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Phylogenetic Analysis of Evolutionary Relationships of the Planctomycete Division of the Domain Bacteria Based on Amino Acid Sequences of Elongation Factor Tu

机译:基于延伸因子Tu氨基酸序列的结构域细菌菌丝体进化关系的系统进化分析

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摘要

Sequences from the tuf gene coding for the elongation factor EF-Tu were amplified and sequenced from the genomic DNA of Pirellula marina and Isosphaera pallida, two species of bacteria within the order Planctomycetales. A near-complete (1140-bp) sequence was obtained from Pi. marina and a partial (759-bp) sequence was obtained for I. pallida. Alignment of the deduced Pi. marina EF-Tu amino acid sequence against reference sequences demonstrated the presence of a unique 11-amino acid sequence motif not present in any other division of the domain Bacteria. Pi. marina shared the highest percentage amino acid sequence identity with I. pallida but showed only a low percentage identity with other members of the domain Bacteria. This is consistent with the concept of the planctomycetes as a unique division of the Bacteria. Neither primary sequence comparison of EF-Tu nor phylogenetic analysis supports any close relationship between planctomycetes and the chlamydiae, which has previously been postulated on the basis of 16S rRNA. Phylogenetic analysis of aligned EF-Tu amino acid sequences performed using distance, maximum-parsimony, and maximum-likelihood approaches yielded contradictory results with respect to the position of planctomycetes relative to other bacteria. It is hypothesized that long-branch attraction effects due to unequal evolutionary rates and mutational saturation effects may account for some of the contradictions.
机译:扩增了来自编码伸长因子EF-Tu的tuf基因的序列,并从轮枝菌纲的两种细菌中的Pirellula marina和Issphaera pallida的基因组DNA进行了扩增和测序。从Pi获得近乎完整的(1140-bp)序列。滨海假单胞菌获得了部分序列(759 bp)。推导的Pi的对齐方式。相对于参考序列的滨海EF-Tu氨基酸序列证明存在独特的11-氨基酸序列基序,该基序不存在于域细菌的任何其他划分中。皮。滨海区与P. pallida具有最高百分比的氨基酸序列同一性,但与细菌域的其他成员仅显示低百分比的同一性。这与作为细菌的独特分支的扁平菌的概念是一致的。 EF-Tu的主要序列比较或系统发育分析均未支持扁平菌与衣原体之间的任何紧密关系,而先前已根据16S rRNA进行了推测。使用距离,最大简约和最大似然方法进行比对的EF-Tu氨基酸序列的系统发生分析,得出关于扁平菌相对于其他细菌的位置的矛盾结果。假设由于不相等的进化速率和突变饱和效应而产生的长分支吸引效应可能是一些矛盾的原因。

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