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Keywords = infraciliature

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13 pages, 9819 KB  
Article
Redescriptions of Two Tintinnid Ciliates (Ciliophora: Tintinnida) from Freshwater Lake in China Based on Living Morphology and Ciliary Pattern, with a Comparison to Related Species
by Han Fang, Yuxuan Yin, Yajuan Li and Yang Bai
Animals 2026, 16(8), 1197; https://doi.org/10.3390/ani16081197 - 14 Apr 2026
Viewed by 515
Abstract
As a dominant group of microzooplankton, the tintinnid ciliates (Ciliophora: Tintinnida) play a crucial role in aquatic ecosystems by linking the microbial food loop with the classical planktonic food web. However, taxonomic understanding has been greatly hindered by lorica polymorphism, combined with limited [...] Read more.
As a dominant group of microzooplankton, the tintinnid ciliates (Ciliophora: Tintinnida) play a crucial role in aquatic ecosystems by linking the microbial food loop with the classical planktonic food web. However, taxonomic understanding has been greatly hindered by lorica polymorphism, combined with limited data on living cells and infraciliature, which in turn constrains progress in related fields such as ecology and physiology. In the present study, two freshwater tintinnids, namely Tintinnopsis wangi Nie, 1933, and T. tubuformis Chiang, 1956, collected from the Weishan Lake Basin, China, were redescribed based on living observation and protargol staining. Furthermore, the ciliary pattern of T. wangi is first reported, while that of another species corresponds well with its Shanghai population, indicating relatively high intraspecific stability of ciliary patterns in Tintinnida. In addition, based on the comparison of morphological characteristics, T. anhuiensis Nie, 1933, and T. sinensis Chiang, 1956, are considered synonyms of T. wangi. The characteristics of all species were compared with their original descriptions and further studies. Full article
(This article belongs to the Special Issue Recent Research in Animal Taxonomy)
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28 pages, 12566 KB  
Article
Morphology, Morphogenesis and Molecular Phylogeny of Two Freshwater Ciliates (Alveolata, Ciliophora), with Description of Pseudosincirra binaria sp. nov. and Redefinition of Pseudosincirra and Perisincirra
by Lijian Liao, Yue Hu and Xiaozhong Hu
Microorganisms 2024, 12(10), 2013; https://doi.org/10.3390/microorganisms12102013 - 4 Oct 2024
Cited by 2 | Viewed by 1481
Abstract
Ciliated microeukaryotes are insufficiently investigated despite their ubiquity and ecological significance. The morphology and morphogenesis of a new Stichotrichida species, Pseudosincirra binaria sp. nov., and the known Perisincirra paucicirrata Foissner et al., 2002, are here studied using live observations and protargol staining methods. [...] Read more.
Ciliated microeukaryotes are insufficiently investigated despite their ubiquity and ecological significance. The morphology and morphogenesis of a new Stichotrichida species, Pseudosincirra binaria sp. nov., and the known Perisincirra paucicirrata Foissner et al., 2002, are here studied using live observations and protargol staining methods. The new species is characterized by having one buccal, one parabuccal and three frontal cirri, one frontoventral row extending to the posterior half of the cell, three left and two right marginal rows and three dorsal kineties with the left kinety conspicuously bipartite, along with one caudal cirrus at the rear end of each kinety. During morphogenesis, there exist five frontal-ventral cirral anlagen with anlagen IV and V forming a frontoventral row in the proter, and four cirral anlagen with only anlage IV generating a frontoventral row in the opisthe. The anlagen for marginal rows and dorsal kineties develop intrakinetally. The new population of Perisincirra paucicirrata corresponds well with other isolates regarding morphology and cell development. Phylogenetic analyses based on small subunit ribosomal gene sequence data revealed that both Perisincirra and Pseudosincirra are deeply clustered in the clade consisting of species from the genera Deviata and Heterodeviata, supporting the placement of both genera into the family Deviatidae Foissner, 2016. Full article
(This article belongs to the Section Molecular Microbiology and Immunology)
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24 pages, 20405 KB  
Article
Rediscovery of Remarkably Rare Anaerobic Tentaculiferous Ciliate Genera Legendrea and Dactylochlamys (Ciliophora: Litostomatea)
by Ondřej Pomahač, Daniel Méndez-Sánchez, Kateřina Poláková, Michael Müller, Michel-Marie Solito, William A. Bourland and Ivan Čepička
Biology 2023, 12(5), 707; https://doi.org/10.3390/biology12050707 - 12 May 2023
Cited by 7 | Viewed by 4732
Abstract
Free-living anaerobic ciliates are of considerable interest from an ecological and an evolutionary standpoint. Extraordinary tentacle-bearing predatory lineages have evolved independently several times within the phylum Ciliophora, including two rarely encountered anaerobic litostomatean genera, Legendrea and Dactylochlamys. In this study, we significantly [...] Read more.
