Bizzarri M F, Bishop A H, Dinsdale A, Logan N A
School of Science, University of Greenwich, Chatham Maritime, UK.
J Appl Microbiol. 2008 Jan;104(1):60-9. doi: 10.1111/j.1365-2672.2007.03537.x.
To investigate the effect of repeated culture in a rich medium on certain genetic, metabolic, pathogenic and structural characteristics of fresh isolates of Bacillus thuringiensis.
Four strains of B. thuringiensis, which had been isolated in vegetative form from leaf surfaces, were grown for 500 generations in batch culture in a rich medium. One of the strains, S4g, differed from the parent in the following respects: greater cell width; changed plasmid profile; complete loss of ability to produce delta-endotoxins; loss of ability to produce beta-exotoxin and disruption of vip3 gene; radically different fatty acid composition; and altered metabolic activity. Two of the other evolved strains (S1g and S6g) showed differences in fatty acid profiles compared with the parents. Genetic finger-printing showed that there were also mutations in the cry genes of two of the evolved strains (S1g and S2g). The delta-endotoxins of strain S6g were significantly less toxic to the larvae of Pieris brassica compared with those of the parent and it also differed in the plasmid content.
Radical and unpredictable changes can occur in fresh isolates of B. thuringiensis when subjected to growth in the laboratory.
This is the first analysis of a Gram positive and biotechnologically significant bacterium after repeated laboratory culture. It is of great relevance to the biotechnological exploitation of B. thuringiensis that prolonged growth of environmental isolates on laboratory culture media can have profound effects on their structure, genome and virulence determinants.
研究在丰富培养基中反复传代培养对苏云金芽孢杆菌新鲜分离株某些遗传、代谢、致病和结构特征的影响。
从叶片表面以营养体形式分离得到的4株苏云金芽孢杆菌,在丰富培养基中分批培养500代。其中一株S4g与亲本相比有以下不同:细胞宽度更大;质粒图谱改变;完全丧失产生δ-内毒素的能力;丧失产生β-外毒素的能力且vip3基因破坏;脂肪酸组成截然不同;代谢活性改变。另外两株进化菌株(S1g和S6g)与亲本相比脂肪酸谱存在差异。基因指纹分析表明,其中两株进化菌株(S1g和S2g)的cry基因也发生了突变。与亲本相比,S6g菌株的δ-内毒素对菜青虫幼虫的毒性显著降低,其质粒含量也有所不同。
苏云金芽孢杆菌新鲜分离株在实验室培养时会发生剧烈且不可预测的变化。
这是对革兰氏阳性且具有生物技术重要性的细菌进行反复实验室培养后的首次分析。环境分离株在实验室培养基上长时间生长会对其结构、基因组和毒力决定因素产生深远影响,这对苏云金芽孢杆菌的生物技术开发具有重要意义。