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Catabolism of coniferyl aldehyde, ferulic acid and p-coumaric acid by Saccharomyces cerevisiae yields less toxic products

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논문

Catabolism of coniferyl aldehyde, ferulic acid and p-coumaric acid by Saccharomyces cerevisiae yields less toxic products

학술지

Microbial cell factories

저자명

Adeboye, Peter Temitope; Bettiga, Maurizio; Aldaeus, Fredrik; Larsson, Per Tomas; Olsson, Lisbeth

초록

<P><B>Background</B></P><P>Lignocellulosic substrates and pulping process streams are of increasing relevance to biorefineries for second generation biofuels and biochemical production. They are known to be rich in sugars and inhibitors such as phenolic compounds, organic acids and furaldehydes. Phenolic compounds are a group of aromatic compounds known to be inhibitory to fermentative organisms. It is known that inhibition of <I>Sacchromyces</I><I>cerevisiae</I> varies among phenolic compounds and the yeast is capable of in situ catabolic conversion and metabolism of some phenolic compounds. In an approach to engineer a <I>S. cerevisiae</I> strain with higher tolerance to phenolic inhibitors, we selectively investigated the metabolic conversion and physiological effects of coniferyl aldehyde, ferulic acid, and p-coumaric acid in <I>Saccharomyces cerevisiae</I>. Aerobic batch cultivations were separately performed with each of the three phenolic compounds. Conversion of each of the phenolic compounds was observed on time-based qualitative analysis of the culture broth to monitor various intermediate and final metabolites.</P><P><B>Result</B></P><P>Coniferyl aldehyde was rapidly converted within the first 24&nbsp;h, while ferulic acid and <I>p</I>-coumaric acid were more slowly converted over a period of 72&nbsp;h. The conversion of the three phenolic compounds was observed to involved several transient intermediates that were concurrently formed and converted to other phenolic products. Although there were several conversion products formed from coniferyl aldehyde, ferulic acid and <I>p</I>-coumaric acid, the conversion products profile from the three compounds were similar. On the physiology of <I>Saccharomyces cerevisiae</I>, the maximum specific growth rates of the yeast was not affected in the presence of coniferyl aldehyde or ferulic acid, but it was significantly reduced in the presence of <I>p</I>-coumaric acid. The biomass yields on glucose were reduced to 73 and 54&nbsp;% of the control in the presence of coniferyl aldehyde and ferulic acid, respectively, biomass yield increased to 127&nbsp;% of the control in the presence of <I>p</I>-coumaric acid. Coniferyl aldehyde, ferulic acid and <I>p</I>-coumaric acid and their conversion products were screened for inhibition, the conversion products were less inhibitory than coniferyl aldehyde, ferulic acid and <I>p</I>-coumaric acid, indicating that the conversion of the three compounds by <I>Saccharomyces cerevisiae</I> was also a detoxification process.</P><P><B>Conclusion</B></P><P>We conclude that the conversion of coniferyl aldehyde, ferulic acid and p-coumaric acid into less inhibitory compounds is a form of stress response and a detoxification process. We hypothesize that all phenolic compounds are converted by <I>Saccharomyces cerevisiae</I> using the same metabolic process. We suggest that the enhancement of the ability of <I>S. cerevisiae</I> to convert toxic phenolic compounds into less inhibitory compounds is a potent route to developing a <I>S. cerevisiae</I> with superior tolerance to phenolic compounds.</P>

발행연도

2015

발행기관

BioMed Central

라이선스

cc-by

ISSN

1475-2859

14

페이지

pp.149

주제어

Biorefinery; Phenolic compounds; Conversion; Coniferyl aldehyde; Ferulic acid; p-Coumaric acid

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논문; 2015-09-21

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