Free-living anaerobic ciliates are of considerable interest from an ecological and an evolutionary standpoint. Extraordinary tentacle-bearing predatory lineages have evolved independently several times within the phylum Ciliophora, including two rarely encountered anaerobic litostomatean genera, Legendrea and Dactylochlamys. In this study, we significantly extend the morphological and phylogenetic characterization of these two poorly known groups of predatory ciliates. We provide the first phylogenetic analysis of the monotypic genus Dactylochlamys and the three valid species of Legendrea based on the 18S rRNA gene and ITS-28S rRNA gene sequences. Prior to this study, neither group had been studied using silver impregnation methods. We provide the first protargol-stained material and also a unique video material including documentation, for the first time, of the hunting and feeding behavior of a Legendrea species. We briefly discuss the identity of methanogenic archaeal and bacterial endosymbionts of both genera based on 16S rRNA gene sequences, and the importance of citizen science for ciliatology from a historical and contemporary perspective. Full article
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18 pages, 6654 KB  
Article
A Case Study of the Morphological and Molecular Variation within a Ciliate Genus: Taxonomic Descriptions of Three Dysteria Species (Ciliophora, Cyrtophoria), with the Establishment of a New Species
by Xuetong Zhao, Hui Zhang, Qianqian Zhang, Zhishuai Qu, Alan Warren, Di Wu and Xiangrui Chen
Int. J. Mol. Sci. 2022, 23(3), 1764; https://doi.org/10.3390/ijms23031764 - 3 Feb 2022
Cited by 10 | Viewed by 3441
Abstract
Three Dysteria species, D. crassipes Claparède & Lachmann, 1859; D. brasiliensis Faria et al., 1922; and D. paracrassipes n. sp., were collected from subtropical coastal waters of the East China Sea, near Ningbo, China. The three species were studied based on their living [...] Read more.
Three Dysteria species, D. crassipes Claparède & Lachmann, 1859; D. brasiliensis Faria et al., 1922; and D. paracrassipes n. sp., were collected from subtropical coastal waters of the East China Sea, near Ningbo, China. The three species were studied based on their living morphology, infraciliature, and molecular data. The new species D. paracrassipes n. sp. is very similar to D. crassipes in most morphological features except the preoral kinety, which is double-rowed in the new species (vs. single-rowed in D. crassipes). The difference in the small ribosomal subunit sequences (SSU rDNA) between these two species is 56 bases, supporting the establishment of the new species. The Ningbo population of D. crassipes is highly similar in morphology to other known populations. Nevertheless, the SSU rDNA sequences of these populations are very different, indicating high genetic diversity and potentially cryptic species. Dysteria brasiliensis is cosmopolitan with many described populations worldwide and four deposited SSU rDNA sequences. The present work supplies morphological and molecular information from five subtropical populations of D. brasiliensis that bear identical molecular sequences but show significant morphological differences. The findings of this study provide an opportunity to improve understanding of the morphological and genetic diversity of ciliates. Full article
(This article belongs to the Special Issue Single-Cell and Single-Molecule Analysis of Microorganism)
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