Faria e Silva P M, Solé-Cava A M, Soares M J, Motta M C, Fiorini J E, de Souza W
Instituto de Microbiologia, UFRJ, Rio de Janeiro, Brazil.
J Protozool. 1991 Sep-Oct;38(5):489-94. doi: 10.1111/j.1550-7408.1991.tb04822.x.
The trypanosomatid previously described as Crithidia roitmani is characterized here at the ultrastructural and biochemical levels. The data indicates that the parasite belongs to the Herpetomonas genus, and we therefore suggest the flagellate to be denominated as Herpetomonas roitmani n. comb. Cladistic analysis of isoenzyme data generated by eight different enzymes showed that the parasite presented a distinct banding pattern and could be grouped with some Herpetomonas spp., but not with Crithidia spp., used as reference strains. Accordingly, when the parasites were grown for longer periods in Roitman's defined medium, expontaneous differentiation from promastigotes to opisthomastigotes (typical of the Herpetomonas genus) occurred. Transmission electron microscopy revealed the presence of bacterium-like endosymbionts in the cytoplasm of all evolutive forms of the parasite. All morphological alterations characteristic of endosymbiont-bearing trypanosomatids could be observed.
先前被描述为罗伊特曼氏克氏锥虫的锥虫在超微结构和生化水平上进行了特征描述。数据表明该寄生虫属于细滴虫属,因此我们建议将这种鞭毛虫命名为罗伊特曼氏细滴虫(新组合)。对由八种不同酶产生的同工酶数据进行的分支分析表明,该寄生虫呈现出独特的条带模式,可以与一些细滴虫属物种归为一组,但不能与用作参考菌株的克氏锥虫属物种归为一组。因此,当寄生虫在罗伊特曼氏限定培养基中培养较长时间时,会自发地从前鞭毛体分化为后鞭毛体(细滴虫属的典型特征)。透射电子显微镜显示,在寄生虫所有进化形式的细胞质中都存在类似细菌的内共生体。可以观察到所有带有内共生体的锥虫的形态学改变特征。