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Comparison of mcl-Poly(3-hydroxyalkanoates) synthesis by different Pseudomonas putida strains from crude glycerol: citrate accumulates at high titer under PHA-producing conditions

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    • 바이오플라스틱
      1. 고무
      2. 플라스틱
    • 바이오정밀화학
      1. 화학제품
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
논문

Comparison of mcl-Poly(3-hydroxyalkanoates) synthesis by different Pseudomonas putida strains from crude glycerol: citrate accumulates at high titer under PHA-producing conditions

학술지

BMC biotechnology

저자명

Poblete-Castro, Ignacio; Binger, Danielle; Oehlert, Rene; Rohde, Manfred

초록

<P><B>Background</B></P><P>Achieving a sustainable society requires, among other things, the use of renewable feedstocks to replace chemicals obtained from petroleum-derived compounds. Crude glycerol synthesized inexpensively as a byproduct of biodiesel production is currently considered a waste product, which can potentially be converted into value-added compounds by bacterial fermentation. This study aimed at evaluating several characterized <I>P. putida</I> strains to produce medium-chain-length poly(3-hydroxyalkanoates) (mcl-PHA) using raw glycerol as the only carbon/energy source.</P><P><B>Results</B></P><P>Among all tested strains<I>, P. putida</I> KT2440 most efficiently synthesized mcl-PHA under nitrogen-limiting conditions, amassing more than 34% of its cell dry weight as PHA. Disruption of the PHA depolymerase gene (<I>phaZ</I>) in <I>P. putida</I> KT2440 enhanced the biopolymer titer up to 47% PHA (%wt/wt). The low biomass and PHA titer found in the mutant strain and the wild-type strain KT2440 seems to be triggered by the high production of the side-product citrate during the fermentation process which shows a high yield of 0.6&nbsp;g/g.</P><P><B>Conclusions</B></P><P>Overall, this work demonstrates the importance of choosing an appropriate microbe for the synthesis of mcl-PHA from waste materials, and a close inspection of the cell metabolism in order to identify undesired compounds that diminish the availability of precursors in the synthesis of biopolymers such as polyhydroxyalkanoates. Future metabolic engineering works should focus on reducing the production of citrate in order to modulate resource allocation in the cell’s metabolism of <I>P. putida</I>, and finally increase the biopolymer production.</P>

발행연도

2014

발행기관

BioMed Central

라이선스

cc-by

ISSN

1472-6750

14

페이지

pp.962

주제어

Pseudomonas putida strains; mcl-polyhydroxyalkanoates; Raw glycerol; PHA depolymerase; Metabolic engineering; Citrate

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논문; 2014-12-01

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