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Site of Isolation Determines Biofilm Formation and Virulence Phenotypes of Streptococcus pneumoniae Serotype 3 Clinical Isolates

机译:隔离的位置确定了肺炎链球菌血清型3临床分离株的生物膜形成和毒力表型。

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Streptococcus pneumoniae is a diverse species causing invasive as well as localized infections that result in massive global morbidity and mortality. Strains vary markedly in pathogenic potential, but the molecular basis is obscured by the diversity and plasticity of the pneumococcal genome. In the present study, S. pneumoniae serotype 3 blood (n = 12) or ear (n = 13) isolates were multilocus sequence typed (MLST) and assessed for biofilm formation and virulence phenotype. Blood and ear isolates exhibited similar MLST distributions but differed markedly in phenotype. Blood isolates formed robust biofilms only at pH 7.4, which were enhanced in Fe(III)-supplemented medium. Conversely, ear isolates formed biofilms only at pH 6.8, and Fe(III) was inhibitory. Biofilm formation paralleled luxS expression and genetic competence. In a mouse intranasal challenge model, blood isolates did not stably colonize the nasopharynx but spread to the blood; none spread to the ear. Ear isolates colonized the nasopharynx at higher levels and also spread to the ear compartment in a significant proportion of animals; none caused bacteremia. Thus, pneumococci of the same serotype and MLST exhibit distinct phenotypes in accordance with clinical site of isolation, indicative of stable niche adaptation within a clonal lineage.
机译:肺炎链球菌是引起入侵和局部感染的多样化物种,导致大规模的全球发病率和死亡率。菌株的致病潜能明显不同,但肺炎球菌基因组的多样性和可塑性掩盖了分子基础。在本研究中,肺炎链球菌血清型3血液(n = 12)或耳朵(n = 13)分离株是多基因座序列类型(MLST),并评估了生物膜形成和毒力表型。血液和耳朵分离株表现出相似的MLST分布,但表型差异显着。血液分离物仅在pH 7.4时形成坚固的生物膜,并在添加Fe(III)的培养基中增强。相反,耳分离物仅在pH 6.8时形成生物膜,而Fe(III)具有抑制作用。生物膜形成与luxS表达和遗传能力平行。在小鼠鼻内攻击模型中,血液分离物不能稳定地定居在鼻咽中,而是扩散到血液中。没有一个传播到耳朵。耳分离株以较高水平定居于鼻咽,并在相当多的动物中扩散到耳腔。没有引起菌血症。因此,根据分离的临床部位,相同血清型和MLST的肺炎球菌表现出不同的表型,表明克隆谱系内稳定的生态位适应。

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