globalchange  > 气候减缓与适应
DOI: 10.1007/s00248-018-1229-6
WOS记录号: WOS:000460479100002
论文题名:
Spring and Late Summer Phytoplankton Biomass Impact on the Coastal Sediment Microbial Community Structure
作者: Broman, Elias; Li, Lingni; Fridlund, Jimmy; Svensson, Fredrik; Legrand, Catherine; Dopson, Mark
通讯作者: Broman, Elias
刊名: MICROBIAL ECOLOGY
ISSN: 0095-3628
EISSN: 1432-184X
出版年: 2019
卷: 77, 期:2, 页码:288-303
语种: 英语
英文关键词: 16S rRNA ; Cyanobacteria ; Diatom ; Phytoplankton ; Algae ; Bloom ; Sediment
WOS关键词: BALTIC SEA SEDIMENTS ; EMENDED DESCRIPTION ; NITROGEN-FIXATION ; CLIMATE-CHANGE ; SP-NOV. ; DYNAMICS ; HYPOXIA ; DEPOSITION ; EUTROPHICATION ; CONSEQUENCES
WOS学科分类: Ecology ; Marine & Freshwater Biology ; Microbiology
WOS研究方向: Environmental Sciences & Ecology ; Marine & Freshwater Biology ; Microbiology
英文摘要:

Two annual Baltic Sea phytoplankton blooms occur in spring and summer. The bloom intensity is determined by nutrient concentrations in the water, while the period depends on weather conditions. During the course of the bloom, dead cells sink to the sediment where their degradation consumes oxygen to create hypoxic zones (<2mg/L dissolved oxygen). These zones prevent the establishment of benthic communities and may result in fish mortality. The aim of the study was to determine how the spring and autumn sediment chemistry and microbial community composition changed due to degradation of diatom or cyanobacterial biomass, respectively. Results from incubation of sediment cores showed some typical anaerobic microbial processes after biomass addition such as a decrease in NO2-+NO3- in the sediment surface (0-1cm) and iron in the underlying layer (1-2cm). In addition, an increase in NO2-+NO3- was observed in the overlying benthic water in all amended and control incubations. The combination of NO2-+NO3- diffusion plus nitrification could not account for this increase. Based on 16S rRNA gene sequences, the addition of cyanobacterial biomass during autumn caused a large increase in ferrous iron-oxidizing archaea while diatom biomass amendment during spring caused minor changes in the microbial community. Considering that OTUs sharing lineages with acidophilic microorganisms had a high relative abundance during autumn, it was suggested that specific niches developed in sediment microenvironments. These findings highlight the importance of nitrogen cycling and early microbial community changes in the sediment due to sinking phytoplankton before potential hypoxia occurs.


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被引频次[WOS]:12   [查看WOS记录]     [查看WOS中相关记录]
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/129564
Appears in Collections:气候减缓与适应

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作者单位: Linnaeus Univ, Dept Biol & Environm Sci, Ctr Ecol & Evolut Microbial Model Syst EEMiS, S-39182 Kalmar, Sweden

Recommended Citation:
Broman, Elias,Li, Lingni,Fridlund, Jimmy,et al. Spring and Late Summer Phytoplankton Biomass Impact on the Coastal Sediment Microbial Community Structure[J]. MICROBIAL ECOLOGY,2019-01-01,77(2):288-303
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