Simpson Alastair G B, Radek Renate, Dacks Joel B, O'Kelly Charles J
Canadian Institute for Advanced Research, Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia, Canada.
J Eukaryot Microbiol. 2002 May-Jun;49(3):239-48. doi: 10.1111/j.1550-7408.2002.tb00529.x.
Despite being amongst the more familiar groups of heterotrophic flagellates, the evolutionary affinities of oxymonads remain poorly understood. A re-interpretation of the cytoskeleton of the oxymonad Monocercomonoides hausmanni suggests that this organism has a similar ultrastructural organisation to members of the informal assemblage 'excavate taxa'. The preaxostyle, 'R1' root, and 'R2' root of M. hausmanni are proposed to be homologous to the right, left, and anterior roots respectively of excavate taxa. The 'paracrystalline' portion of the preaxostyle, previously treated as unique to oxymonads, is proposed to be homologous to the I fibre of excavate taxa. Other non-microtubular fibres are identified that have both positional and substructural similarity to the distinctive B and C fibres of excavate taxa. A homologue to the 'singlet root', otherwise distinctive for excavate taxa, is also proposed. The preaxostyle and C fibre homologue in Monocercomonoides are most similar to the homologous structures in Trimastix. suggesting a particularly close relationship. This supports and extends recent molecular phylogenetic findings that Trimastix and oxymonads form a clade. We conclude that oxymonads have an excavate ancestry, and that the 'excavate taxa' sensu stricto form a paraphyletic assemblage.
尽管是较为人熟知的异养鞭毛虫类群之一,但尖毛虫类的进化亲缘关系仍了解甚少。对豪斯曼单尖毛虫(Monocercomonoides hausmanni)细胞骨架的重新解读表明,该生物体具有与非正式类群“挖掘类群”成员相似的超微结构组织。豪斯曼单尖毛虫的前轴柱、“R1”根和“R2”根分别被认为与挖掘类群的右根、左根和前根同源。前轴柱的“平行晶体”部分,以前被视为尖毛虫类所特有,现被认为与挖掘类群的I纤维同源。还鉴定出了其他非微管纤维,它们在位置和亚结构上与挖掘类群独特的B和C纤维相似。还提出了与“单根”同源的结构,否则它是挖掘类群所特有的。单尖毛虫中的前轴柱和C纤维同源物与三鞭毛虫(Trimastix)中的同源结构最为相似,表明它们关系特别密切。这支持并扩展了最近的分子系统发育研究结果,即三鞭毛虫和尖毛虫类形成一个分支。我们得出结论,尖毛虫类有挖掘类群的祖先,并且严格意义上的“挖掘类群”构成一个并系类群。