Gunderson J, Hinkle G, Leipe D, Morrison H G, Stickel S K, Odelson D A, Breznak J A, Nerad T A, Müller M, Sogin M L
Center for Molecular Evolution, Marine Biological Laboratory, Woods Hole, Massachusetts 02543, USA.
J Eukaryot Microbiol. 1995 Jul-Aug;42(4):411-5. doi: 10.1111/j.1550-7408.1995.tb01604.x.
Small subunit (16S-like) ribosomal RNA sequences were obtained from representatives of all four families constituting the order Trichomonadida. Comparative sequence analysis revealed that the Trichomonadida are a monophyletic lineage and a deep branch of the eukaryotic tree. Relative to the early divergent eukaryotic assemblages the branching pattern within the Trichomonadida is very shallow. This pattern suggests the Trichomonadida radiated recently, perhaps in conjunction with their animal hosts. From a morphological perspective the Devescovinidae and Calonymphidae are considered more derived than the Monocercomonadidae and Trichomonadidae. Molecular trees inferred by distance, parsimony and likelihood techniques consistently show the Devescovinidae and Calonymphidae are the earliest diverging lineages within the Trichomonadida, however bootstrap values do not strongly support a particular branching order. In an analysis of all known 16S-like ribosomal RNA sequences, the Trichomonadida share most recent common ancestry with unidentified protists from the hindgut of the termite Reticulitermes flavipes. The position of two putative free-living trichomonads in the tree is indicative of derivation from symbionts rather than direct descent from some free-living ancestral trichomonad.
从小亚基(类16S)核糖体RNA序列中获取了构成毛滴虫目所有四个科的代表序列。比较序列分析表明,毛滴虫目是一个单系谱系,是真核生物树的一个深分支。相对于早期分化的真核生物组合,毛滴虫目内部的分支模式非常浅。这种模式表明毛滴虫目最近才辐射演化,可能与它们的动物宿主有关。从形态学角度来看,德氏滴虫科和美滴虫科被认为比单鞭滴虫科和毛滴虫科更具衍生性。通过距离、简约和似然技术推断的分子树一致显示,德氏滴虫科和美滴虫科是毛滴虫目内最早分化的谱系,然而自展值并不强烈支持特定的分支顺序。在对所有已知的类16S核糖体RNA序列进行分析时,毛滴虫目与来自黄胸散白蚁后肠的未鉴定原生生物有着最近的共同祖先。树中两个假定的自由生活毛滴虫的位置表明它们是从共生体衍生而来,而不是直接从某些自由生活的祖先毛滴虫演化而来。