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Sorbitol required for cell growth and ethanol production by Zymomonas mobilis under heat, ethanol, and osmotic stresses

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      1. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
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논문

Sorbitol required for cell growth and ethanol production by Zymomonas mobilis under heat, ethanol, and osmotic stresses

학술지

Biotechnology for biofuels

저자명

Sootsuwan, Kaewta; Thanonkeo, Pornthap; Keeratirakha, Nawapote; Thanonkeo, Sudarat; Jaisil, Prasit; Yamada, Mamoru

초록

<P><B>Background</B></P><P>During ethanol fermentation, the ethanologenic bacterium, <I>Zymomonas mobilis</I> may encounter several environmental stresses such as heat, ethanol and osmotic stresses due to high sugar concentration. Although supplementation of the compatible solute sorbitol into culture medium enhances cell growth of <I>Z. mobilis</I> under osmotic stress, the protective function of this compound on cell growth and ethanol production by this organism under other stresses such as heat and ethanol has not been described yet. The formation of sorbitol in <I>Z. mobilis</I> was carried out by the action of the glucose-fructose oxidoreductase (GFOR) enzyme which is regulated by the <I>gfo</I> gene. Therefore, the <I>gfo</I> gene in <I>Z. mobilis</I> was disrupted by the fusion-PCR-based construction technique in the present study, and the protective function of sorbitol on cell growth, protein synthesis and ethanol production by <I>Z. mobilis</I> under heat, ethanol, and osmotic stresses was investigated.</P><P><B>Results</B></P><P>Based on the fusion-PCR-based construction technique, the <I>gfo</I> gene in <I>Z. mobilis</I> was disrupted. Disruption of the <I>Z. mobilis gfo</I> gene resulted in the reduction of cell growth and ethanol production not only under osmotic stress but also under heat and ethanol stresses. Under these stress conditions, the transcription level of <I>pdc</I>, <I>adhA</I>, and <I>adhB</I> genes involved in the pyruvate-to-ethanol (PE) pathway as well as the synthesis of proteins particularly in <I>Z. mobilis</I> disruptant strain were decreased compared to those of the parent. These findings suggest that sorbitol plays a crucial role not only on cell growth and ethanol production but also on the protection of cellular proteins from stress responses.</P><P><B>Conclusion</B></P><P>We showed for the first time that supplementation of the compatible solute sorbitol not only promoted cell growth but also increased the ethanol fermentation capability of <I>Z. mobilis</I> under heat, ethanol, and osmotic stresses. Although the molecular mechanism involved in tolerance to stress conditions after sorbitol supplementation is still unclear, this research has provided useful information for the development of the effective ethanol fermentation process particularly under environmental conditions with high temperature or high ethanol and sugar concentration conditions.</P>

발행연도

2013

발행기관

BioMed Central

라이선스

cc-by

ISSN

1754-6834

6

페이지

pp.180-180

주제어

Zymomonas mobilis; Glucose-fructose oxidoreductase; Ethanol production; Heat stress; Ethanol stress; Osmotic stress; Fusion-PCR-based construction technique

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논문; 2013-12-01

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