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溶解有机物负荷增加对河口微生物群落组成和功能的影响。

The Effect of Increased Loads of Dissolved Organic Matter on Estuarine Microbial Community Composition and Function.

作者信息

Traving Sachia J, Rowe Owen, Jakobsen Nina M, Sørensen Helle, Dinasquet Julie, Stedmon Colin A, Andersson Agneta, Riemann Lasse

机构信息

Centre for Ocean Life, Marine Biological Section, University of Copenhagen Helsingør, Denmark.

Umeå Marine Sciences Centre, Umeå UniversityHörnefors, Sweden; Department of Ecology and Environmental Science, Umeå UniversityUmeå, Sweden.

出版信息

Front Microbiol. 2017 Mar 9;8:351. doi: 10.3389/fmicb.2017.00351. eCollection 2017.

Abstract

Increased river loads are projected as one of the major consequences of climate change in the northern hemisphere, leading to elevated inputs of riverine dissolved organic matter (DOM) and inorganic nutrients to coastal ecosystems. The objective of this study was to investigate the effects of elevated DOM on a coastal pelagic food web from the coastal northern Baltic Sea, in a 32-day mesocosm experiment. In particular, the study addresses the response of bacterioplankton to differences in character and composition of supplied DOM. The supplied DOM differed in stoichiometry and quality and had pronounced effects on the recipient bacterioplankton, driving compositional changes in response to DOM type. The shifts in bacterioplankton community composition were especially driven by the proliferation of Bacteroidetes, Gemmatimonadetes, Planctomycetes, and Alpha- and Betaproteobacteria populations. The DOM additions stimulated protease activity and a release of inorganic nutrients, suggesting that DOM was actively processed. However, no difference between DOM types was detected in these functions despite different community compositions. Extensive release of re-mineralized carbon, nitrogen and phosphorus was associated with the bacterial processing, corresponding to 25-85% of the supplied DOM. The DOM additions had a negative effect on phytoplankton with decreased Chl and biomass, particularly during the first half of the experiment. However, the accumulating nutrients likely stimulated phytoplankton biomass which was observed to increase towards the end of the experiment. This suggests that the nutrient access partially outweighed the negative effect of increased light attenuation by accumulating DOM. Taken together, our experimental data suggest that parts of the future elevated riverine DOM supply to the Baltic Sea will be efficiently mineralized by microbes. This will have consequences for bacterioplankton and phytoplankton community composition and function, and significantly affect nutrient biogeochemistry.

摘要

预计河流负荷增加是北半球气候变化的主要后果之一,这将导致河流溶解有机物(DOM)和无机养分向沿海生态系统的输入增加。本研究的目的是在一个为期32天的中宇宙实验中,研究增加的DOM对波罗的海北部沿海中上层食物网的影响。特别是,该研究探讨了浮游细菌对所供应DOM的特征和组成差异的反应。所供应的DOM在化学计量和质量上有所不同,对接受的浮游细菌有显著影响,驱动了其组成随DOM类型的变化。浮游细菌群落组成的变化尤其由拟杆菌门、芽单胞菌门、浮霉菌门以及α-和β-变形菌门种群的增殖所驱动。添加DOM刺激了蛋白酶活性和无机养分的释放,表明DOM被积极地进行了处理。然而,尽管群落组成不同,但在这些功能中未检测到DOM类型之间的差异。再矿化碳、氮和磷的大量释放与细菌处理有关,相当于所供应DOM的25%-85%。添加DOM对浮游植物有负面影响,叶绿素和生物量下降,特别是在实验的前半段。然而,积累的养分可能刺激了浮游植物生物量,在实验接近尾声时观察到其增加。这表明养分获取在一定程度上抵消了因DOM积累导致的光衰减增加的负面影响。综上所述,我们的实验数据表明,未来波罗的海河流DOM供应增加的部分将被微生物有效矿化。这将对浮游细菌和浮游植物群落的组成和功能产生影响,并显著影响养分生物地球化学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c37/5343018/e49e6e567130/fmicb-08-00351-g001.jpg

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