Abstract
The marine bacterium Pseudomonas sp. strain S9 produces exopolysaccharides (EPS) during both growth and total energy source and nutrient starvation. Transmission electron microscopy of immunogold-labeled cells demonstrated that the EPS is closely associated with the cell surface during growth (integral EPS), while both the integral form and a loosely associated extracellular (peripheral) form were observed during starvation. Formation and release of the latter rendered the starvation medium viscous. In addition, after 3 h of starvation in static conditions, less than 5% of the cells were motile, compared with 100% at the onset of starvation and approximately 80% subsequent to release of the peripheral EPS at 27 h of starvation. Inhibition of protein synthesis with chloramphenicol added before 3 h of starvation caused no increase in viscosity. However, addition of chloramphenicol at 3 h did not prevent the subsequent increase in viscosity displayed by S9 cells. The amount of integral EPS increased for both nontreated and chloramphenicol-treated S9 cells during the first hour of starvation, with a subsequent equal decrease. The chloramphenicol-treated cells, as well as cells of a transposon-generated mutant strain deficient in peripheral EPS formation, remained adhesive to a hydrophobic inanimate surface during the initial 5 h of starvation, whereas nontreated wild-type cells had progressively decreased adhesion capacity. During the initial 5 h of starvation, most of the nontreated cells but only a small fraction of the chloramphenicol-treated and mutant cells detached from the hydrophobic substratum.(ABSTRACT TRUNCATED AT 250 WORDS)
MeSH Terms
Bacterial Proteins/biosynthesis
Cell Adhesion/physiology
Cell Movement/physiology
Chloramphenicol/pharmacology
Immunoenzyme Techniques
Polysaccharides, Bacterial/biosynthesis
Pseudomonas/drug effects,growth & development,metabolism
Chemicals
Bacterial Proteins
Polysaccharides, Bacterial
Chloramphenicol
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Wrangstadh M
Department of General and Marine Microbiology, University of Göteborg, Sweden.
Szewzyk U
Ostling J
Kjelleberg S
References (13)
13 references, click to expand
-
The caulobacters: ubiquitous unusual bacteria.
Microbiol Rev. 1981 Mar;45(1):123-79
PMID: 7012570
-
Regulation of lateral flagella gene transcription in Vibrio parahaemolyticus.
J Bacteriol. 1986 Jul;167(1):210-8
PMID: 3013835
-
Attached and free-floating bacterioplankton in howe sound, british columbia, a coastal marine fjord-embayment.
Appl Environ Microbiol. 1986 Mar;51(3):614-21
PMID: 16347023
-
Exoprotease Activity of Two Marine Bacteria during Starvation.
Appl Environ Microbiol. 1990 Jan;56(1):218-23
PMID: 16348094
-
Synthesis of membrane and periplasmic proteins during starvation of a marine Vibrio sp.
J Gen Microbiol. 1988 Jun;134(6):1645-51
PMID: 3221201
-
Frequency of antibiotic and heavy metal resistance, pigmentation, and plasmids in bacteria of the marine air-water interface.
Appl Environ Microbiol. 1987 Oct;53(10):2338-42
PMID: 3426213
-
Effect of interfaces on small, starved marine bacteria.
Appl Environ Microbiol. 1982 May;43(5):1166-72
PMID: 16346013
-
The production and release of an extracellular polysaccharide during starvation of a marine Pseudomonas sp. and the effect thereof on adhesion.
Arch Microbiol. 1986 Aug;145(3):220-7
PMID: 3767571
-
The transient phase between growth and nongrowth of heterotrophic bacteria, with emphasis on the marine environment.
Annu Rev Microbiol. 1987;41:25-49
PMID: 3318670
-
Genetic basis of starvation survival in nondifferentiating bacteria.
Annu Rev Microbiol. 1989;43:293-316
PMID: 2478072
-
Effect of nutrient deprivation on lipid, carbohydrate, DNA, RNA, and protein levels in Vibrio cholerae.
Appl Environ Microbiol. 1986 Oct;52(4):788-93
PMID: 2430523
-
In situ identification of bacterial species in marine microfouling films by using an immunofluorescence technique.
Appl Environ Microbiol. 1984 Dec;48(6):1214-20
PMID: 6393875
-
Inhibition of bacterial adherence to hydrocarbons and epithelial cells by emulsan.
Infect Immun. 1983 Mar;39(3):1024-8
PMID: 6341225