Department of Biological Sciences, Kent State University, Kent, OH 44242, USA.
Can J Microbiol. 2010 Jan;56(1):32-43. doi: 10.1139/w09-099.
Bacteria in freshwater systems play an important role in nutrient cycling through both assimilatory and dissimilatory processes. Biotic and abiotic components of the environment affect these transformations as does the stoichiometry of the nutrients. We examined responses of four major taxa of bacteria in biofilms subjected to various N:P molar ratios using either nitrate or ammonium as a nitrogen source. Fluorescent in situ hybridization was used to enumerate the Domain bacteria as well as the alpha-, beta-, and gamma-proteobacteria, and the Cytophaga-Flavobacteria cluster. Generally, bacterial responses to the treatments were limited. However, the Cytophaga-Flavobacteria and beta-proteobacteria both responded more to the ammonium additions than nitrate, whereas, the alpha-proteobacteria responded more to nitrate additions. The beta-proteobacteria also exhibited peak relative abundance at the highest N:P ratio. Nutrient concentrations were significantly different after the incubation period, and there were distinct changes in the stoichiometry of the microcosms with ammonium. We demonstrated that bacteria may play an important role in nutrient uptake, and transformation, and can have a dramatic effect on the nutrient stoichiometry of the surrounding water. However, although some taxa exhibited differences in response to ammonium and nitrate, the impact of nutrient stoichiometry on the abundance of the taxa examined was limited.
淡水系统中的细菌通过同化和异化过程在养分循环中发挥着重要作用。环境的生物和非生物成分以及养分的化学计量都会影响这些转化。我们使用硝酸盐或铵盐作为氮源,研究了生物膜中四种主要细菌类群在不同 N:P 摩尔比下的反应。荧光原位杂交用于计数域细菌以及α-、β-和γ-变形菌和噬纤维菌-黄杆菌群。一般来说,细菌对处理的反应是有限的。然而,噬纤维菌-黄杆菌和β-变形菌对铵的添加比硝酸盐的添加反应更强烈,而α-变形菌对硝酸盐的添加反应更强烈。β-变形菌在最高 N:P 比下也表现出最高的相对丰度。孵育期后营养浓度有显著差异,并且铵处理的微宇宙的化学计量有明显变化。我们证明,细菌可能在养分吸收和转化中发挥重要作用,并对周围水的养分化学计量产生巨大影响。然而,尽管一些类群对铵盐和硝酸盐的反应存在差异,但养分化学计量对所研究类群丰度的影响是有限的。