Influence of Temperature of Incubation and Type of Growth Medium on Pigmentation in Serratia marcescens

Author:

Williams Robert P.1,Gott Cora L.1,Qadri S. M. Hussain1,Scott Randolph H.1

Affiliation:

1. Department of Microbiology, Baylor College of Medicine, Houston, Texas 77025

Abstract

Maximal amounts of prodigiosin were synthesized in either minimal or complete medium after incubation of cultures at 27 C for 7 days. Biosynthesis of prodigiosin began earlier and the range of temperature for formation was greater in complete medium. No prodigiosin was formed in either medium when cultures were incubated at 38 C; however, after a shift to 27 C, pigmentation ensued, provided the period of incubation at 38 C was not longer than 36 hr for minimal medium or 48 hr for complete medium. Washed, nonpigmented cells grown in either medium at 38 C for 72 hr could synthesize prodigiosin when suspended in saline at 27 C when casein hydrolysate was added. These suspensions produced less prodigiosin at a slower rate than did cultures growing in casein hydrolysate at 27 C without prior incubation at 38 C. Optimal concentration of casein hydrolysate for pigment formation by suspensions was 0.4%; optimal temperature was 27 C. Anaerobic incubation, shift back to 38 C, killing cells by heating, or chloramphenicol (25 μg/ml) inhibited pigmentation. Suspensions of washed cells forming pigment reached p H 8.0 to 8.3 rapidly and maintained this p H throughout incubation for 7 days. Measurements of viable count and of protein, plus other data, indicated that cellular multiplication did not occur in suspensions of washed cells during pigment formation. By this procedure utilizing a shift down in temperature, biosynthesis of prodigiosin by washed cells could be separated from multiplication of bacteria.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference10 articles.

1. Selective inhibition of proline-induced pigmentation in washed cells of Serratia marcescens;Blizzard J. L.;J. Bacteriol.,1963

2. A description of some color variants produced by Serratia marcescens strain 274;Bunting M.;J. Bacteriol.,1940

3. The biochemical reactions given by members of the Serratia group;Davis B. R.;Int. Bull. Bacteriol. Nomencl. Taxon.,1957

4. The biosynthesis of prodigiosin, the tripyrrylmethene pigment from Bacillus prodigiosus (Serratia marcescens);Hubbard R.;Biochem. J.,1950

5. Evaluation of shikimic acid as a precursor of pyocyanine;Ingledew W. M.;Can. J. Microbiol.,1969

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