Park Hyun-Woo, Tang Mujin, Sakano Yuko, Federici Brian A
Public Health Entomology Center, Florida A&M University, Panama City, FL 32405, USA.
Appl Environ Microbiol. 2009 Feb;75(3):878-81. doi: 10.1128/AEM.01444-08. Epub 2008 Dec 5.
The 2297 strain of Bacillus sphaericus produces a crystal of the Bin (binary) toxin that is approximately fourfold larger than that of strain 2362, the strain currently used in VectoLex, a commercial mosquito larvicide. Comparison of the regions downstream from the bin operon in these two strains showed that strain 2362 contained a 1.6-kb region with four orf genes not found in strain 2297. Insertion of a 1.1-kb portion of this region from strain 2362 by homologous recombination downstream from the bin operon in strain 2297 reduced Bin toxin production by 50 to 70% and toxicity to fourth-instar larvae of Culex quinquefasciatus by 68%. These results suggest that the 1.6-kb region downstream from the bin operon in B. sphaericus 2362 is responsible for the lower Bin yield and smaller crystal size characteristic of this strain.
球形芽孢杆菌2297菌株产生的Bin(二元)毒素晶体比目前用于商业杀蚊幼虫剂VectoLex中的2362菌株产生的晶体大约大四倍。对这两种菌株中bin操纵子下游区域的比较表明,2362菌株含有一个1.6kb的区域,其中有四个在2297菌株中未发现的开放阅读框基因。通过同源重组将2362菌株该区域的1.1kb部分插入2297菌株bin操纵子下游,使Bin毒素产量降低了50%至70%,对致倦库蚊四龄幼虫的毒性降低了68%。这些结果表明,球形芽孢杆菌2362中bin操纵子下游的1.6kb区域是该菌株Bin产量较低和晶体尺寸较小的原因。