Abstract
Molecular analysis of grassland rhizosphere soil has demonstrated complex and diverse bacterial communities, with resultant difficulties in detecting links between plant and bacterial communities. These studies have, however, analyzed "bulk" rhizosphere soil, rather than rhizoplane communities, which interact most closely with plants through utilization of root exudates. The aim of this study was to test the hypothesis that plant species was a major driver for bacterial rhizoplane community composition on individual plant roots. DNA extracted from individual roots was used to determine plant identity, by analysis of the plastid tRNA leucine (trnL) UAA gene intron, and plant-related bacterial communities. Bacterial communities were characterized by analysis of PCR-amplified 16S rRNA genes using two fingerprinting methods: terminal restriction fragment length polymorphisms (T-RFLP) and denaturing gradient gel electrophoresis (DGGE). Links between plant and bacterial rhizoplane communities could not be detected by visual examination of T-RFLP patterns or DGGE banding profiles. Statistical analysis of fingerprint patterns did not reveal a relationship between bacterial community composition and plant species but did demonstrate an influence of plant community composition. The data also indicated that topography and other, uncharacterized, environmental factors are important in driving bacterial community composition in grassland soils. T-RFLP had greater potential resolving power than DGGE, but findings from the two methods were not significantly different.
MeSH Terms
Bacteria/classification,genetics,growth & development
DNA, Bacterial/analysis
Ecosystem
Electrophoresis/methods
Plant Roots/microbiology
Poaceae/classification,genetics,growth & development,microbiology
Polymorphism, Restriction Fragment Length
RNA, Plant/analysis,genetics
RNA, Ribosomal, 16S/genetics
RNA, Transfer, Leu/analysis,genetics
Soil/analysis
Soil Microbiology
Species Specificity
Chemicals
DNA, Bacterial
RNA, Plant
RNA, Ribosomal, 16S
RNA, Transfer, Leu
Soil
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Nunan Naoise
Biomathematics and Statistics Scotland, Scottish Crop Research Institute, Dundee, United Kingdom.
Daniell Timothy J
Singh Brajesh K
Papert Artemis
McNicol James W
Prosser James I
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