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Optimization of nutrient-induced germination of Bacillus sporothermodurans spores using response surface methodology
Authors:Chedia Aouadhi  Hélène Simonin  Abderrazak Maaroufi  Slah Mejri
Affiliation:1. Laboratory of Epidemiology and Microbiology, Bacteriology and Biotechnology Development Group, Pasteur Institute of Tunisia (IPT), BP 74, 13 Place Pasteur, Belvédère, 1002 Tunis, Tunisia;2. LUNAM Université, Oniris, UMR 6144, GEPEA, BP 82225, Nantes F-44322 Cedex 3, France;3. CNRS, Nantes F-44322, France;4. Laboratory of Animal Resources and Food, National Institute of Agronomy, Tunis (INAT), 43 Rue Charles Nicole, Cité Mahrajène, Le Belvédère, 1082 Tunis, Tunisia
Abstract:Spores of Bacillus sporothermodurans are known to be contaminant of dairy products and to be extremely heat-resistant. The induction of endospore germination before a heat treatment could be an efficient method to inactivate these bacteria and ensure milk stability. In this study, the nutrient-induced germination of B. sporothermodurans LTIS27 spores was studied. Testing the effect of 23 nutrient elements to trigger an important germination rate of B. sporothermodurans spores, only d-glucose, l-alanine, and inosine were considered as strong independent germinants. Both inosine and l-alanine play major roles as co-germinants with several other amino acids. A central composite experimental design with three factors (l-alanine, d-glucose, and temperature) using response surface methodology was used to optimize the nutrient-induced germination. The optimal rate of nutrient-induced germination (100%) of B. sporothermodurans spores was obtained after incubation of spore for 60 min at 35 °C in presence of 9 and 60 mM of d-glucose and l-alanine, respectively. The results in this study can help to predict the effect of environmental factors and nutrients on spore germination, which will be beneficial for screening of B. sporothermodurans in milk after induction their germination. Moreover, the chosen method of optimization of the nutrient-induced germination was efficient in finding the optimum values of three factors.
Keywords:Bacillus sporothermodurans  Spore germination  Amino acid  Inosine  Germinant  Response surface methodology
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