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室内海洋微宇宙中对夜光藻(甲藻)爆发的细菌群落动态响应。

Dynamic bacterial community response to Akashiwo sanguinea (Dinophyceae) bloom in indoor marine microcosms.

机构信息

Library of Marine Samples, Korea Institute of Ocean Science and Technology, Geoje, 53201, Republic of Korea.

Department of Oceanography, Pukyoung National University, Busan, 48513, Republic of Korea.

出版信息

Sci Rep. 2021 Mar 26;11(1):6983. doi: 10.1038/s41598-021-86590-8.

Abstract

We investigated the dynamics of the bacterial composition and metabolic function within Akashiwo sanguinea bloom using a 100-L indoor microcosm and metagenomic next-generation sequencing. We found that the bacterial community was classified into three groups at 54% similarity. Group I was associated with "during the A. sanguinea bloom stage" and mainly consisted of Alphaproteobacteria, Flavobacteriia and Gammaproteobacteria. Meanwhile, groups II and III were associated with the "late bloom/decline stage to post-bloom stage" with decreased Flavobacteriia and Gammaproteobacteria in these stages. Upon the termination of the A. sanguinea bloom, the concentrations of inorganic nutrients (particularly PO, NH and dissolved organic carbon) increased rapidly and then decreased. From the network analysis, we found that the A. sanguinea node is associated with certain bacteria. After the bloom, the specific increases in NH and PO nodes are associated with other bacterial taxa. The changes in the functional groups of the bacterial community from chemoheterotrophy to nitrogen association metabolisms were consistent with the environmental impacts during and after A. sanguinea bloom. Consequently, certain bacterial communities and the environments dynamically changed during and after harmful algal blooms and a rapid turnover within the bacterial community and their function can respond to ecological interactions.

摘要

我们使用 100 升室内微宇宙和宏基因组下一代测序技术研究了赤潮异弯藻(Akashiwo sanguinea)水华期间细菌组成和代谢功能的动态变化。我们发现,细菌群落可在 54%相似性水平上分为三组。组 I 与“赤潮异弯藻水华期”相关,主要由 α-变形菌门、黄杆菌门和γ-变形菌门组成。同时,组 II 和组 III 与“水华后期/衰退期到水华后期”相关,这些阶段的黄杆菌门和γ-变形菌门减少。赤潮异弯藻水华结束后,无机营养物(特别是 PO、NH 和溶解有机碳)的浓度迅速增加,然后减少。从网络分析中,我们发现赤潮异弯藻节点与某些细菌相关。水华后,NH 和 PO 节点的特定增加与其他细菌类群相关。细菌群落从化能异养到氮关联代谢的功能群的变化与赤潮异弯藻水华期间和之后的环境影响一致。因此,有害藻类水华期间和之后,某些细菌群落和环境会发生动态变化,细菌群落及其功能的快速更替可以响应生态相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cd5/7997919/b27982aef0aa/41598_2021_86590_Fig1_HTML.jpg

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