Institute of Evolution & Marine Biodiversity, Ocean University of China, Qingdao, 266003, China.
College of Fisheries, Ocean University of China, Qingdao, 266003, China.
Sci China Life Sci. 2023 Jul;66(7):1535-1553. doi: 10.1007/s11427-022-2268-2. Epub 2023 Mar 9.
Ciliated protists represent one of the most primitive and diverse lineages of eukaryotes, with nuclear dimorphism, a distinctive sexual process (conjugation), and extensive genome rearrangements. Among divergent ciliate lineages, the peritrich order Sessilida includes members with a colonial lifestyle, which may hint to an independent evolutionary attempt for multicellularity, although they are still single-celled organisms. To date, the evolution and phylogeny of this group are still far from clear, in part due to the paucity of molecular and/or morphological data for many taxa. In this study, we extend taxon sampling of a loricate group of sessilids by obtaining 69 new rDNA (SSU rDNA, ITS1-5.8S rDNA-ITS2, and LSU rDNA) sequences from 20 well-characterized representative species and analyze the phylogenetic relationships within Sessilida. The main findings are: (i) the genera Rhabdostyla and Campanella each represents a unique taxon at family level, supporting the establishment of two new families, i.e., Rhabdostylidae n. fam. and Campanellidae n. fam., respectively, the former being sister to a morphologically heterogeneous clade comprising Astylozoidae and several incertae sedis species and the latter occupying the basal position within the Sessilida clade; (ii) the structure of infundibular polykinety 3 is likely to be a phylogenetically informative character for resolving evolutionary relationships among sessilids; (iii) differences between sparsely and the densely arranged silverline systems could be a suprageneric taxonomic character; (iv) the monophyly of Vaginicolidae is confirmed, which is consistent with its specialized morphology, i.e., the possession of a typical peritrich lorica which might be an apomorphy for this group; (v) within Vaginicolidae, the monotypic Cothurniopsis sensu Stokes, 1893 is a synonym of Cothurnia Ehrenberg, 1831, and a new combination is created, i.e., Cothurnia valvata nov. comb.; (vi) Vaginicola sensu lato comprises at least two distinctly divergent clades, one affiliated with Thuricola and the other with a systematically puzzling clade represented by Vaginicola tincta.
纤毛虫代表了最原始和多样化的真核生物谱系之一,具有核二态性、独特的有性过程(接合)和广泛的基因组重排。在不同的纤毛类群中,旋毛目包括具有群体生活方式的成员,这可能暗示了多细胞生物的独立进化尝试,尽管它们仍然是单细胞生物。迄今为止,该群体的进化和系统发育仍然远未清楚,部分原因是许多分类群的分子和/或形态数据匮乏。在这项研究中,我们通过从 20 个特征明确的代表性物种中获得 69 个新的纤毛类群体(SSU rDNA、ITS1-5.8S rDNA-ITS2 和 LSU rDNA)序列,扩展了纤毛虫群体的分类群采样,并分析了旋毛目内的系统发育关系。主要发现包括:(i)Rhabdostyla 和 Campanella 两个属分别代表科级别的独特分类群,支持分别建立两个新科,即 Rhabdostylidae n. fam. 和 Campanellidae n. fam.,前者与形态上异质的 Astylozoidae 类群和几个未确定位置的物种组成姐妹群,后者在旋毛目类群中占据基部位置;(ii)漏斗状多联体 3 的结构可能是解决纤毛虫进化关系的一个具有系统发育信息的特征;(iii)稀疏银线系统和密集银线系统之间的差异可能是一个超属分类学特征;(iv)阴道科的单系性得到确认,这与它的特化形态一致,即具有典型的旋毛体外套,这可能是该类群的一个特征;(v)在阴道科中,单型的 Cothurniopsis sensu Stokes, 1893 是 Cothurnia Ehrenberg, 1831 的同义词,创建了一个新的组合,即 Cothurnia valvata nov. comb.;(vi)阴道科广义上至少包括两个明显不同的分支,一个与 Thuricola 有关,另一个与一个系统上令人困惑的分支有关,该分支由 Vaginicola tincta 代表。