Literature DB >> 33413399

Whole genome sequencing and metabolomics analyses reveal the biosynthesis of nerol in a multi-stress-tolerant Meyerozyma guilliermondii GXDK6.

Xueyan Mo1, Xinghua Cai1, Qinyan Hui1, Huijie Sun1, Ran Yu1, Ru Bu1, Bing Yan2, Qian Ou1, Quanwen Li1, Sheng He3, Chengjian Jiang4,5.   

Abstract

BACKGROUND: Nerol (C10H18O), an acyclic monoterpene, naturally presents in plant essential oils, and is used widely in food, cosmetics and pharmaceuticals as the valuable fragrance. Meanwhile, chemical synthesis is the only strategy for large-scale production of nerol, and the disadvantages of chemical synthesis greatly limit the production and its application. These defects drive the interests of researchers shift to the production of nerol by eco-friendly methods known as biosynthesis methods. However, the main technical bottleneck restricting the biosynthesis of nerol is the lacking of corresponding natural aroma-producing microorganisms.
RESULTS: In this study, a novel multi-stress-tolerant probiotics Meyerozyma guilliermondii GXDK6 with aroma-producing properties was identified by whole genome sequencing and metabolomics technology. GXDK6 showed a broad pH tolerance in the range of 2.5-10.0. The species also showed salt tolerance with up to 12% NaCl and up to 18% of KCl or MgCl2. GXDK6 exhibited heavy-metal Mn2+ tolerance of up to 5494 ppm. GXDK6 could also ferment with a total of 21 kinds of single organic matter as the carbon source, and produce abundant aromatic metabolites. Results from the gas chromatography-mass spectrometry indicated the production of 8-14 types of aromatic metabolites (isopentanol, nerol, geraniol, phenylethanol, isobutanol, etc.) when GXDK6 was fermented up to 72 h with glucose, sucrose, fructose, or xylose as the single carbon source. Among them, nerol was found to be a novel aromatic metabolite from GXDK6 fermentation, and its biosynthesis mechanism had also been further revealed.
CONCLUSION: A novel aroma-producing M. guilliermondii GXDK6 was identified successfully by whole genome sequencing and metabolomics technology. GXDK6 showed high multi-stress-tolerant properties with acid-base, salty, and heavy-metal environments. The aroma-producing mechanism of nerol in GXDK6 had also been revealed. These findings indicated the aroma-producing M. guilliermondii GXDK6 with multi-stress-tolerant properties has great potential value in the fermentation industry.

Entities:  

Keywords:  Aroma-producing mechanism; Biosynthesis; Metabolomics technology; Meyerozyma guilliermondii; Whole genome sequencing

Year:  2021        PMID: 33413399      PMCID: PMC7789178          DOI: 10.1186/s12934-020-01490-2

Source DB:  PubMed          Journal:  Microb Cell Fact        ISSN: 1475-2859            Impact factor:   5.328


  34 in total

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Journal:  Nature       Date:  2005-07-31       Impact factor: 49.962

2.  Biosynthesis of nerol from glucose in the metabolic engineered Escherichia coli.

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Journal:  Bioresour Technol       Date:  2019-05-02       Impact factor: 9.642

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Journal:  Ecol Lett       Date:  2013-03-03       Impact factor: 9.492

4.  Antifungal activity of Meyerozyma guilliermondii: identification of active compounds synthesized during dough fermentation and their effect on long-term storage of wheat bread.

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Journal:  Food Microbiol       Date:  2012-10-18       Impact factor: 5.516

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7.  Isolation and identification of aroma producing strain with esterification capacity from yellow water.

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Journal:  PLoS One       Date:  2019-02-14       Impact factor: 3.240

8.  REAPR: a universal tool for genome assembly evaluation.

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Journal:  Genome Biol       Date:  2013-05-27       Impact factor: 13.583

9.  Microbiological Characteristics of Wild Yeast Strain Pichia anomala Y197-13 for Brewing Makgeolli.

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Journal:  Mycobiology       Date:  2013-09-30       Impact factor: 1.858

10.  Linalool isomerase, a membrane-anchored enzyme in the anaerobic monoterpene degradation in Thauera linaloolentis 47Lol.

Authors:  Robert Marmulla; Barbara Šafarić; Stephanie Markert; Thomas Schweder; Jens Harder
Journal:  BMC Biochem       Date:  2016-03-15       Impact factor: 4.059

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3.  Multi-Omics Analysis of Lipid Metabolism for a Marine Probiotic Meyerozyma guilliermondii GXDK6 Under High NaCl Stress.

Authors:  Huijie Sun; Xinghua Cai; Bing Yan; Huashan Bai; Duotao Meng; Xueyan Mo; Sheng He; Guijiao Su; Chengjian Jiang
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