Crump Ron C, Adams Heather E, Hobbie John E, Kling George W
University of Maryland Center for Environmental Science, Horn Point Laboratory, Cambridge, Maryland 21613, USA.
Ecology. 2007 Jun;88(6):1365-78. doi: 10.1890/06-0387.
Bacterioplankton community composition was compared across 10 lakes and 14 streams within the catchment of Toolik Lake, a tundra lake in Arctic Alaska, during seven surveys conducted over three years using denaturing gradient gel electrophoresis (DGGE) of PCR-amplified rDNA. Bacterioplankton communities in streams draining tundra were very different than those in streams draining lakes. Communities in streams draining lakes were similar to communities in lakes. In a connected series of lakes and streams, the stream communities changed with distance from the upstream lake and with changes in water chemistry, suggesting inoculation and dilution with bacteria from soil waters or hyporheic zones. In the same system, lakes shared similar bacterioplankton communities (78% similar) that shifted gradually down the catchment. In contrast, unconnected lakes contained somewhat different communities (67% similar). We found evidence that dispersal influences bacterioplankton communities via advection and dilution (mass effects) in streams, and via inoculation and subsequent growth in lakes. The spatial pattern of bacterioplankton community composition was strongly influenced by interactions among soil water, stream, and lake environments. Our results reveal large differences in lake-specific and stream-specific bacterial community composition over restricted spatial scales (<10 km) and suggest that geographic distance and connectivity influence the distribution of bacterioplankton communities across a landscape.
在三年间进行的七次调查中,利用聚合酶链反应扩增的核糖体DNA的变性梯度凝胶电泳(DGGE),对阿拉斯加北极苔原地区图利克湖集水区内的10个湖泊和14条溪流中的浮游细菌群落组成进行了比较。苔原溪流中的浮游细菌群落与湖泊溪流中的浮游细菌群落截然不同。湖泊溪流中的群落与湖泊中的群落相似。在一系列相互连通的湖泊和溪流中,溪流群落随距上游湖泊的距离以及水化学变化而改变,这表明土壤水或地下水文带中的细菌存在接种和稀释现象。在同一系统中,湖泊拥有相似的浮游细菌群落(相似度为78%),且这些群落在集水区内逐渐变化。相比之下,不相连的湖泊含有略有不同的群落(相似度为67%)。我们发现有证据表明,扩散通过对流和稀释(质量效应)影响溪流中的浮游细菌群落,并通过接种和后续生长影响湖泊中的浮游细菌群落。浮游细菌群落组成的空间格局受到土壤水、溪流和湖泊环境之间相互作用的强烈影响。我们的研究结果揭示了在有限空间尺度(<10公里)内湖泊特定和溪流特定细菌群落组成的巨大差异,并表明地理距离和连通性会影响景观中浮游细菌群落的分布。