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综合方法为广泛分布的纤毛虫属 Coleps(纤毛门,前口目)的系统学和生态学提供了新的见解。

An integrative approach sheds new light onto the systematics and ecology of the widespread ciliate genus Coleps (Ciliophora, Prostomatea).

机构信息

Research Department for Limnology, Mondsee, University of Innsbruck, Mondsee, Austria.

Experimental Phycology and Culture Collection of Algae, University of Göttingen, Göttingen, Germany.

出版信息

Sci Rep. 2021 Mar 15;11(1):5916. doi: 10.1038/s41598-021-84265-y.

Abstract

Species of the genus Coleps are one of the most common planktonic ciliates in lake ecosystems. The study aimed to identify the phenotypic plasticity and genetic variability of different Coleps isolates from various water bodies and from culture collections. We used an integrative approach to study the strains by (i) cultivation in a suitable culture medium, (ii) screening of the morphological variability including the presence/absence of algal endosymbionts of living cells by light microscopy, (iii) sequencing of the SSU and ITS rDNA including secondary structures, (iv) assessment of their seasonal and spatial occurrence in two lakes over a one-year cycle both from morphospecies counts and high-throughput sequencing (HTS), and, (v) proof of the co-occurrence of Coleps and their endosymbiotic algae from HTS-based network analyses in the two lakes. The Coleps strains showed a high phenotypic plasticity and low genetic variability. The algal endosymbiont in all studied strains was Micractinium conductrix and the mutualistic relationship turned out as facultative. Coleps is common in both lakes over the whole year in different depths and HTS has revealed that only one genotype respectively one species, C. viridis, was present in both lakes despite the different lifestyles (mixotrophic with green algal endosymbionts or heterotrophic without algae). Our results suggest a future revision of the species concept of the genus Coleps.

摘要

Coleps 属的物种是湖泊生态系统中最常见的浮游纤毛虫之一。本研究旨在鉴定来自不同水体和培养物的不同 Coleps 分离株的表型可塑性和遗传变异性。我们通过(i)在合适的培养基中培养,(ii)通过光学显微镜筛选包括活细胞的藻类内共生体的存在/不存在的形态变异性,(iii)SSU 和 ITS rDNA 的测序,包括二级结构,(iv)在一年的周期内对两个湖泊中的季节性和空间发生进行评估,这两种方法都是通过形态种计数和高通量测序(HTS)进行的,以及(v)从两个湖泊的基于 HTS 的网络分析中证明 Coleps 与其内共生藻类的共存,来综合研究菌株。Coleps 菌株表现出高度的表型可塑性和低遗传变异性。在所有研究的菌株中,藻类内共生体都是 Micractinium conductrix,并且这种共生关系是兼性的。Coleps 在两个湖泊中全年都存在于不同的深度,HTS 揭示了尽管生活方式不同(与绿藻内共生体混合营养或没有藻类的异养),但两个湖泊中都只存在一个基因型,即 C. viridis。我们的结果表明 Coleps 属的物种概念需要进一步修订。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1024/7960993/feb436ee7c0f/41598_2021_84265_Fig1_HTML.jpg

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