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Abundant and diverse Tetrahymena species living in the bladder traps of aquatic carnivorous Utricularia plants

机译:生活在水生食肉尿布植物植物膀胱陷阱中的丰富和多样化的四氢塞物种

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Ciliates are unicellular eukaryotes known for their cellular complexity and wide range of natural habitats. How they adapt to their niches and what roles they play in ecology remain largely unknown. The genus Tetrahymena is among the best-studied groups of ciliates and one particular species, Tetrahymena thermophila, is a well-known laboratory model organism in cell and molecular biology, making it an excellent candidate for study in protist ecology. Here, based on cytochrome c oxidase subunit I (COX1) gene barcoding, we identify a total of 19 different putative Tetrahymena species and two closely related Glaucoma lineages isolated from distinct natural habitats, of which 13 are new species. These latter include 11 Tetrahymena species found in the bladder traps of Utricularia plants, the most species-rich and widely distributed aquatic carnivorous plant, thus revealing a previously unknown but significant symbiosis of Tetrahymena species living among the microbial community of Utricularia bladder traps. Additional species were collected using an artificial trap method we have developed. We show that diverse Tetrahymena species may live even within the same habitat and that their populations are highly dynamic, suggesting that the diversity and biomass of species worldwide is far greater than currently appreciated.
机译:纤毛人是单细胞真核生物,以其细胞复杂性和广泛的天然栖息地而闻名。他们如何适应他们的利基以及他们在生态中发挥的角色仍然很大程度上是未知的。 Tetrahymena属的属于最佳的纤毛组和一种特定物种,四酵母热道,是细胞和分子生物学中有知名的实验室模型生物体,使其成为普遍生态学研究的优秀候选者。这里,基于细胞色素C氧化酶亚基I(COX1)基因分子标准,我们鉴定了19种不同推定的四重组物种和两种与不同自然栖息地分离的两种密切相关的青光眼谱系,其中13个是新物种。这些后者包括在Utricularia植物的膀胱疏水阀中发现的11种Tetrahymena物种,最丰富的富含种类和广泛分布的水生植物植物,因此揭示了在Utricularia膀胱陷阱的微生物群体中生活中的四个肌肉等物种的先前未知但重要的共生。使用我们开发的人工陷阱方法收集额外的物种。我们表明,多样化的Tetrahymena物种也可能生活在同一栖息地,并且他们的人群具有高度动态,表明全世界物种的多样性和生物量远远大于目前的升值。

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