Secondary metabolite production and the safety of industrially important members of the Bacillus subtilis group
Продукция вторичных метаболитов и безопасность промышленно значимых представителей группы Bacillus subtilis
2018-07-17
SCID: 54.1/kadx6nfr
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Bacillus subtilis groupgenome-based biosynthetic gene clustersnon-ribosomally synthesized peptidespolyketidessecondary metabolites
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Abstract (AI)
Members of the 'Bacillus subtilis group' include some of the most commercially important bacteria, used for the production of a wide range of industrial enzymes and fine biochemicals. Increasingly, group members have been developed for use as animal feed enhancers and antifungal biocontrol agents. The group has long been recognised to produce a range of secondary metabolites and, despite their long history of safe usage, this has resulted in an increased focus on their safety. Traditional methods used to detect the production of secondary metabolites and other potentially harmful compounds have relied on phenotypic tests. Such approaches are time consuming and, in some cases, lack specificity. Nowadays, accessibility to genome data and associated bioinformatical tools provides a powerful means for identifying gene clusters associated with the synthesis of secondary metabolites. This review focuses primarily on well-characterised strains of B. subtilis and B. licheniformis and their synthesis of non-ribosomally synthesised peptides and polyketides. Where known, the activities and toxicities of their secondary metabolites are discussed, together with the limitations of assays currently used to assess their toxicity. Finally, the regulatory framework under which such strains are authorised for use in the production of food and feed enzymes is also reviewed.
Key Findings
1
Bacillus subtilis group members produce diverse secondary metabolites, including non-ribosomally synthesized peptides and polyketides.
2
Despite extensive safe use, secondary-metabolite production has increased safety scrutiny of these industrially important bacteria.
3
Genome sequencing and bioinformatic analysis can identify secondary-metabolite biosynthetic gene clusters more efficiently and specifically than traditional phenotypic assays.
4
Regulatory frameworks governing authorization of these strains for food- and feed-enzyme production are reviewed.
5
The review evaluates characterized B. subtilis and B. licheniformis strains, addressing known metabolite activities, toxicities, and limitations of current toxicity assays.
Research Object
Industrially important members of the Bacillus subtilis group, particularly characterized strains of B. subtilis and B. licheniformis
Research Subject
Secondary metabolite production, associated activities and toxicities, and safety assessment and regulatory authorization of these bacterial strains
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2018-07-17
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