TY - JOUR
T1 - Knockout of three-component regulatory systems reveals that the apparently constitutive plantaricin-production phenotype shown by Lactobacillus plantarum on solid medium is regulated via quorum sensing
AU - Maldonado-Barragan, Antonio
AU - Luis Ruiz-Barba, Jose
AU - Jimenez-Diaz, Rufino
PY - 2009/3/15
Y1 - 2009/3/15
N2 - It has been found that many bacteriocins from lactic acid bacteria (LAB) are only produced in broth cultures when specific growth conditions are achieved and a dedicated three-component regulatory system, involved in a quorum sensing (QS) mechanism, is switched on. Surprisingly, bacteriocin production in LAB occurs in an apparently constitutive manner on solid media. This study addresses the question of constitutive versus regulated bacteriocin production on solid media in two different QS-regulated plantaricin-producing strains: Lactobacillus plantarum NC8 and L plantarum WCFS1. Construction of knockout mutants for their respective regulatory operons revealed that bacteriocin production is controlled through a QS mechanism in both strains, on solid as well as in liquid media. These results could be extensible to other bacteriocins from LAB which are only produced on agar plates and not in broth cultures. Our findings suggest that QS-regulated bacteriocin production in LAB has evolved for competing on solid supports rather than in liquid media. In practice, this could be of major importance in vegetable fermentations, where the solid substrate itself provides an enormous surface where bacteria can attach to and produce biofilms. Therefore. QS-regulated bacteriocinogenic LAB growing in biofilms are under the optimum conditions to produce bacteriocins. Selection of strains to be used as starter cultures for vegetable fermentations should take into account these facts. (C) 2009 Elsevier B.V. All rights reserved.
AB - It has been found that many bacteriocins from lactic acid bacteria (LAB) are only produced in broth cultures when specific growth conditions are achieved and a dedicated three-component regulatory system, involved in a quorum sensing (QS) mechanism, is switched on. Surprisingly, bacteriocin production in LAB occurs in an apparently constitutive manner on solid media. This study addresses the question of constitutive versus regulated bacteriocin production on solid media in two different QS-regulated plantaricin-producing strains: Lactobacillus plantarum NC8 and L plantarum WCFS1. Construction of knockout mutants for their respective regulatory operons revealed that bacteriocin production is controlled through a QS mechanism in both strains, on solid as well as in liquid media. These results could be extensible to other bacteriocins from LAB which are only produced on agar plates and not in broth cultures. Our findings suggest that QS-regulated bacteriocin production in LAB has evolved for competing on solid supports rather than in liquid media. In practice, this could be of major importance in vegetable fermentations, where the solid substrate itself provides an enormous surface where bacteria can attach to and produce biofilms. Therefore. QS-regulated bacteriocinogenic LAB growing in biofilms are under the optimum conditions to produce bacteriocins. Selection of strains to be used as starter cultures for vegetable fermentations should take into account these facts. (C) 2009 Elsevier B.V. All rights reserved.
KW - Autoinduction
KW - Bacteriocin
KW - Induction
KW - Quorum sensing
KW - Plantaricin
KW - Knockout
KW - Vegetable fermentations
KW - GRAM-POSITIVE BACTERIA
KW - CARNOBACTERIUM-PISCICOLA LV17B
KW - LACTIC-ACID BACTERIA
KW - LACTACIN-B
KW - PEPTIDE
KW - PURIFICATION
KW - IMMUNITY
KW - INDUCTION
KW - SEQUENCE
KW - LPCO10
UR - https://www.scopus.com/pages/publications/59749086840
U2 - 10.1016/j.ijfoodmicro.2008.12.033
DO - 10.1016/j.ijfoodmicro.2008.12.033
M3 - Article
SN - 0168-1605
VL - 130
SP - 35
EP - 42
JO - International Journal of Food Microbiology
JF - International Journal of Food Microbiology
IS - 1
ER -