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A Multi-season Investigation of Microbial Extracellular Enzyme Activities in Two Temperate Coastal North Carolina Rivers: Evidence of Spatial but Not Seasonal Patterns

机译:多季节调查的两个温带沿海北卡罗莱纳州河流中的微生物细胞外酶活性:空间但不是季节性模式的证据

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摘要

Riverine systems are important sites for the production, transport, and transformation of organic matter. Much of the organic matter processing is carried out by heterotrophic microbial communities, whose activities may be spatially and temporally variable. In an effort to capture and evaluate some of this variability, we sampled four sites—two upstream and two downstream—at each of two North Carolina rivers (the Neuse River and the Tar-Pamlico River) ca. twelve times over a time period of 20 months from 2010 to 2012. At all of the sites and dates, we measured the activities of extracellular enzymes used to hydrolyze polysaccharides and peptides, and thus to initiate heterotrophic carbon processing. We additionally measured bacterial abundance, bacterial production, phosphatase activities, and dissolved organic carbon (DOC) concentrations. Concurrent collection of physical data (stream flow, temperature, salinity, dissolved oxygen) enabled us to explore possible connections between physiochemical parameters and microbial activities throughout this time period. The two rivers, both of which drain into Pamlico Sound, differed somewhat in microbial activities and characteristics: the Tar-Pamlico River showed higher β-glucosidase and phosphatase activities, and frequently had higher peptidase activities at the lower reaches, than the Neuse River. The lower reaches of the Neuse River, however, had much higher DOC concentrations than any site in the Tar River. Both rivers showed activities of a broad range of polysaccharide hydrolases through all stations and seasons, suggesting that the microbial communities are well-equipped to access enzymatically a broad range of substrates. Considerable temporal and spatial variability in microbial activities was evident, variability that was not closely related to factors such as temperature and season. However, Hurricane Irene's passage through North Carolina coincided with higher concentrations of DOC at the downstream sampling sites of both rivers. This DOC maximum persisted into the month following the hurricane, when it continued to stimulate bacterial protein production and phosphatase activity in the Neuse River, but not in the Tar-Pamlico River. Microbial community activities are related to a complex array of factors, whose interactions vary considerably with time and space.
机译:河流系统是有机物生产,运输和转化的重要场所。许多有机物的处理是由异养微生物群落进行的,它们的活动可能在空间和时间上变化。为了捕获和评估这种可变性,我们在北卡罗来纳州的两条河(Neuse河和Tar-Pamlico河)中的每条河上分别采样了四个站点(两个上游和两个下游)。从2010年到2012年,在20个月的时间内进行了12次。在所有地点和日期,我们测量了用于水解多糖和多肽并由此启动异养碳加工的细胞外酶的活性。我们还测量了细菌的丰度,细菌的产生,磷酸酶的活性以及溶解的有机碳(DOC)的浓度。并发收集物理数据(流量,温度,盐度,溶解氧)使我们能够探索这段时间内理化参数与微生物活动之间的可能联系。两条河流都排入Pamlico Sound,其微生物活性和特征有所不同:Tar-Pamlico河显示出更高的β-葡萄糖苷酶和磷酸酶活性,并且下游的肽酶活性通常比Neuse河更高。但是,Neuse河的下游的DOC浓度比Tar河的任何站点都要高。两条河流在所有站位和季节均显示出广泛的多糖水解酶活性,这表明微生物群落具备良好的酶学手段,可以通过酶途径获得各种底物。微生物活动具有明显的时空变异性,其变异性与温度和季节等因素没有密切关系。但是,艾琳飓风穿越北卡罗来纳州时,恰逢两条河流的下游采样点的DOC浓度较高。 DOC的最大值一直持续到飓风之后的一个月,当时它继续刺激Neuse河中的细菌蛋白质产生和磷酸酶活性,而Tar-Pamlico河中则没有。微生物群落活动与一系列复杂的因素有关,这些因素的相互作用随时间和空间而变化很大。

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