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Impact of environmental factors on bacterial communities in floodplain lakes differed by hydrological connectivity

机译:环境因素对洪泛区湖泊细菌群落的影响因水文连通性而异

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We analysed total bacterial number and mean volume of cells at three sites in each of ten floodplain lakes in the Middle Basin of the Biebrza River, North-Eastern Poland to test bacterioplankton communities change according to the distance to the river. The composition of the bacterial communities was determined by fluorescent in situ hybridization method. Total number of bacteria in the lakes ranged from 4.0 to 7.48 cells x 10(6) mL(-1) with dominance by Actinobacteria, the contribution of which was positively correlated with water level. Old river channels (side-arms) featured Alpha- and Gammaproteobacteria. The community of Betaproteobacteria was limited by concentration of dissolved organic carbon. Archaea, in spite of a minor role (<3.65% of DAPI-4',6-diamidino-2-phenylindole) in the communities, showed a positive relation to floodplain lake isolation. Multivariate analysis demonstrated that bacterioplankton in riverine lakes was similar to that in rivers, while lakes with limited water exchange showed a similarity to fertile lakes. Water level and nutrients were among the factors determining bacterial community structure. (C) 2016 Elsevier GmbH. All rights reserved.
机译:我们分析了波兰东北部比卜扎河中部盆地十个洪泛区湖泊中三个湖中三个站点的细菌总数和平均细胞体积,以测试细菌浮游植物群落根据距河的距离而变化。通过荧光原位杂交方法确定细菌群落的组成。湖泊中的细菌总数范围为4.0至7.48个细胞x 10(6)mL(-1),其中放线菌占主导地位,其贡献与水位呈正相关。旧河道(侧臂)的特征是α-和γ-变形杆菌。 Betaproteobacteria的社区受到溶解有机碳浓度的限制。尽管古细菌在社区中的作用很小(

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