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High-level production of the industrial product lycopene by the photosynthetic bacterium Rhodospirillum rubrum

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논문

High-level production of the industrial product lycopene by the photosynthetic bacterium Rhodospirillum rubrum

학술지

Applied and environmental microbiology

저자명

Wang, Guo-Shu; Grammel, Hartmut; Abou-Aisha, Khaled; Sä gesser, Rudolf; Ghosh, Robin

초록

<P><B>ABSTRACT</B><P> The biosynthesis of the major carotenoid spirilloxanthin by the purple nonsulfur bacterium Rhodospirillum rubrum is thought to occur via a linear pathway proceeding through phytoene and, later, lycopene as intermediates. This assumption is based solely on early chemical evidence (B. H. Davies, Biochem. J. 116:93-99, 1970). In most purple bacteria, the desaturation of phytoene, catalyzed by the enzyme phytoene desaturase (CrtI), leads to neurosporene, involving only three dehydrogenation steps and not four as in the case of lycopene. We show here that the chromosomal insertion of a kanamycin resistance cassette into the <I>crtC-crtD</I> region of the partial carotenoid gene cluster, whose gene products are responsible for the downstream processing of lycopene, leads to the accumulation of the latter as the major carotenoid. We provide spectroscopic and biochemical evidence that <I>in vivo</I> , lycopene is incorporated into the light-harvesting complex 1 as efficiently as the methoxylated carotenoids spirilloxanthin (in the wild type) and 3,4,3&prime;,4&prime;-tetrahydrospirilloxanthin (in a <I>crtD</I> mutant), both under semiaerobic, chemoheterotrophic, and photosynthetic, anaerobic conditions. Quantitative growth experiments conducted in dark, semiaerobic conditions, using a growth medium for high cell density and high intracellular membrane levels, which are suitable for the conventional industrial production in the absence of light, yielded lycopene at up to 2 mg/g (dry weight) of cells or up to 15 mg/liter of culture. These values are comparable to those of many previously described Escherichia coli strains engineered for lycopene production. This study provides the first genetic proof that the R. rubrum CrtI produces lycopene exclusively as an end product. </P></P>

발행연도

2012

발행기관

American Society for Microbiology

ISSN

0099-2240

ISSN

1098-5336

78

20

페이지

pp.7205-7215

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1 2023-12-11

논문; 2012-10-15

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