Affiliation:
1. Marine Science Program
2. Department of Biological Sciences, University of South Carolina, Columbia, South Carolina 29208
Abstract
ABSTRACT
Early stages of surface colonization in coastal marine waters appear to be dominated by the marine
Rhodobacter
group of the α subdivision of the division
Proteobacteria
(α-
Proteobacteria
). However, the quantitative contribution of this group to primary surface colonization has not been determined. In this study, glass microscope slides were incubated in a salt marsh tidal creek for 3 or 6 days. Colonizing bacteria on the slides were examined by fluorescence in situ hybridization by employing DNA probes targeting 16S or 23S rRNA to identify specific phylogenetic groups. Confocal laser scanning microscopy was then used to quantify and track the dynamics of bacterial primary colonists during the early stages of surface colonization and growth. More than 60% of the surface-colonizing bacteria detectable by fluorescence staining (Yo-Pro-1) could also be detected with the
Bacteria
domain probe EUB338.
Archaea
were not detected on the surfaces and did not appear to participate in surface colonization. Of the three subdivisions of the
Proteobacteria
examined, the α-
Proteobacteria
were the most abundant surface-colonizing organisms. More than 28% of the total bacterial cells and more than 40% of the cells detected by EUB338 on the surfaces were affiliated with the marine
Rhodobacter
group. Bacterial abundance increased significantly on the surfaces during short-term incubation, mainly due to the growth of the marine
Rhodobacter
group organisms. These results demonstrated the quantitative importance of the marine
Rhodobacter
group in colonization of surfaces in salt marsh waters and confirmed that at least during the early stages of colonization, this group dominated the surface-colonizing bacterial assemblage.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
92 articles.
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