Response of particle-attached and free-living bacterial communities to Microcystis blooms

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Title
Response of particle-attached and free-living bacterial communities to Microcystis blooms
Author(s)
Ve Van Le; Mingyeong Kang; So-Ra Ko; Chan Yeong Park; J J Lee; I C Choi; Hee-Mock Oh; Chi-Yong Ahn
Bibliographic Citation
Applied Microbiology and Biotechnology, vol. 108, pp. 42-42
Publication Year
2024
Abstract
The massive proliferation of Microcystis threatens freshwater ecosystems and degrades water quality globally. Understanding the mechanisms that contribute to Microcystis growth is crucial for managing Microcystis blooms. The lifestyles of bacteria can be classified generally into two groups: particle-attached (PA;?>?3 μm) and free-living (FL; 0.2?3.0 μm). However, little is known about the response of PA and FL bacteria to Microcystis blooms. Using 16S rRNA gene high-throughput sequencing, we investigated the stability, assembly process, and co-occurrence patterns of PA and FL bacterial communities during distinct bloom stages. PA bacteria were phylogenetically different from their FL counterparts. Microcystis blooms substantially influenced bacterial communities. The time decay relationship model revealed that Microcystis blooms might increase the stability of both PA and FL bacterial communities. A contrasting community assembly mechanism was observed between the PA and FL bacterial communities. Throughout Microcystis blooms, homogeneous selection was the major assembly process that impacted the PA bacterial community, whereas drift explained much of the turnover of the FL bacterial community. Both PA and FL bacterial communities could be separated into modules related to different phases of Microcystis blooms. Microcystis blooms altered the assembly process of PA and FL bacterial communities. PA bacterial community appeared to be more responsive to Microcystis blooms than FL bacteria. Decomposition of Microcystis blooms may enhance cooperation among bacteria. Our findings highlight the importance of studying bacterial lifestyles to understand their functions in regulating Microcystis blooms.
Keyword
MicrocystisCyanobacterial bloomsParticle-attached bacteriaFree-living bacteriaAssembly process
ISSN
0175-7598
Publisher
Springer
Full Text Link
http://dx.doi.org/10.1007/s00253-023-12828-2
Type
Article
Appears in Collections:
Synthetic Biology and Bioengineering Research Institute > Cell Factory Research Center > 1. Journal Articles
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