血链球菌的遗传转化。血链球菌(Streptococcus sanguis Lancefield group H、W)及其他侵袭性绿绿链球菌的鉴定、表面传播及能力。

P Gaustad
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摘要

从疑似真菌血症病例中分离的46株绿绿链球菌中,有26株(56%)可在Lancefield系统中进行血清学分类。经鉴定,8株(17%)为血链球菌特有的H血清组,10株(22%)为血链球菌新发现的群抗原W血清组,8株(17%)为血链球菌相关的K血清组。可血清分型的翠绿链球菌的高数量是由于W血清组的引入,并表明该血清组在菌血症病例中的重要性。采用6项诊断试验(双氧水的产生、精氨酸和胰蛋白酶的水解、多糖的产生、Voges-Proskauer反应、甘露醇发酵)对绿绿链球菌进行了菌种鉴定;此外,在诊断过程中还包括寻找菌落周围的扩散区。传播带仅存在于血血链球菌中,并且在H组菌株中比W组菌株发生的频率更高。对46株绿绿链球菌进行了遗传转化试验。从血液中分离的菌株中自发能力的流行率很高,特别是血链球菌血清H组(88%)和W组(50%)。对于血清H组,在入侵菌株中发现自发能力的频率与在先前研究的载体分离株中发现的频率相同。
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Genetic transformation in Streptococcus sanguis. Identification, surface spreading and competence of invasive strains of Streptococcus sanguis Lancefield groups H and W and other invasive viridans streptococci.

Of 46 viridans streptococci isolated from cases of probably true bacteremia, 26 strains or 56% could be grouped serologically in the Lancefield system. Eight strains (17%) were identified as serogroup H (characteristic of Streptococcus sanguis), ten strains (22%) as serogroup W (a new group antigen found in S. sanguis) and eight strains (17%) as serogroup K (related to S. mitis (mitior)). The high number of serogroupable viridans streptococci was specially due to the introduction of serogroup W and indicates the importance of this serogroup in cases of bacteremia. A set of six diagnostic tests (production of hydrogen peroxide, arginine and esculin hydrolysis, polysaccharide production, Voges-Proskauer reaction, mannitol fermentation) was used for speciation of the viridans streptococci; in addition, search for spreading zones around the colonies was included in the diagnostic procedure. Spreading zones were only present in S. sanguis and occurred more frequently in group H strains than group W strains. The 46 viridans streptococci were tested in genetic transformation. The prevalence of spontaneous competence in strains isolated from the blood was high, particularly in S. sanguis serogroup H (88%) and W (50%). For serogroup H, spontaneous competence was found as frequently among invasive strains as among carrier isolates previously studied.

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