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首页> 外文期刊>Diseases of Aquatic Organisms >Biochemical, molecular, and virulence characteristics of select Mycobacterium marinum isolates in hybrid striped bass Morone chrysops x M. saxatilis and zebrafish Danio rerio
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Biochemical, molecular, and virulence characteristics of select Mycobacterium marinum isolates in hybrid striped bass Morone chrysops x M. saxatilis and zebrafish Danio rerio

机译:杂种条纹鲈鱼Morone chrysops x M. saxatilis和斑马鱼Danio rerio的精选分枝杆菌分枝杆菌的生化,分子和毒力特征

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摘要

A panel of 15 Mycobacterium marinum isolates was characterized by biochemical tests, sequencing the ribosomal DNA intergenic spacer (ITS) region and the heat shock protein 65 gene (hsp65) and pulsed-field gel electrophoresis (PFGE). The biochemical characteristics of all isolates were similar, except for Tween 80 hydrolysis. DNA sequence of hsp65 for a subset of isolates were identical; however, at position 5 of the ITS rDNA, a single nucleotide polymorphism was identified. Isolates possessing a guanine residue at this position (G strains) were unable to hydrolyze Tween 80, while isolates that contained an adenine residue at this position (A strains) were positive for Tween 80 hydrolysis. PFGE successfully discriminated between the G and A strains; all G strains had identical AseI restriction enzyme- cutting patterns while the A strains exhibited a variety of cutting patterns. Eight isolates (4 G and 4 A strains) were further characterized for virulence by experimental infection of hybrid striped bass (HSB) Morone chrysops x M. saxatilis and zebrafish Danio rerio. Seven of the 8 strains produced cumulative mortality ranging from 13.3 to 83.3% in the HSB virulence trial. The M. marinum reference strain ATCC 927 super(T) did not produce mortality in HSB. HSB exposed to the G strains had significantly higher cumulative mortality than those exposed to the A strains. When these same isolates were tested in zebrafish, 6 of the 8 strains caused 100% cumulative mortality, with 2 of the A strains being the most pathogenic. In zebrafish, however, ATCC 927 super(T) was virulent and produced 28.5% mortality. Collectively, we conclude that the M. marinum G strains are unique and may represent a distinct virulence phenotype in HSB, but this trend was not consistent in zebrafish.
机译:通过生化测试,对核糖体DNA基因间隔区(ITS)区和热休克蛋白65基因(hsp65)进行测序和脉冲场凝胶电泳(PFGE),对一组15种分枝杆菌进行了表征。除吐温80水解外,所有分离物的生化特性均相似。 hsp65的亚型分离株的DNA序列相同。然而,在ITS rDNA的5位上,发现了一个单核苷酸多态性。在此位置具有鸟嘌呤残基的分离株(G菌株)无法水解吐温80,而在此位置包含腺嘌呤残基的分离株(A菌株)则吐温80水解呈阳性。 PFGE成功地区分了G和A菌株。所有G菌株均具有相同的AseI限制酶切割模式,而A菌株表现出多种切割模式。通过对混合条纹鲈鱼(HSB)Morone chrysops x M. saxatilis和斑马鱼Danio rerio进行实验性感染,进一步鉴定了8个分离株(4 G和4 A菌株)的毒力。在HSB毒力试验中,这8株菌株中有7株的累积死亡率为13.3%至83.3%。海藻分枝杆菌参考菌株ATCC 927 super(T)在HSB中不产生死亡率。暴露于G株的HSB的累积死亡率显着高于暴露于A株的HSB。在斑马鱼中测试这些相同的分离株时,8个菌株中有6个引起100%的累积死亡率,而A菌株中有2个是最致病的。但是,在斑马鱼中,ATCC 927 super(T)有毒,死亡率为28.5%。总的来说,我们得出的结论是,M。marinum G菌株是独特的,并且可能代表HSB中独特的毒力表型,但这种趋势在斑马鱼中并不一致。

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