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首页> 外文期刊>Estuaries and coasts >Spatiotemporal Variability in Dissolved Organic Matter Composition is More Strongly Related to Bacterioplankton Community Composition than to Metabolic Capability in a Blackwater Estuarine System
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Spatiotemporal Variability in Dissolved Organic Matter Composition is More Strongly Related to Bacterioplankton Community Composition than to Metabolic Capability in a Blackwater Estuarine System

机译:在黑水河口系统中,溶解性有机物组成中的时空变异与浮游细菌群落组成更紧密相关,而不是与代谢能力相关。

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The composition and metabolic capability of bacterioplankton communities were examined over seasonal and spatial gradients and related to the source, composition, and quantity of dissolved organic matter (DOM) in the blackwater estuary Winyah Bay, Georgetown County, SC, USA and its tributary rivers. Bacterial community composition (BCC) was measured by terminal restriction fragment length polymorphism, and bacterial metabolic capability (BMC) was measured by defined substrate utilization patterns (Biolog GN2 plates). Spatial patterns were not important, despite the anticipated watershed effects and the welldocumented influence of salinity gradients on estuarine bacterioplankton, but DOM, BCC, and BMC all showed varying degrees of temporal patterns; DOM-based groupings differentiated BCC samples better than spatiotemporal categories, but not BMC. BCC was closely related to properties describing DOM composition, particularly those related to DOM source (i.e., cypress swamps vs. in situ phytoplankton production, indicated by chlorophyll a, colored DOM spectral slope, α355/dissolved organic carbon (DOC), and DOC concentration), and to associated physicochemical variables, such as temperature, pH, and salinity. BMC was more strongly related to abiotic factors, such as temperature and dissolved nutrients, as well as to chlorophyll a and percent bioavailable DOC. In contrast with previous studies, BCC and BMC were significantly correlated in this highly heterotrophic estuary, suggesting that DOM source variability may select for specialist phylotypes above a background of generalists. This study, therefore, supports a causative pathway from DOM to BMC to BCC while suggesting that BCC and BMC may be simultaneously influenced by different suites of DOM characteristics and physicochemical parameters.
机译:在美国南卡罗来纳州乔治敦县黑水河口Winyah湾及其支流河中,研究了季节性和空间梯度上浮游细菌群落的组成和代谢能力,并与可溶性有机物(DOM)的来源,组成和数量有关。通过末端限制性片段长度多态性测量细菌群落组成(BCC),并通过确定的底物利用模式(Biolog GN2平板)测量细菌代谢能力(BMC)。尽管预期的分水岭效应和盐度梯度对河口浮游生物的影响有据可查,但空间格局并不重要,但是DOM,BCC和BMC均表现出不同程度的时间格局。基于DOM的分组对BCC样本的区分优于时空类别,但对BMC则没有。 BCC与描述DOM组成的特性密切相关,尤其是与DOM来源相关的特性(例如,柏树沼泽与原位浮游植物的产量,由叶绿素a,有色DOM光谱斜率,α355/溶解的有机碳(DOC)和DOC浓度表示) )以及相关的理化变量,例如温度,pH和盐度。 BMC与非生物因素(例如温度和溶解的养分)以及叶绿素a和生物利用度DOC密切相关。与以前的研究相反,BCC和BMC在这个高度异养的河口中显着相关,这表明DOM源变异性可能会为多才多艺的背景下的专家系统型选择。因此,这项研究支持了从DOM到BMC再到BCC的致病性途径,同时表明BCC和BMC可能同时受到不同系列DOM特性和理化参数的影响。

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