脂质成分。分类单元具有独特的脂质组分结合模式。结果证实并基于更多的统计基础扩展了先前报告的结论。

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