Snoeyenbos-West Oona L O, Cole Jeffrey, Campbell Anna, Coats D Wayne, Katz Laura A
Department of Biological Sciences, Smith College, Northampton, Massachusetts 01063, USA.
J Eukaryot Microbiol. 2004 Jul-Aug;51(4):441-50. doi: 10.1111/j.1550-7408.2004.tb00392.x.
We analyzed small subunit ribosomal DNA (ssu-rDNA) sequences to evaluate both the monophyly of the ciliate class Phyllopharyngea de Puytorac et al. (1974), and relationships among subclasses. Classifications based on morphology and ultrastructure divide the Phyllopharyngea into four subclasses, the Phyllopharyngia, Chonotrichia, Rhynchodia, and Suctoria. Our analyses of ssu-rDNA genealogies derived from sequence data collected from diverse members representing three of the four subclasses of Phyllopharyngea (Suctoria: Ephelota spp., Prodiscophyra collini, Acineta sp.; Phyllopharyngia: Chlamydodon exocellatus, Chlamydodon triquetrus, Dysteria sp.; and Chonotrichia: Isochona sp.) provide strong support for the monophyly of the Phyllopharyngea, and show that the Chonotrichia emerge from within the Phyllopharyngia. Based on this initial sampling, suctorian budding types are monophyletic, and exogenous budding appears to be basal to evaginative and endogenous budding. Further, we report the discovery of a group I intron at position 891 in the Suctoria Acineta sp. and Tokophrya lemnarum, and a second group I intron at position 1506 in T. lemnarum. These introns represent only the second examples of group I introns in a ciliate ribosomal gene, since the discovery of ribozymes in the LSU rRNA gene of Tetrahymena thermophila. Phylogenetic analyses of Group I introns suggest a complex evolutionary history involving either multiple loses or gains of introns within endogenously budding Suctoria.
我们分析了小亚基核糖体DNA(ssu-rDNA)序列,以评估纤毛虫纲叶咽纲(Phyllopharyngea de Puytorac等人,1974年)的单系性以及各亚纲之间的关系。基于形态学和超微结构的分类将叶咽纲分为四个亚纲,即叶咽亚纲(Phyllopharyngia)、吸管亚纲(Chonotrichia)、吻毛亚纲(Rhynchodia)和吸管虫亚纲(Suctoria)。我们对来自叶咽纲四个亚纲中三个亚纲的不同成员(吸管虫亚纲:Ephelota spp.、Prodiscophyra collini、Acineta sp.;叶咽亚纲:Chlamydodon exocellatus、Chlamydodon triquetrus、Dysteria sp.;以及吸管亚纲:Isochona sp.)收集的序列数据所推导的ssu-rDNA系统发育树进行了分析,结果有力地支持了叶咽纲的单系性,并表明吸管亚纲是从叶咽亚纲内部演化而来的。基于这一初步抽样,吸管虫的出芽类型是单系的,且外源性出芽似乎是外翻性出芽和内源性出芽的基部类型。此外,我们报告了在吸管虫Acineta sp.和Lemnarum嗜污虫的第891位发现了一个I组内含子,以及在Lemnarum嗜污虫的第1506位发现了第二个I组内含子。这些内含子是纤毛虫核糖体基因中I组内含子的仅有的第二个例子,自嗜热四膜虫的LSU rRNA基因中发现核酶以来。I组内含子的系统发育分析表明其进化历史复杂,涉及内源性出芽的吸管虫亚纲内部内含子的多次丢失或获得。