Scinovex
articleTop 10% cited

Responses of lactic acid bacteria to oxygen

FEMS Microbiology Letters · 1987 · Vol. 46(3) · pp. 269–280
S. Condón

Abstract

A small number of flavoprotein oxidase enzymes are responsible for the direct interaction of lactic acid bacteria (LAB) with oxygen; hydrogen peroxide or water are produced in these reactions. In some cultures exposed to oxygen, hydrogen peroxide accumulates to inhibitory levels. Through these oxidase enzymes and NADH peroxidase, O2 and H2O2 can accept electrons from sugar metabolism, and thus have a sparing effect on the use of metabolic intermediates, such as pyruvate or acetaldehyde, as electron acceptors. Consequently, sugar metabolism in aerated cultures of LAB can be substantially different from that in unaerated cultures. Energy and biomass yields, end-products of sugar metabolism and the range of substrates which can be metabolised are affected. Lactic acid bacteria exhibit an inducible oxidative stress response when exposed to sublethal levels of H2O2. This response protects them if they are subsequently exposed to lethal concentrations of H2O2. The effect appears to be related to other stress responses such as heat-shock and is similar, in some but not all respects, to that previously reported for enteric bacteria.

Probiotics and Fermented FoodsMicrobial Metabolic Engineering and BioproductionMeat and Animal Product QualityLactic acidBacteriaBiochemistryHydrogen peroxideChemistryOxidase testMetabolismSugarPeroxidaseEnzyme
Citations
409
FWCI
12.87
field-weighted impact
References
86
Percentile
99%
vs. same field & year
Citations per year
Cited by
Antifungal lactic acid bacteria as biopreservatives
Trends in Food Science & Technology · 2005 · 683 citations
Silage review: Factors affecting dry matter and quality losses in silages
Journal of Dairy Science · 2018 · 744 citations
Preservation and fermentation: past, present and future
International Journal of Food Microbiology · 2002 · 924 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Responses of lactic acid bacteria to oxygen · Scinovex