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环境参数和底物类型驱动亚热带富营养化淡水短期实验定殖过程中的微型真核生物群落结构。

Environmental Parameters and Substrate Type Drive Microeukaryotic Community Structure During Short-Term Experimental Colonization in Subtropical Eutrophic Freshwaters.

作者信息

Zhu Changyu, Bass David, Wang Yutao, Shen Zhuo, Song Weibo, Yi Zhenzhen

机构信息

Institute of Evolution and Marine Biodiversity, College of Fisheries, Ocean University of China, Qingdao, China.

Pilot National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

Front Microbiol. 2020 Sep 24;11:555795. doi: 10.3389/fmicb.2020.555795. eCollection 2020.

Abstract

Microeukaryotes are key components of aquatic ecosystems and play crucial roles in aquatic food webs. However, influencing factors and potential assembly mechanisms for microeukaryotic community on biofilms are rarely studied. Here, those of microeukaryotic biofilms in subtropical eutrophic freshwaters were investigated for the first time based on 2,585 operational taxonomic units (OTUs) from 41 samples, across different environmental conditions and substrate types. Following conclusions were drawn: (1) Environmental parameters were more important than substrate types in structuring microeukaryotic community of biofilms in subtropical eutrophic freshwaters. (2) In the fluctuating river, there was a higher diversity of OTUs and less predictability of community composition than in the stable lake. Sessile species were more likely to be enriched on smooth surfaces of glass slides, while both free-swimming and attached organisms occurred within holes inside PFUs (polyurethane foam units). (3) Both species sorting and neutral process were mechanisms for assembly of microeukaryotic biofilms, but their importance varied depending on different habitats and substrates. (4) The effect of species sorting was slightly higher than the neutral process in river biofilms due to stronger environmental filtering. Species sorting was a stronger force structuring communities on glass slides than PFUs with more niche availability. Our study sheds light on assembly mechanisms for microeukaryotic community on different habitat and substrate types, showing that the resulting communities are determined by both sets of variables, in this case primarily habitat type. The balance of neutral process and species sorting differed between habitats, but the high alpha diversity of microeukaryotes in both led to similar sets of lifecycle traits being selected for in each case.

摘要

微型真核生物是水生生态系统的关键组成部分,在水生食物网中发挥着至关重要的作用。然而,关于生物膜上微型真核生物群落的影响因素和潜在组装机制的研究却很少。在此,基于来自41个样本的2585个操作分类单元(OTU),首次对亚热带富营养化淡水中微型真核生物膜在不同环境条件和底物类型下的情况进行了研究。得出以下结论:(1)在构建亚热带富营养化淡水生物膜的微型真核生物群落方面,环境参数比底物类型更为重要。(2)在波动的河流中,OTU的多样性较高,群落组成的可预测性低于稳定的湖泊。固着物种更有可能在载玻片的光滑表面富集,而自由游动和附着生物则出现在聚氨酯泡沫块(PFU)内部的孔洞中。(3)物种分选和中性过程都是微型真核生物膜组装的机制,但它们的重要性因不同的栖息地和底物而异。(4)由于更强的环境过滤作用,物种分选在河流生物膜中的作用略高于中性过程。在载玻片上,物种分选对群落结构的影响比PFU更强,因为载玻片有更多的生态位。我们的研究揭示了不同栖息地和底物类型上微型真核生物群落的组装机制,表明由此产生的群落由这两组变量决定,在这种情况下主要是栖息地类型。中性过程和物种分选的平衡在不同栖息地之间有所不同,但两者中微型真核生物的高α多样性导致在每种情况下都选择了相似的生命周期特征集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3fd/7541896/21518d1911af/fmicb-11-555795-g001.jpg

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