Rojas Natalia L, Lewkowicz Elizabeth S, Nobile Matias L
a Universidad Nacional de Quilmes , CONICET, Departamento de Ciencia y Tecnología, IMBA , Quilmes , Argentina.
b Universidad Nacional de Quilmes , CONICET, Departamento de Ciencia y Tecnología, LBB , Quilmes , Argentina.
J Environ Sci Health B. 2018;53(11):719-728. doi: 10.1080/03601234.2018.1480156. Epub 2018 Jun 5.
An industrial-scale, profitable method for production of the most widely used bioinsecticide, Bacillus thuringiensis (Bt), is challenging because of its widespread application. The aim of this study is to present a strategy to develop a low-cost, large-scale bioprocess to produce Bt H14. This study was first focused on the design of a culture medium composed of economical and available components, such as glycerol and lysed Saccharomyces cerevisiae. The production goal of 1200 ITU was achieved using a medium composed of 20:20 g Lof glycerol:lysed yeast in batch cultures. Efforts were subsequently focused on the design of an appropriate culture system, and an original two-stage culture system was proposed. First, yeast (the primary component of the culture medium) are cultivated using a minimal mineral medium and lysed, and in the second stage, Bt is cultivated in the same bioreactor using the lysed yeasts as culture medium (supplemented with a feeding pulse of 10 g L glycerol). This system was called fed batch one pot (FOP). A new inoculation strategy is also presented in this study, since these Bt cultures were inoculated directly with heat pre-treated spores instead of vegetative bacteria to facilitate the bioprocess. This study was developed from the laboratory to production-scale bioreactors (measuring from 500 mL to 2500 L), and the efficiency of the proposed strategy was evident in LD tests results, achieving 1796 ITU in large-scale processes. Both the use of non-conventional sources and the process development for biomass production are important for cost-effective production of Bt-based insecticides in mosquito control projects.
由于其广泛应用,一种工业化规模、可盈利的生产最广泛使用的生物杀虫剂苏云金芽孢杆菌(Bt)的方法具有挑战性。本研究的目的是提出一种策略,以开发一种低成本、大规模的生物工艺来生产Bt H14。本研究首先专注于设计一种由经济且可得的成分组成的培养基,如甘油和裂解的酿酒酵母。在分批培养中,使用由20:20 g/L甘油:裂解酵母组成的培养基实现了1200国际单位(ITU)的生产目标。随后,工作重点转向设计合适的培养系统,并提出了一种原始的两阶段培养系统。首先,使用基本矿物培养基培养酵母(培养基的主要成分)并进行裂解,在第二阶段,在同一生物反应器中使用裂解的酵母作为培养基(补充10 g/L甘油的进料脉冲)培养Bt。该系统被称为补料分批一锅法(FOP)。本研究还提出了一种新的接种策略,因为这些Bt培养物直接用热预处理的孢子而不是营养细菌接种,以促进生物工艺。本研究从实验室规模发展到生产规模的生物反应器(体积从500 mL到2500 L),所提出策略的效率在LD测试结果中很明显,在大规模工艺中达到了1796 ITU。在蚊虫控制项目中,使用非常规来源以及生物质生产的工艺开发对于基于Bt的杀虫剂的经济高效生产都很重要。