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    Home > Biochemistry News > Microbiology News > Isolation, Characterization, and Diversity of Novel Radiotolerant Carotenoid-Producing Bacteria

    Isolation, Characterization, and Diversity of Novel Radiotolerant Carotenoid-Producing Bacteria

    • Last Update: 2021-01-30
    • Source: Internet
    • Author: User
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    Carotenoids are natural pigments that exhibit many biological functions, such as antioxidants (i.e., promote oxidative stress resistance), membrane stabilizers, and precursors for vitamin A. The link between these biological activities and many health benefits (e.g., anticarcinogenic activity, prevention of chronic diseases, etc.) has raised the interest of several industrial sectors, especially in the cosmetics and pharmaceutical industries. The use of microorganisms in biotechnology to produce carotenoids is favorable by consumer and can help meet the growing demand for these bioactive compounds in the food, feed, and pharmaceutical industries. This methodological chapter details the development of a rapid and selective screening method for isolation and identification of carotenoid-producing microorganisms based on UV treatment, sequencing analysis of 16S rRNA genes, and carotenoids’ analysis using rapid and effective High-Performance Liquid Chromatography–Diodearray–MS methods. The results of a comprehensive 16S rRNA gene-based phylogenetic analysis revealed a diversity of carotenoid-producing microorganisms (104 isolates) that were isolated at a high frequency from water samples collected at Misasa (Tottori, Japan), a region known for its high natural radioactivity content. These carotenoid-producing isolates were classified into 38 different species belonging to 7 bacterial classes (
    Flavobacteria
    ,
    Sphingobacteria
    ,
    α
    -
    Proteobacteria
    ,
    γ
    -
    Proteobacteria
    ,
    Deinococci
    ,
    Actinobacteria
    , and
    Bacilli
    ). The carotenoids produced by the isolates were zeaxanthin (6 strains), dihydroxyastaxanthin (24 strains), astaxanthin (27 strains), canthaxanthin (10 strains), and unidentified molecular species that were produced by the isolates related to
    Deinococcus
    ,
    Exiguobacterium
    , and
    Flectobacillus
    . Here, we describe the methods used to isolate and classify these microorganisms.
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