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Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column

Worldwide cyanobacterial blooms greatly impair ecosystems in many eutrophic lakes and impact the microbial environment. In particular, large cyanobacterial colonies that are buoyant on the water surface may provide a distinct habitat for bacteria from other small particles that are suspended stably...

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Autores principales: Shi, Limei, Huang, Yaxin, Zhang, Min, Shi, Xiaoli, Cai, Yuanfeng, Gao, Shengling, Tang, Xiangming, Chen, Feizhou, Lu, Yaping, Kong, Fanxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6291827/
https://www.ncbi.nlm.nih.gov/pubmed/29573241
http://dx.doi.org/10.1002/mbo3.608
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author Shi, Limei
Huang, Yaxin
Zhang, Min
Shi, Xiaoli
Cai, Yuanfeng
Gao, Shengling
Tang, Xiangming
Chen, Feizhou
Lu, Yaping
Kong, Fanxiang
author_facet Shi, Limei
Huang, Yaxin
Zhang, Min
Shi, Xiaoli
Cai, Yuanfeng
Gao, Shengling
Tang, Xiangming
Chen, Feizhou
Lu, Yaping
Kong, Fanxiang
author_sort Shi, Limei
collection PubMed
description Worldwide cyanobacterial blooms greatly impair ecosystems in many eutrophic lakes and impact the microbial environment. In particular, large cyanobacterial colonies that are buoyant on the water surface may provide a distinct habitat for bacteria from other small particles that are suspended stably in the water column. To test this hypothesis, bacterial communities (excluding cyanobacteria) attached to large particles dominated by cyanobacterial colonies (>120 μm, LA), small particles (3–36 μm, SA), and free‐living bacteria (0.2–3 μm, FL) were investigated monthly for a year in Lake Taihu, China. Results confirmed that the Shannon diversity index of LA was significantly lower than that of FL, which was lower than that of SA. Cytophagia and Alphaproteobacteria were specially enriched in LA. Although samples in each habitat collected during high‐ (May to November) and low‐bloom seasons (December to April) were separated, all samples in LA were clustered and separated from SA and FL, which were also clustered during the same sampling seasons. In addition, the bacterial communities in LA were correlated with nitrate level, whereas FL and SA were correlated with nitrate level and temperature. Mantel analysis revealed that bacterial composition significantly correlated with the cyanobacterial composition in LA and FL but not in SA. These results indicate that LA provides distinct niches to bacteria, whereas the differentiation of bacterial communities in FL and SA is seasonally dependent.
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spelling pubmed-62918272018-12-18 Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column Shi, Limei Huang, Yaxin Zhang, Min Shi, Xiaoli Cai, Yuanfeng Gao, Shengling Tang, Xiangming Chen, Feizhou Lu, Yaping Kong, Fanxiang Microbiologyopen Original Articles Worldwide cyanobacterial blooms greatly impair ecosystems in many eutrophic lakes and impact the microbial environment. In particular, large cyanobacterial colonies that are buoyant on the water surface may provide a distinct habitat for bacteria from other small particles that are suspended stably in the water column. To test this hypothesis, bacterial communities (excluding cyanobacteria) attached to large particles dominated by cyanobacterial colonies (>120 μm, LA), small particles (3–36 μm, SA), and free‐living bacteria (0.2–3 μm, FL) were investigated monthly for a year in Lake Taihu, China. Results confirmed that the Shannon diversity index of LA was significantly lower than that of FL, which was lower than that of SA. Cytophagia and Alphaproteobacteria were specially enriched in LA. Although samples in each habitat collected during high‐ (May to November) and low‐bloom seasons (December to April) were separated, all samples in LA were clustered and separated from SA and FL, which were also clustered during the same sampling seasons. In addition, the bacterial communities in LA were correlated with nitrate level, whereas FL and SA were correlated with nitrate level and temperature. Mantel analysis revealed that bacterial composition significantly correlated with the cyanobacterial composition in LA and FL but not in SA. These results indicate that LA provides distinct niches to bacteria, whereas the differentiation of bacterial communities in FL and SA is seasonally dependent. John Wiley and Sons Inc. 2018-03-23 /pmc/articles/PMC6291827/ /pubmed/29573241 http://dx.doi.org/10.1002/mbo3.608 Text en © 2018 The Authors. MicrobiologyOpen published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Shi, Limei
Huang, Yaxin
Zhang, Min
Shi, Xiaoli
Cai, Yuanfeng
Gao, Shengling
Tang, Xiangming
Chen, Feizhou
Lu, Yaping
Kong, Fanxiang
Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
title Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
title_full Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
title_fullStr Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
title_full_unstemmed Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
title_short Large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
title_sort large buoyant particles dominated by cyanobacterial colonies harbor distinct bacterial communities from small suspended particles and free‐living bacteria in the water column
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6291827/
https://www.ncbi.nlm.nih.gov/pubmed/29573241
http://dx.doi.org/10.1002/mbo3.608
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