Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates

Bacillus subtilis releases a broad range of volatile secondary metabolites, which are considered as long- and short distance infochemical signals mediating inter- and intra-specific processes. In addition, they often show antimicrobial or antifungal activities. This review attempts to summarize yet...

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Main Author: Marco Kai
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-04-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmicb.2020.00559/full
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author Marco Kai
author_facet Marco Kai
author_sort Marco Kai
collection DOAJ
description Bacillus subtilis releases a broad range of volatile secondary metabolites, which are considered as long- and short distance infochemical signals mediating inter- and intra-specific processes. In addition, they often show antimicrobial or antifungal activities. This review attempts to summarize yet known volatile secondary metabolites produced and emitted by Bacillus subtilis isolates focusing on the structural diversity and distribution patterns. Using in vitro volatile-collection systems, 26 strains of B. subtilis isolated from different habitats were found to produce in total 231 volatile secondary metabolites. These volatile secondary metabolites comprised mainly hydrocarbons, ketones, alcohols, aldehydes, ester, acids, aromatics, sulfur- and nitrogen-containing compounds. Reviewed data revealed to a great extent isolate-specific emission patterns. The production and release of several volatile bioactive compounds was retained in isolates of the species B. subtilis, while volatiles without a described function seemed to be isolate-specifically produced. Detailed analysis, however, also indicated that the original data were strongly influenced by insufficient descriptions of the bacterial isolates, heterogeneous and poorly documented culture conditions as well as sampling techniques and inadequate compound identification. In order to get deeper insight into the nature, diversity, and ecological function of volatile secondary metabolites produced by B. subtilis, it will be necessary to follow well-documented workflows and fulfill state-of-the-art standards to unambiguously identify the volatile metabolites. Future research should consider the dynamic of a bacterial culture leading to differences in cell morphology and cell development. Single cell investigations could help to attribute certain volatile metabolites to defined cell forms and developmental stages.
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spelling doaj.art-765b2291daf04a7e986ff05d313291512022-12-22T03:41:05ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2020-04-011110.3389/fmicb.2020.00559478645Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis IsolatesMarco KaiBacillus subtilis releases a broad range of volatile secondary metabolites, which are considered as long- and short distance infochemical signals mediating inter- and intra-specific processes. In addition, they often show antimicrobial or antifungal activities. This review attempts to summarize yet known volatile secondary metabolites produced and emitted by Bacillus subtilis isolates focusing on the structural diversity and distribution patterns. Using in vitro volatile-collection systems, 26 strains of B. subtilis isolated from different habitats were found to produce in total 231 volatile secondary metabolites. These volatile secondary metabolites comprised mainly hydrocarbons, ketones, alcohols, aldehydes, ester, acids, aromatics, sulfur- and nitrogen-containing compounds. Reviewed data revealed to a great extent isolate-specific emission patterns. The production and release of several volatile bioactive compounds was retained in isolates of the species B. subtilis, while volatiles without a described function seemed to be isolate-specifically produced. Detailed analysis, however, also indicated that the original data were strongly influenced by insufficient descriptions of the bacterial isolates, heterogeneous and poorly documented culture conditions as well as sampling techniques and inadequate compound identification. In order to get deeper insight into the nature, diversity, and ecological function of volatile secondary metabolites produced by B. subtilis, it will be necessary to follow well-documented workflows and fulfill state-of-the-art standards to unambiguously identify the volatile metabolites. Future research should consider the dynamic of a bacterial culture leading to differences in cell morphology and cell development. Single cell investigations could help to attribute certain volatile metabolites to defined cell forms and developmental stages.https://www.frontiersin.org/article/10.3389/fmicb.2020.00559/fullvolatilesVOCssecondary metabolitesBacillus subtilisGC/MSGC/EI-MS
spellingShingle Marco Kai
Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates
Frontiers in Microbiology
volatiles
VOCs
secondary metabolites
Bacillus subtilis
GC/MS
GC/EI-MS
title Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates
title_full Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates
title_fullStr Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates
title_full_unstemmed Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates
title_short Diversity and Distribution of Volatile Secondary Metabolites Throughout Bacillus subtilis Isolates
title_sort diversity and distribution of volatile secondary metabolites throughout bacillus subtilis isolates
topic volatiles
VOCs
secondary metabolites
Bacillus subtilis
GC/MS
GC/EI-MS
url https://www.frontiersin.org/article/10.3389/fmicb.2020.00559/full
work_keys_str_mv AT marcokai diversityanddistributionofvolatilesecondarymetabolitesthroughoutbacillussubtilisisolates