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Synthesizing value-added products from methane by a new Methylomonas

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논문

Synthesizing value-added products from methane by a new Methylomonas

학술지

Journal of applied microbiology

저자명

Guo, W.; Li, D.; He, R.; Wu, M.; Chen, W.; Gao, F.; Zhang, Z.; Yao, Y.; Yu, L.; Chen, S.

초록

<P><B>Abstract</B></P><P><B>Aims</B></P><P>Methane and methanol are potential carbon sources of industrial micro&#8208;organisms in addition to crop&#8208;derived bio&#8208;carbon sources. Methanotrophs that can utilize these simple, stable and large amounts chemicals are expected to be developed into &lsquo;cell factories&rsquo; for the production of specific chemicals. In this study, a methanotroph that can synthesize lycopene, C<SUB>30</SUB> carotenoid and exopolysaccharides (EPS) with relative better performances from C1 substrates was isolated, and its performances were evaluated.</P><P><B>Methods and Results</B></P><P>The isolated strain was identified as <I>Methylomonas</I> sp. ZR1 based on 16S rRNA sequence analysis. Its maximum specific growth rate achieved 0&middot;200 h<SUP>&minus;1</SUP> under flask culture conditions, and 0&middot;386 h<SUP>&minus;1</SUP> in bubble column reactors. ZR1 was able to utilize 35 g l<SUP>&minus;1</SUP> of methanol and even exhibited slight growth in the presence of 40 g l<SUP>&minus;1</SUP> of methanol. Furthermore, ZR1 was proved to synthesize lycopene (C<SUB>40</SUB> carotenoids) besides the C<SUB>30</SUB> carotenoids through HPLC&#8208;DAD and HPLC&#8208;MS/MS analysis methods. Its carotenoid extracts exhibited excellent antioxidative activities measured by the ABTS<SUP>+</SUP> method. Plenty of polysaccharides were also synthesized by ZR1, the components of the polysaccharides were identified as glucose, mannose and galactose with a proportion of 1 : 2 : 1 by GC&#8208;MS, and its yield achieved 0&middot;13 g g<SUP>&minus;1</SUP> cell dry weight.</P><P><B>Conclusions</B></P><P>The isolated strain has great potential for the production of value&#8208;added bioproducts from C1 compounds because of its excellent C1 substrate utilizing abilities and its abilities to naturally synthesize lycopene, C<SUB>30</SUB> carotenoids and EPS.</P><P><B>Significance and Impact of the Study</B></P><P>In this study, we isolated a fast&#8208;growing methanotroph, its C1 carbon substrate utilizing ability is excellent in comparison with reported methanotrophs. Furthermore, besides polysaccharides and C<SUB>30</SUB> carotenoids which were commonly synthesized by methanotrophs, our findings suggested that C<SUB>40</SUB> lycopene could also be naturally synthesized from methane by methanotrophs.</P>

발행연도

2017

ISSN

1364-5072

ISSN

1365-2672

123

5

페이지

pp.1214-1227

주제어

bioproducts; carotenoid; exopolysaccharides; fast growing; lycopene; methane; methanol tolerance; methylomonas

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1 2023-12-11

논문; 2017-12-31

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