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. 1988 Aug;54(8):1977-82.
doi: 10.1128/aem.54.8.1977-1982.1988.

Pseudomonas oleovorans as a Source of Poly(beta-Hydroxyalkanoates) for Potential Applications as Biodegradable Polyesters

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Pseudomonas oleovorans as a Source of Poly(beta-Hydroxyalkanoates) for Potential Applications as Biodegradable Polyesters

H Brandl et al. Appl Environ Microbiol. 1988 Aug.

Abstract

Pseudomonas oleovorans was grown in homogeneous media containing n-alkanoic acids, from formate to decanoate, as the sole carbon sources. Formation of intracellular poly(beta-hydroxyalkanoates) was observed only for hexanoate and the higher n-alkanoic acids. The maximum isolated polymer yields were approximately 30% of the cellular dry weight with growth on either octanoate or nonanoate. In most cases, the major repeating unit in the polymer had the same chain length as the n-alkanoic acid used for growth, but units with two carbon atoms less or more than the acid used as a carbon source were also generally present in the polyesters formed. Indeed, copolymers containing as many as six different types of beta-hydroxyalkanoate units were formed. The weight average molecular weights of the poly(beta-hydroxyalkanoate) copolymers produced by P. oleovorans ranged from 90,000 to 370,000. In spite of the higher cell yields obtained with octanoate and nonanoate, the use of hexanoate and heptanoate yielded higher-molecular-weight polymers. These copolyesters represent an entirely new class of biodegradable thermoplastics.

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References

    1. Appl Environ Microbiol. 1983 Jan;45(1):71-8 - PubMed
    1. J Bacteriol. 1941 Mar;41(3):373-86 - PubMed
    1. J Bacteriol. 1975 Apr;122(1):93-8 - PubMed
    1. Adv Microb Physiol. 1973;10:135-266 - PubMed
    1. Appl Microbiol. 1973 Apr;25(4):574-7 - PubMed

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