4.2 Article

The roles of environment and space in shaping stream diatom communities

期刊

EUROPEAN JOURNAL OF PHYCOLOGY
卷 47, 期 2, 页码 160-168

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/09670262.2012.682610

关键词

biogeography; diatom ecology; environmental and spatial factors; Finland; geographical distance; indicator species; water chemistry; water quality assessment

资金

  1. Maj and Tor Nessling Foundation
  2. Academy of Finland

向作者/读者索取更多资源

Diatoms are widely used in stream quality assessment due to their response to the local environment. Diatoms are also influenced by many large-scale processes and so the diatom communities of boreal streams incorporate a strong spatial component at a regional level. What is not properly known yet is whether the variation in diatom communities between regions is larger than the variation in measured environmental variables. We studied the roles of environment and space in accounting for variability in stream diatom communities across four regions in Finland. According to canonical correspondence analysis, geographical coordinates, nutrient concentrations (total N and P), and water conductivity were the most important factors affecting variation in diatom community composition. Of physical factors, depth and current velocity were also significant. According to Mantel tests, both environmental and geographical distances were related to dissimilarity in diatom community composition. Analysis of Similarities indicated that the regional differences in diatom community composition were larger than the regional differences in environmental variables. We also found many indicator species confined to certain regions. Our results suggest that the four study regions differ in their diatom species composition more than in their environmental features and that diatoms are structured not only by the local environment but also by large-scale processes, possibly related to history, climate and dispersal. These results imply that, while diatom species composition reflects well the environmental differences between regions, future bioassessments would benefit from regional stratification. Otherwise, relationships with environmental variables may be masked by trans-regional differences in species pools caused by the large-scale processes.

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