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通过 16S rRNA 基因扩增子高通量测序评估流水细菌群落的季节性动态。

Seasonal dynamics of lotic bacterial communities assessed by 16S rRNA gene amplicon deep sequencing.

机构信息

Division of Environment and Natural Resources, Norwegian Institute of Bioeconomy Research - NIBIO, Oluf Thesens vei 43, 1433, Ås, Norway.

Division of Biotechnology and Plant Health, Norwegian Institute of Bioeconomy Research - NIBIO, Høgskoleveien 7, 1433, Ås, Norway.

出版信息

Sci Rep. 2020 Oct 2;10(1):16399. doi: 10.1038/s41598-020-73293-9.

Abstract

Aquatic microbial diversity, composition, and dynamics play vital roles in sustaining water ecosystem functionality. Yet, there is still limited knowledge on bacterial seasonal dynamics in lotic environments. This study explores a temporal pattern of bacterial community structures in lotic freshwater over a 2-year period. The aquatic bacterial communities were assessed using Illumina MiSeq sequencing of 16S rRNA genes. Overall, the communities were dominated by α-, β-, and γ-Proteobacteria, Bacteroidetes, Flavobacteriia, and Sphingobacteriia. The bacterial compositions varied substantially in response to seasonal changes (cold vs. warm), but they were rather stable within the same season. Furthermore, higher diversity was observed in cold seasons compared to warm periods. The combined seasonal-environmental impact of different physico-chemical parameters was assessed statistically, and temperature, suspended solids, and nitrogen were determined to be the primary abiotic factors shaping the temporal bacterial assemblages. This study enriches particular knowledge on the seasonal succession of the lotic freshwater bacteria.

摘要

水生微生物的多样性、组成和动态在维持水生态系统功能方面起着至关重要的作用。然而,对于流水环境中细菌的季节性动态,我们的了解仍然有限。本研究在两年的时间内,探究了流水型淡水环境中细菌群落结构的时间模式。通过对 16S rRNA 基因进行 Illumina MiSeq 测序,对水生细菌群落进行了评估。总体而言,α-、β-和γ-变形菌、拟杆菌门、黄杆菌门和鞘脂杆菌门是主要的细菌类群。细菌组成因季节变化(寒冷与温暖)而发生显著变化,但在同一季节内较为稳定。此外,在寒冷季节观察到的多样性高于温暖时期。不同理化参数的季节-环境综合影响进行了统计学评估,结果表明,温度、悬浮物和氮是塑造时间细菌组合的主要非生物因素。本研究丰富了有关流水型淡水细菌季节性演替的特定知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e589/7532223/ebfc47f4ab60/41598_2020_73293_Fig1_HTML.jpg

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