Borodin Nikita, Melekhin Maksim, Chantangsi Chitchai
Department of Biology and Ecology, Faculty of Sciences, Novi Sad University, 21101, Novi Sad, Serbia.
Laboratory of Cellular and Molecular Protistology, Zoological Institute RAS, Saint Petersburg, Russia, 199034.
Sci Rep. 2025 Apr 8;15(1):11983. doi: 10.1038/s41598-025-94558-1.
Suctoria is a subclass of ciliates (Phyllopharyngea, Suctoria) distinguished by the presence of a specialized feeding apparatus called tentacles and the absence of ciliature during most of their life cycle. This group of ciliates, particularly the order Exogenida, is poorly studied from a molecular phylogenetic perspective, with only a dozen small subunit (SSU) rRNA gene sequences available in public databases. In this study, we examined three species of suctorians from the genus Metacineta, formerly belonging to the order Exogenida. Using scanning electron microscopy and differential interference contrast microscopy, the examined species were redescribed and their SSU rRNA gene sequences were obtained. The morphological study refined the structural features of the calyx in representatives of the genus and a hypothetical scheme of calyx evolution was proposed based on morphological evidence and new molecular data. In addition, the application of an ultrastructural approach allowed clarification of the calyx structure in Metacineta alata, which possesses unique crests, instead of the typical clefts found in the majority of congeners. Our phylogenetic analysis showed that Metacineta is nested within the order Endogenida instead of clustering with the exogenid members. This new finding raises a question about the validity of the current classification system of the subclass Suctoria based on budding patterns and suggests necessity for a comprehensive reevaluation.
吸管虫纲是纤毛虫(叶咽纲,吸管虫纲)的一个亚纲,其特征是具有一种名为触手的特殊摄食器官,并且在其生命周期的大部分时间里没有纤毛。从分子系统发育的角度来看,这一类纤毛虫,特别是外生吸管虫目,研究较少,公共数据库中只有十几个小亚基(SSU)rRNA基因序列。在本研究中,我们研究了原属于外生吸管虫目的Metacineta属的三种吸管虫。通过扫描电子显微镜和微分干涉相差显微镜,对所研究的物种进行了重新描述,并获得了它们的SSU rRNA基因序列。形态学研究细化了该属代表物种的萼部结构特征,并基于形态学证据和新的分子数据提出了萼部进化的假设方案。此外,超微结构方法的应用使具有独特嵴而非大多数同属物种中典型裂缝的翼状Metacineta的萼部结构得以阐明。我们的系统发育分析表明,Metacineta嵌套在内生吸管虫目中,而不是与外生吸管虫目成员聚类。这一新发现引发了关于基于出芽模式的当前吸管虫亚纲分类系统有效性的问题,并表明有必要进行全面的重新评估。