Ben Khedher Saoussen, Jaoua Samir, Zouari Nabil
Team of Biopesticides, Centre of Biotechnology of Sfax, University of Sfax, Sfax, Tunisia.
Team of Biopesticides, Centre of Biotechnology of Sfax, University of Sfax, Sfax, Tunisia. ; Biological and Environmental Sciences Department, College of Arts and Sciences, Qatar University, Doha, Qatar.
Braz J Microbiol. 2014 Jan 15;44(3):927-33. doi: 10.1590/s1517-83822013000300043. eCollection 2013.
In order to overproduce bioinsecticides production by a sporeless Bacillus thuringiensis strain, an optimal composition of a cheap medium was defined using a response surface methodology. In a first step, a Plackett-Burman design used to evaluate the effects of eight medium components on delta-endotoxin production showed that starch, soya bean and sodium chloride exhibited significant effects on bioinsecticides production. In a second step, these parameters were selected for further optimisation by central composite design. The obtained results revealed that the optimum culture medium for delta-endotoxin production consists of 30 g L(-1) starch, 30 g L(-1) soya bean and 9 g L(-1) sodium chloride. When compared to the basal production medium, an improvement in delta-endotoxin production up to 50% was noted. Moreover, relative toxin yield of sporeless Bacillus thuringiensis S22 was improved markedly by using optimised cheap medium (148.5 mg delta-endotoxins per g starch) when compared to the yield obtained in the basal medium (94.46 mg delta-endotoxins per g starch). Therefore, the use of optimised culture cheap medium appeared to be a good alternative for a low cost production of sporeless Bacillus thuringiensis bioinsecticides at industrial scale which is of great importance in practical point of view.
为了通过无芽孢苏云金芽孢杆菌菌株过量生产生物杀虫剂,采用响应面法确定了一种廉价培养基的最佳组成。第一步,使用Plackett-Burman设计评估八种培养基成分对δ-内毒素产生的影响,结果表明淀粉、大豆和氯化钠对生物杀虫剂的产生具有显著影响。第二步,选择这些参数通过中心复合设计进行进一步优化。所得结果表明,用于δ-内毒素生产的最佳培养基由30 g L(-1)淀粉、30 g L(-1)大豆和9 g L(-1)氯化钠组成。与基础生产培养基相比,δ-内毒素产量提高了50%。此外,与在基础培养基中获得的产量(每克淀粉94.46 mg δ-内毒素)相比,使用优化的廉价培养基时无芽孢苏云金芽孢杆菌S22的相对毒素产量显著提高(每克淀粉148.5 mg δ-内毒素)。因此,从实际角度来看,使用优化的廉价培养基似乎是在工业规模上低成本生产无芽孢苏云金芽孢杆菌生物杀虫剂的一个很好的选择,这具有重要意义。