Faculty of Agriculture, University of Miyazaki, Miyazaki, Japan.
FEMS Microbiol Lett. 2010 Aug 1;309(1):105-13. doi: 10.1111/j.1574-6968.2010.02024.x. Epub 2010 May 25.
The Lancefield group C alpha-hemolytic Streptococcus dysgalactiae ssp. dysgalactiae (GCSD) causes systemic granulomatous inflammatory disease and high mortality rates in infected fish. Superantigen and streptolysin S genes are the most important virulence factors contributing to an invasive streptococcal infection. PCR amplification revealed that all strains isolated from moribund fish harbored the streptolysin S structural gene (sagA). GCSD fish isolates were PCR negative for emm, speA, speB, speC, speM, smeZ, and ssa. However, the size of the streptococcal pyrogenic exotoxin G (spegg) locus, a superantigen, in positive S. dysgalactiae fish and pig strains was variable. The ORF of the spegg locus of 26 GCSD fish strains and one GCSD pig strain was inserted with IS981SC. Interestingly, the ORF of the spegg locus of two fish strains of GCSD collected in Malaysia was inserted with an IS981SC-IS1161 hybrid IS element. The hybrid IS element was found in all of the GCSD fish isolates and one GCSD pig through PCR screening. Although no insertion sequence (IS) was detected in the spegg locus of S. dysgalactiae ssp. equisimilis (GCSE) strains, a five-nucleotide deletion mutation was detected in the ORF of the spegg locus of one GCSE strain at the supposed site of IS981SC insertion, resulting in a frameshift mutation.
无乳链球菌 C 群α-溶血性马链球菌兽疫亚种(GCSD)可引起系统性肉芽肿性炎症,并使感染鱼类的死亡率非常高。超抗原和链球菌溶血素 S 基因是导致侵袭性链球菌感染的最重要毒力因子。PCR 扩增显示,从濒死鱼体分离到的所有菌株均携带链球菌溶血素 S 结构基因(sagA)。GCSD 鱼类分离株 PCR 检测emm、speA、speB、speC、speM、smeZ 和 ssa 基因均为阴性。然而,阳性马链球菌兽疫亚种鱼类和猪分离株中化脓性链球菌外毒素 G(spegg)超抗原基因座的大小存在差异。26 株 GCSD 鱼类分离株和 1 株 GCSD 猪分离株的 spegg 基因座 ORF 插入了 IS981SC。有趣的是,从马来西亚采集的两株 GCSD 鱼类分离株的 spegg 基因座 ORF 插入了一个 IS981SC-IS1161 杂合 IS 元件。通过 PCR 筛选,在所有 GCSD 鱼类分离株和 1 株 GCSD 猪中均发现了该杂合 IS 元件。尽管在马链球菌兽疫亚种(GCSE)菌株的 spegg 基因座中未检测到插入序列(IS),但在 1 株 GCSE 菌株的 spegg 基因座 ORF 中检测到了 5 个核苷酸缺失突变,推测该突变发生在 IS981SC 插入位点,导致移码突变。