Ouattara Honoré G, Reverchon Sylvie, Niamke Sébastien L, Nasser William
Laboratoire de Biotechnologies, UFR Biosciences, Université Félix Houphouet-Boigny Abidjan, 22 bp 582 Abidjan, Cote d'Ivoire; Univ Lyon, Université Lyon 1, INSA de Lyon, CNRS, UMR5240, Microbiologie, Adaptation et Pathogénie, 10 rue Raphaël Dubois, F-69622 Villeurbanne, France.
Univ Lyon, Université Lyon 1, INSA de Lyon, CNRS, UMR5240, Microbiologie, Adaptation et Pathogénie, 10 rue Raphaël Dubois, F-69622 Villeurbanne, France.
Food Microbiol. 2017 May;63:255-262. doi: 10.1016/j.fm.2016.12.004. Epub 2016 Dec 13.
Pectin degrading enzymes are essential for quality of product from cocoa fermentation. Previously, we studied purified pectate lyases (Pel) produced by Bacillus strains from fermenting cocoa and characterized the cloned pel genes. This study aims to search for biological signals that modulates Pel production and regulators that influence pel gene expression. Strains were grown to the end of exponential phase in media containing various carbon sources. Pel enzymes production in Bacillus was unaffected by simple sugar content variation up to 2%. Additionally, it appeared that pel gene is not under the control of the most common carbon and pectin catabolism regulators ccpA and kdgR, which could explain the insensitivity of Pel production to carbon source variation. However, a 6-fold decrease in Pel production was observed when bacteria were grown in LB rich medium as opposed to basal mineral medium. Subsequently, bioinformatics analysis of cloned pel gene promoter region revealed the presence of DegU binding site. Furthermore, the deletion of degU gene dramatically reduces the pel gene expression, as revealed by real time quantitative PCR, showing an activation effect of DegU on Pel synthesis in Bacillus strains studied. We assumed that, during the latter stage of cocoa fermentation when simple sugars are depleted, production of Pel in Bacillus is stimulated by DegU to supply microbial cells with carbon source from polymeric pectic compounds.
果胶降解酶对于可可发酵产品的品质至关重要。此前,我们研究了从发酵可可中分离出的芽孢杆菌菌株所产生的纯化果胶酸裂解酶(Pel),并对克隆的pel基因进行了表征。本研究旨在寻找调节Pel产生的生物信号以及影响pel基因表达的调控因子。将菌株在含有各种碳源的培养基中培养至指数期末期。芽孢杆菌中Pel酶的产生不受高达2%的单糖含量变化的影响。此外,pel基因似乎不受最常见的碳和果胶分解代谢调节因子ccpA和kdgR的控制,这可以解释Pel产生对碳源变化的不敏感性。然而,与基础矿物培养基相比,当细菌在富含LB的培养基中生长时,观察到Pel产量下降了6倍。随后,对克隆的pel基因启动子区域的生物信息学分析揭示了DegU结合位点的存在。此外,实时定量PCR显示,degU基因的缺失显著降低了pel基因的表达,表明DegU对所研究的芽孢杆菌菌株中Pel的合成具有激活作用。我们推测,在可可发酵后期,当单糖耗尽时,DegU会刺激芽孢杆菌中Pel的产生,以便从聚合果胶化合物中为微生物细胞提供碳源。