Dynamics of bacterial communities during a seasonal hypoxia at the Bohai Sea:Coupling and response b

来源 :环境科学学报(英文版) | 被引量 : 0次 | 上传用户:zuo541018125
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Marine bacterial community plays a vital role in the formation of the hypoxia zone in coastal oceans.Yet,their dynamics in the seasonal hypoxia zone of the Bohai Sea (BHS) are barely studied.Here,the 16S rRNA gene-based high-throughput sequencing was used to explore the dynamics of their diversity,structure,and function as well as driving factors during the gradual deoxygenation process in the BHS.Our results evinced that the bacterial community was dominated by Proteobacteria,followed by Bacteroidetes,Firmicutes,Actinobacteria,and Cyanobacteria,etc.The abundant subcommunity dominated in the number of sequences(49%) while the rare subcommunity dominated in the number of species (99.61%).Although abundant subcommunity accounted for most sequences,rare subcommunity possessed higher diversity,richness and their population dramatically changed (higher turnover) dur-ing the hypoxia transition.Further,co-occurrence network analysis proved the vital role of rare subcommunity in the process of community assembly.Additionally,beta diversity partition revealed that both subcommunities possessed a higher turnover component than nestedness and/or richness component,implying species replacement could explain a con-siderable percentage of community variation..This variation might be governed by both en-vironmental selection and stochastic processes,and further,it influenced the nitrogen cycle(PICRUSt-based prediction) of the hypoxia zone.Overall,this study provides insight into the spatial-temporal heterogeneity of bacterial and their vital role in biogeochemical cycles in the hypoxia zone of the BHS.These findings will extend our horizons about the stabiliza-tion mechanism,feedback regulation,and interactive model inside the bacterial community under oxygen-depleted ecosystems.
其他文献
Nonylphenol (NP) residues,as a typical endocrine disrupting chemical (EDC),frequently exist in sewage,surface water,groundwater and even drinking water,which poses a se-rious threat to human health due to its bioaccumulation.In order to remove NP,a series
Black carbon (BC) plays an important role in air quality and climate change,which is closely associated with its mixing state and chemical compositions.In this work the mixing state of BC-containing single particles was investigated to explore the evoluti
The aim of this study is to investigate conversion of nitrogen and COD in enriched paddy soil by nitrification coupled with anammox process in a dual chamber bioelectrochemical system.The paddy soil was enriched for denitrification coupled with anammox by
Biomass fermentation provides a potential route toward the ecological disposal for the bauxite residue (BR) with high alkalinity issues.However,how to accelerate the remedia-tion of the alkaline problem with a long-term durability is still a big challenge
In this study,a graphitic carbon nitride (g-C3N4) based ternary catalyst CuO/CuFe2O4/g-C3N4 (CCCN) is successfully prepared thorough calcination method.After confirming the structure and composition of CCCN,the as-synthesized composites are utilized to ac
This research investigated the effects of ciprofloxacin (CIP) (0.5,5,and 20 mg/L) on SBR sys-tems under different carbon source conditions.Microbial community abundance and struc-ture were determined by quantitative PCR and high-throughput sequencing,resp
Eutrophication and harmful cyanobacterial blooms threaten water resources all over the world.There is a great controversy about controlling only phosphorus or controlling both nitrogen and phosphorus in the management of lake eutrophication.The primary ar
Perfluooroctane sulfonate (PFOS) is a persistent organic pollutant (POP) and emergent con-taminant that are widespread in the environment.Understanding the mechanisms control-ling the distribution of PFOS and its isomers between hydrargillite and the wate
A pilot-scale multistage constructed wetland-pond (MCWP) system with a “pre-ecological oxidation pond,two-stage horizontal subsurface flow constructed wetland (HSCW) and sur-face flow constructed wetland (SFCW) as the core and postsubmerged plant pond” as
Soils and waters are heavily contaminated by antimony in Xikuangshan (XKS) mine area.It is widely accepted that oxidative dissolution of sulfide minerals and aqueous dissolution are the most prevalent geochemical mechanisms for the release of Sb to the en