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论分子分类学:名称中有什么?

On molecular taxonomy: what is in a name?

作者信息

Uilenberg Gerrit, Thiaucourt François, Jongejan Frans

机构信息

CIRAD-EMVT Campus International de Baillarguet, 34398 Montpellier, France.

出版信息

Exp Appl Acarol. 2004;32(4):301-12. doi: 10.1023/b:appa.0000023235.23090.a7.

Abstract

Gene sequences of small portions of the genome are often used for premature detailed taxonomic changes, neglecting polyphasic taxonomy, which should also consider phenotypical characteristics. Three examples are given: (i) Recently, members of the genera Eperythrozoon and Haemobartonella have been moved, correctly so, from the Rickettsiales to the Mycoplasmatales, but were assigned to the genus Mycoplasma, mostly on the basis of 16S rRNA sequence analysis. Not only is the 16S rRNA sequence similarity between 'classical' Mycoplasma and these species of Eperythrozoon and Haemobartonella less than that between some other well-recognised bacterial genera, but their biological differences amply justify their classification in different genera of the Mycoplasmatales. Furthermore, the move creates considerable confusion, as it necessitates new names for some species, with more confusion likely to come when the 16S rRNA sequences of the type species of Eperythrozoon, a name which has priority over Mycoplasma, will be analysed. (ii) In the Rickettsiales, members of the genera Anaplasma, Ehrlichia, Cowdria, Neorickettsia and Wolhbachia are so closely related phylogenetically on the basis of 16S rRNA sequences, and for some also of groESL operon sequences, that they have recently been fused, correctly so, into one family, the Anaplasmataceae, while the tribes Ehrlichieae and Wolbachieae have been abolished. Sequence diversity within the 'classical' genus Ehrlichia has led to classifying E. phagocytophila (including E. equi and the agent of human granulocytic ehrlichiosis), E. platys and E. bovis in the genus Anaplasma, while others have been retained in Ehrlichia, which also includes Cowdria ruminantium. E. sennetsu and E. risticii have been transferred to the genus Neorickettsia. 16S rRNA and GroEL sequences of 'classical' Anaplasma and some members of 'classical' Ehrlichia do show a close relationship, but differences in citrate synthase gene sequences, the GC content of this gene, and sequences of the gene encoding the beta-subunit of RNA polymerase, not to speak of the phenotypical differences, do not justify the fusion into one genus. Because of the phylogenetical diversity in Ehrlichia it is recommended that a new genus name be created for the E. phagocytophila genogroup (and E. platys and E. bovis). (iii) One of the conclusions of studies on the phylogeny of ticks of the subfamilies Rhipicephalinae and Hyalomminae, based on nucleotide sequences from 12S rRNA, cytochrome c oxidase I, the internal transcribed spacer 2, 18S rRNA, as well as morphological characters, is that Boophilus should be considered as a subgenus of Rhipicephalus. While Boophilus and Rhipicephalus are undoubtedly close, the obviously important morphological and biological differences between the genera Rhipicephalus and Boophilus are thus overruled by similarities in the sequences of a number of genes and this leads to considerable confusion. Polyphasic taxonomy amply justifies maintaining Boophilus as a separate genus, phylogenetically near to Rhipicephalus. This note is a plea for a cautious and balanced approach to taxonomy, taking into account molecular genotypical information, as far as is possible from different genes, as well as phenotypical characteristics.

摘要

基因组小部分的基因序列常被用于过早进行详细的分类学改变,而忽视了多相分类法,多相分类法还应考虑表型特征。给出三个例子:(i)最近,附红细胞体属和血巴尔通体属的成员已被正确地从立克次氏体目移至支原体目,但大多基于16S rRNA序列分析被归入支原体属。“经典”支原体与这些附红细胞体属和血巴尔通体属物种之间的16S rRNA序列相似性不仅低于其他一些公认的细菌属之间的相似性,而且它们的生物学差异充分证明将它们分类到支原体目的不同属是合理的。此外,这一变动造成了相当大的混乱,因为这需要为一些物种赋予新名称,而当分析具有比支原体优先权的附红细胞体属模式种的16S rRNA序列时,可能会产生更多混乱。(ii)在立克次氏体目中,基于16S rRNA序列,以及一些物种的groESL操纵子序列,无形体属、埃立克体属、考德里氏体属、新立克次氏体属和沃尔巴克氏体属的成员在系统发育上关系密切,因此它们最近已被正确地合并为一个科,即无形体科,同时埃立克体族和沃尔巴克体族已被废除。“经典”埃立克体属内的序列多样性导致嗜吞噬细胞埃立克体(包括马埃立克体和人类粒细胞埃立克体病病原体)、血小板埃立克体和牛埃立克体被归入无形体属,而其他一些物种则保留在埃立克体属,该属还包括反刍动物考德里氏体。赛内茨埃立克体和里氏埃立克体已被转移到新立克次氏体属。“经典”无形体属和“经典”埃立克体属的一些成员的16S rRNA和GroEL序列确实显示出密切关系,但柠檬酸合酶基因序列、该基因的GC含量以及编码RNA聚合酶β亚基的基因序列存在差异,更不用说表型差异了,这些差异并不足以证明将它们合并为一个属是合理的。由于埃立克体属内的系统发育多样性,建议为嗜吞噬细胞埃立克体基因组(以及血小板埃立克体和牛埃立克体)创建一个新的属名。(iii)基于12S rRNA、细胞色素c氧化酶I、内部转录间隔区2、18S rRNA的核苷酸序列以及形态特征,对扇头蜱亚科和璃眼蜱亚科蜱类系统发育的研究得出的结论之一是,牛蜱属应被视为璃眼蜱属的一个亚属。虽然牛蜱属和璃眼蜱属无疑关系密切,但璃眼蜱属和牛蜱属之间明显重要的形态和生物学差异因此被一些基因序列的相似性所推翻,这导致了相当大的混乱。多相分类法充分证明应将牛蜱属作为一个独立的属保留,在系统发育上与璃眼蜱属相近。本说明呼吁在分类学上采取谨慎和平衡的方法,尽可能考虑来自不同基因的分子基因型信息以及表型特征。

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