Abstract
The diversity of aerobic chemoorganotrophic bacteria inhabiting the Octopus Spring cyanobacterial mat community (Yellowstone National Park) was examined by using serial-dilution enrichment culture and a variety of enrichment conditions to cultivate the numerically significant microbial populations. The most abundant bacterial populations cultivated from dilutions to extinction were obtained from enrichment flasks which contained 9.0 x 10(2) primary producer (Synechococcus spp.) cells in the inoculum. Two isolates exhibited 16S rRNA nucleotide sequences typical of beta-proteobacteria. One of these isolates contained a 16S rRNA sequence identical to a sequence type previously observed in the mat by molecular retrieval techniques. Both are distantly related to a new sequence directly retrieved from the mat and contributed by a beta-proteobacterial community member. Phenotypically diverse gram-positive isolates genetically similar to Bacillus flavothermus were obtained from a variety of dilutions and enrichment types. These isolates exhibited identical 16S rRNA nucleotide sequences through a variable region of the molecule. Of the three unique sequences observed, only one had been previously retrieved from the mat, illustrating both the inability of the cultivation methods to describe the composition of a microbial community and the limitations of the ability of molecular retrieval techniques to describe populations which may be less abundant in microbial communities.
MeSH Terms
Bacteria, Aerobic/classification,genetics,isolation & purification
Cyanobacteria/classification,genetics,isolation & purification
Ecosystem
Fresh Water/microbiology
Genetic Variation
Gram-Positive Bacteria/classification,genetics,isolation & purification
Hot Temperature
Molecular Sequence Data
Phenotype
Phylogeny
RNA, Bacterial/genetics
RNA, Ribosomal, 16S/genetics
Water Microbiology
Chemicals
RNA, Bacterial
RNA, Ribosomal, 16S
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Nold S C
Department of Microbiology, Montana State University, Bozeman 59717, USA.
Kopczynski E D
Ward D M
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