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特拉华河口主要细菌类群对多糖和葡萄糖的同化作用。

Assimilation of polysaccharides and glucose by major bacterial groups in the Delaware Estuary.

作者信息

Elifantz Hila, Malmstrom Rex R, Cottrell Matthew T, Kirchman David L

机构信息

College of Marine Studies, University of Delaware, Lewes, DE 19958, USA.

出版信息

Appl Environ Microbiol. 2005 Dec;71(12):7799-805. doi: 10.1128/AEM.71.12.7799-7805.2005.

Abstract

The contribution of major bacterial groups to the assimilation of extracellular polymeric substances (EPS) and glucose in the Delaware Estuary was assessed using microautoradiography and fluorescence in situ hybridization. Bacterial groups contributed to EPS and glucose assimilation in part according to their distribution in the estuary. Abundance of the phylogenetic groups explained 35% and 55% of the variation in EPS and glucose assimilation, respectively. Actinobacteria contributed 70% to glucose assimilation in freshwater, while Alphaproteobacteria assimilated 60% of this compound in saline water. In contrast, various bacterial groups dominated the assimilation of EPS. Actinobacteria and Betaproteobacteria contributed the most in the freshwater section, whereas Cytophaga-like bacteria and Alpha- and Gammaproteobacteria participated in EPS assimilation in the lower part of the estuary. In addition, we examined the fraction of bacteria in each group that assimilated glucose or EPS. Overall, the fraction of bacteria in all groups that assimilated glucose was higher than the fraction that assimilated EPS (15 to 30% versus 5 to 20%, respectively). We found no correlation between the relative abundance of a group in the estuary and the fraction of bacteria actively assimilating glucose or EPS; the more active groups were often less abundant. Our results imply that the bacterial community in the Delaware Estuary is not controlled solely by "bottom-up" factors such as dissolved organic matter.

摘要

利用微放射自显影技术和荧光原位杂交技术,评估了特拉华河口主要细菌类群对胞外聚合物(EPS)和葡萄糖同化作用的贡献。细菌类群对EPS和葡萄糖同化作用的贡献部分取决于它们在河口的分布。系统发育类群的丰度分别解释了EPS和葡萄糖同化作用中35%和55%的变异。放线菌在淡水中对葡萄糖同化作用的贡献为70%,而α-变形菌在盐水中同化了该化合物的60%。相比之下,各种细菌类群在EPS同化作用中占主导地位。放线菌和β-变形菌在淡水区域的贡献最大,而噬纤维菌样细菌以及α-和γ-变形菌在河口下游参与了EPS的同化作用。此外,我们还研究了每组中同化葡萄糖或EPS的细菌比例。总体而言,所有类群中同化葡萄糖的细菌比例高于同化EPS的细菌比例(分别为15%至30%和5%至20%)。我们发现河口某类群的相对丰度与积极同化葡萄糖或EPS的细菌比例之间没有相关性;活性较高的类群往往丰度较低。我们的结果表明,特拉华河口的细菌群落并非仅受溶解有机物等“自下而上”因素的控制。

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