Functional Gene Composition, Diversity and Redundancy in Microbial Stream Biofilm Communities
Loading...
Date
Authors
Andrew Dopheide
Gavin Lear
Zhili He
Jizhong Zhou
Gillian D. Lewis
Journal Title
Journal ISSN
Volume Title
Publisher
PLos One
B
Data Nutrition Label85/100
- Completeness88
- Licensing100
- Openness100
- Provenance50
Assessed Jul 1, 2026
Abstract
We surveyed the functional gene composition and diversity of microbial biofilm communities in 18 New Zealand streams affected by different types of catchment land use, using a comprehensive functional gene array, GeoChip 3.0. A total of 5,371 nutrient cycling and energy metabolism genes within 65 gene families were detected among all samples (342 to 2,666 genes per stream). Carbon cycling genes were most common, followed by nitrogen cycling genes, with smaller proportions of sulphur, phosphorus cycling and energy metabolism genes. Samples from urban and native forest streams had the most similar functional gene composition, while samples from exotic forest and rural streams exhibited the most variation. There were significant differences between nitrogen and sulphur cycling genes detected in native forest and urban samples compared to exotic forest and rural samples, attributed to contrasting proportions of nitrogen fixation, denitrification, and sulphur reduction genes. Most genes were detected only in one or a few samples, with only a small minority occurring in all samples. Nonetheless, 42 of 65 gene families occurred in every sample and overall proportions of gene families were similar among samples from contrasting streams. This suggests the existence of functional gene redundancy among different stream biofilm communities despite contrasting taxonomic composition.
Description
We thank Yimin Dong (University of Auckland) for carrying out all DNA extractions, and Martin Neale (Auckland Council) for generous assistance with the study including provision of environmental data.
Citation
Dopheide A, Lear G, He Z, Zhou J, Lewis GD (2015) Functional Gene Composition, Diversity and Redundancy in Microbial Stream Biofilm Communities. PLoS ONE 10(4): e0123179. doi:10.1371/journal.pone.0123179
Related file
http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0123179
Notes
Collections
Endorsement
Review
Supplemented By
Referenced By
Collection Detail
# of Isolates from RBM
# of Isolates from TV8
Creative Commons license
Except where otherwised noted, this item's license is described as Attribution 3.0 United States
