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共存的滨海利托线虫复合体(线虫纲)的隐性物种表现出不同的资源利用情况,并且拥有具有高种内变异性的独特微生物群落。

Coexisting cryptic species of the Litoditis marina complex (Nematoda) show differential resource use and have distinct microbiomes with high intraspecific variability.

作者信息

Derycke S, De Meester N, Rigaux A, Creer S, Bik H, Thomas W K, Moens T

机构信息

OD Taxonomy and Phylogeny, Royal Belgian Institute of Natural Sciences, Vautierstraat 29, 1000 Brussels, Belgium.

Department of Biology, Marine Biology Section, Ghent University, Krijgslaan 281 (S8), 9000 Ghent, Belgium.

出版信息

Mol Ecol. 2016 May;25(9):2093-110. doi: 10.1111/mec.13597. Epub 2016 Mar 28.

Abstract

Differences in resource use or in tolerances to abiotic conditions are often invoked as potential mechanisms underlying the sympatric distribution of cryptic species. Additionally, the microbiome can provide physiological adaptations of the host to environmental conditions. We determined the intra- and interspecific variability of the microbiomes of three cryptic nematode species of the Litoditis marina species complex that co-occur, but show differences in abiotic tolerances. Roche 454 pyrosequencing of the microbial 16S rRNA gene revealed distinct bacterial communities characterized by a substantial diversity (85-513 OTUs) and many rare OTUs. The core microbiome of each species contained only very few OTUs (2-6), and four OTUs were identified as potentially generating tolerance to abiotic conditions. A controlled experiment in which nematodes from two cryptic species (Pm1 and Pm3) were fed with either an E. coli suspension or a bacterial mix was performed, and the 16S rRNA gene was sequenced using the MiSeq technology. OTU richness was 10-fold higher compared to the 454 data set and ranged between 1118 and 7864. This experiment confirmed the existence of species-specific microbiomes, a core microbiome with few OTUs, and high interindividual variability. The offered food source affected the bacterial community and illustrated different feeding behaviour between the cryptic species, with Pm3 exhibiting a higher degree of selective feeding than Pm1. Morphologically similar species belonging to the same feeding guild (bacterivores) can thus have substantial differences in their associated microbiomes and feeding strategy, which in turn may have important ramifications for biodiversity-ecosystem functioning relationships.

摘要

资源利用或对非生物条件耐受性的差异常被认为是隐性物种同域分布潜在的机制。此外,微生物组可使宿主在生理上适应环境条件。我们确定了共同出现但在非生物耐受性上存在差异的滨海利托线虫物种复合体中三种隐性线虫物种微生物组的种内和种间变异性。对微生物16S rRNA基因进行罗氏454焦磷酸测序,揭示了具有丰富多样性(85 - 513个操作分类单元)和许多稀有操作分类单元的独特细菌群落。每个物种的核心微生物组仅包含极少的操作分类单元(2 - 6个),并且鉴定出四个操作分类单元可能具有对非生物条件的耐受性。进行了一项对照实验,用大肠杆菌悬浮液或细菌混合物喂养来自两种隐性物种(Pm1和Pm3)的线虫,并使用MiSeq技术对16S rRNA基因进行测序。与454数据集相比,操作分类单元丰富度高出10倍,范围在1118至7864之间。该实验证实了物种特异性微生物组、极少操作分类单元组成的核心微生物组以及高度个体间变异性的存在。所提供的食物来源影响细菌群落,并说明了隐性物种之间不同的摄食行为差异,Pm3比Pm1表现出更高程度的选择性摄食。因此,属于同一摄食类群(食细菌者)的形态相似物种在其相关微生物组和摄食策略上可能存在显著差异,这反过来可能对生物多样性与生态系统功能关系产生重要影响。

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