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首例广泛分布的淡水线虫形态种(Tobrilus gracilis)的隐种多样性和显著种群结构证据。

First evidence of cryptic species diversity and significant population structure in a widespread freshwater nematode morphospecies (Tobrilus gracilis).

机构信息

Department for Animal Ecology, Bielefeld University, Morgenbreede 45, 33615, Bielefeld, Germany.

出版信息

Mol Ecol. 2013 Sep;22(17):4562-75. doi: 10.1111/mec.12414. Epub 2013 Aug 9.

Abstract

Free-living nematodes are ubiquitous and highly abundant in terrestrial and aquatic environments, where they sustain ecosystem functioning by mineralization processes and nutrient cycling. Nevertheless, very little is known about their true diversity and intraspecific population structure. Recent molecular studies on marine nematodes indicated cryptic diversity and strong genetic differentiation of distinct populations, but for freshwater nematode species, analogous studies are lacking. Here, we present the first extensive molecular study exploring cryptic species diversity and genetic population structure of a widespread freshwater nematode morphospecies, Tobrilus gracilis, from nine postglacially formed European lakes. Taxonomic species status of individuals, analysed for fragments of the mitochondrial COI gene and for the large (LSU) and small (SSU) ribosomal subunits, were determined by morphological characteristics. Mitochondrial and nuclear markers strongly supported the existence of three distinct genetic lineages (Tg I-III) within Tobrilus gracilis, suggesting that this morphospecies indeed represents a complex of highly differentiated biological species. High genetic diversity was also observed at the population level. Across the nine lakes, 19 mitochondrial, and seven (LSU) and four (SSU) nuclear haplotypes were determined. A phylogeographical analysis revealed remarkable genetic differentiation even among neighbouring lake populations for one cryptic lineage. Priority and persistent founder effects are possible explanations for the observed population structure in the postglacially colonized lakes, but ask for future studies providing direct estimates of freshwater nematode dispersal rates. Our study suggests therefore that overall diversity of limnetic nematodes has been so far drastically underestimated and challenges the assumed ubiquitous distribution of other, single freshwater nematode morphospecies.

摘要

自由生活的线虫广泛存在于陆地和水生环境中,它们通过矿化过程和营养循环来维持生态系统的功能。然而,人们对它们的真正多样性和种内种群结构知之甚少。最近对海洋线虫的分子研究表明,不同种群存在隐存多样性和强烈的遗传分化,但对于淡水线虫物种,类似的研究还很缺乏。在这里,我们首次进行了广泛的分子研究,探索了广泛分布的淡水线虫形态种 Tobrilus gracilis 在 9 个后冰河时期形成的欧洲湖泊中的隐种多样性和遗传种群结构。通过形态特征分析,对线粒体 COI 基因片段和大亚基(LSU)和小亚基(SSU)核糖体的个体进行了分类物种地位分析。线粒体和核标记强烈支持 Tobrilus gracilis 内存在三个不同的遗传谱系(Tg I-III),这表明该形态种实际上代表了高度分化的生物种的复合体。在种群水平上也观察到了高遗传多样性。在这 9 个湖泊中,共确定了 19 个线粒体、7 个(LSU)和 4 个(SSU)核单倍型。系统发生分析显示,即使在一个隐种中,相邻湖泊种群之间也存在显著的遗传分化。优先和持续的奠基者效应可能是后冰河时期殖民湖泊中观察到的种群结构的解释,但需要未来的研究提供淡水线虫扩散率的直接估计。因此,我们的研究表明,目前为止,对湖泊线虫的总体多样性估计过低,这对其他单一淡水线虫形态种的普遍分布提出了挑战。

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