{"title":"Variations in Lorica Morphology and Element Composition in the Euglenoid Trachelomonas hispida var. coronata Under the Influence of Fe and Mn Supply","authors":"Małgorzata Poniewozik, Mateusz Kudlak, Emil Zięba","doi":"10.1155/cmi/6716112","DOIUrl":null,"url":null,"abstract":"<p><i>Trachelomonas hispida</i> var. <i>coronata</i> is one of the most widely reported varieties of <i>T</i>. <i>hispida</i> from water bodies worldwide. The specimens of this variety, apart from their species-specific features, such as an ellipsoidal lorica covered with strong, sharp spines, have a crown consisting of long spines surrounding the apical pore opening. The process of lorica formation is poorly understood, and in the few studies dealing with this topic, results indicate that these taxa and the entire species can produce lorica completely devoid of spines, a diacritic feature of the species. In our study, we observed in detail the formation process of the lorica in this taxon under different chemical conditions in relation to the concentration of the basic elements, Fe and Mn, which are saturated in trachelomonad lorica. The results showed that in the Fe-enriched medium, monads formed delicate, porous, spiny envelopes, whereas in the Mn-enriched medium, the loricae were more solid and less porous and had weaker developed spines; rather, they were in the form of short papillae. Differences were also observed in the structure surrounding the apical pore, which was developed differently in the two sets of media modifications (Fe- or Mn-supplemented media). We also observed different elemental compositions and colouration of loricae of cells growing in different media. This revealed that the features considered during the process of species identification are very unstable making the entire exercise highly complicated. Our research also shows that a broad discussion of the problem should be undertaken, and modern methods must be developed to unravel the complexities not only within the species but also within the entire <i>Trachelomonas</i>.</p>","PeriodicalId":9844,"journal":{"name":"Cellular Microbiology","volume":"2025 1","pages":""},"PeriodicalIF":2.6000,"publicationDate":"2025-04-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1155/cmi/6716112","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Cellular Microbiology","FirstCategoryId":"99","ListUrlMain":"https://onlinelibrary.wiley.com/doi/10.1155/cmi/6716112","RegionNum":2,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"CELL BIOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Trachelomonas hispida var. coronata is one of the most widely reported varieties of T. hispida from water bodies worldwide. The specimens of this variety, apart from their species-specific features, such as an ellipsoidal lorica covered with strong, sharp spines, have a crown consisting of long spines surrounding the apical pore opening. The process of lorica formation is poorly understood, and in the few studies dealing with this topic, results indicate that these taxa and the entire species can produce lorica completely devoid of spines, a diacritic feature of the species. In our study, we observed in detail the formation process of the lorica in this taxon under different chemical conditions in relation to the concentration of the basic elements, Fe and Mn, which are saturated in trachelomonad lorica. The results showed that in the Fe-enriched medium, monads formed delicate, porous, spiny envelopes, whereas in the Mn-enriched medium, the loricae were more solid and less porous and had weaker developed spines; rather, they were in the form of short papillae. Differences were also observed in the structure surrounding the apical pore, which was developed differently in the two sets of media modifications (Fe- or Mn-supplemented media). We also observed different elemental compositions and colouration of loricae of cells growing in different media. This revealed that the features considered during the process of species identification are very unstable making the entire exercise highly complicated. Our research also shows that a broad discussion of the problem should be undertaken, and modern methods must be developed to unravel the complexities not only within the species but also within the entire Trachelomonas.
冠突伪尾柱虫变种(Trachelomonas hispida var. coronata)是世界各地水体中报告最多的冠突伪尾柱虫变种之一。该变种的标本除了具有物种特有的特征(如椭圆形的小孔上覆盖着坚固锋利的棘刺)外,还具有一个由长长的棘刺组成的冠,环绕着顶端的小孔开口。人们对罗丽卡的形成过程知之甚少,在为数不多的涉及这一主题的研究中,结果表明这些类群和整个物种都能产生完全无刺的罗丽卡,这是该物种的一个显著特点。在我们的研究中,我们详细观察了该类群在不同化学条件下罗丽卡的形成过程,这些化学条件与基本元素铁和锰的浓度有关,而铁和锰在罗丽卡中处于饱和状态。结果表明,在富含铁元素的介质中,单体形成细腻、多孔、多刺的包膜,而在富含锰元素的介质中,单体更坚固,多孔性更差,刺的发育也更弱;相反,单体呈短乳头状。我们还观察到顶端孔周围结构的差异,这在两组培养基改良(铁或锰补充培养基)中发育不同。我们还观察到,在不同培养基中生长的细胞,其叶片的元素组成和颜色也不同。这表明,物种鉴定过程中考虑的特征非常不稳定,使整个工作变得非常复杂。我们的研究还表明,应该对这一问题进行广泛的讨论,必须开发现代化的方法来揭示复杂性,不仅是物种内部的复杂性,而且是整个梭菌内部的复杂性。
期刊介绍:
Cellular Microbiology aims to publish outstanding contributions to the understanding of interactions between microbes, prokaryotes and eukaryotes, and their host in the context of pathogenic or mutualistic relationships, including co-infections and microbiota. We welcome studies on single cells, animals and plants, and encourage the use of model hosts and organoid cultures. Submission on cell and molecular biological aspects of microbes, such as their intracellular organization or the establishment and maintenance of their architecture in relation to virulence and pathogenicity are also encouraged. Contributions must provide mechanistic insights supported by quantitative data obtained through imaging, cellular, biochemical, structural or genetic approaches.