Department of Integrative Biology, University of Guelph, Guelph, Ontario, Ontario N1G 2W1, Canada.
J Eukaryot Microbiol. 2010 Nov-Dec;57(6):508-19. doi: 10.1111/j.1550-7408.2010.00505.x. Epub 2010 Sep 28.
Protist diversity is currently a much debated issue in eukaryotic microbiology. Recent evidence suggests that morphological and genetic diversity might be decoupled in some groups of protists, including ciliates, and that these organisms might be much more diverse than their morphology implies. We sought to assess the genetic and morphological diversity of Carchesium polypinum, a widely distributed peritrich ciliate. The mitochondrial marker cytochrome c oxidase subunit I and the nuclear small subunit ribosomal RNA were used to examine genetic diversity. For the morphological assessment, live microscopy and Protargol staining were used. The mitochondrial marker revealed six robust, deeply diverging, and strongly supported clades, while the nuclear gene was congruent for three of these clades. There were no major differences among individuals from the different clades in any of the morphological features examined. Thus, the underlying genetic diversity in C. polypinum is greater than what its morphology suggests, indicating that morphology and genetics are not congruent in this organism. Furthermore, because the clades identified by the mitochondrial marker are so genetically diverse and are confirmed by a conserved nuclear marker in at least three cases, we propose that C. polypinum be designated as a "cryptic species complex." Our results provide another example where species diversity can be underestimated in microbial eukaryotes when using only morphological criteria to estimate species richness.
原生生物多样性是当前真核微生物学领域争论的焦点。最近的证据表明,在包括纤毛虫在内的一些原生生物群体中,形态和遗传多样性可能是分离的,这些生物的多样性可能比它们的形态所暗示的要高得多。我们试图评估广泛分布的缘毛纤毛虫 Carchesium polypinum 的遗传和形态多样性。使用线粒体标记细胞色素 c 氧化酶亚基 I 和核小亚基核糖体 RNA 来检查遗传多样性。对于形态评估,使用活体显微镜和 Protargol 染色。线粒体标记揭示了六个强大、深度分化且得到强烈支持的分支,而核基因与其中三个分支一致。在不同分支的个体之间,在所检查的任何形态特征中都没有明显差异。因此,C. polypinum 的潜在遗传多样性大于其形态所暗示的,表明该生物的形态和遗传并不一致。此外,由于线粒体标记识别的分支在遗传上如此多样化,并且至少在三种情况下通过保守的核标记得到证实,我们建议将 C. polypinum 指定为“隐种复合体”。我们的结果提供了另一个例子,即在使用仅基于形态的标准来估计物种丰富度时,微生物真核生物的物种多样性可能被低估。