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Within-Host Competition Drives Selection for the Capsule Virulence Determinant of Streptococcus pneumoniae

机译:宿主内竞争推动肺炎链球菌胶囊毒力决定因素的选择

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摘要

For many opportunistic pathogens, it is unclear why their virulence determinants and expression of pathogenic behavior have evolved when damage or death of their host offers no obvious selective advantage to microbial growth or survival [1-3]. Many pathogens initiate interactions with their host on mucosal surfaces and must compete with other members of the microflora for the same niche. Here we explore whether competitive interactions between microbes promote the acquisition of virulence characteristics. During model murine nasal colonization, Haemophilus influenzae outcompetes another member of the local flora, Streptococcus pneumoniae, by recruiting neutrophils and stimulating the killing of complement-opsonized pneumococci [4]. For S. pneumoniae, resistance to opsonophagocytic killing is determined by its polysaccharide capsule [5, 6]. Although there are many capsule types among different S. pneumoniae isolates that allow for efficient colonization, virulent pneumococci express capsules that confer resistance to opsonophagocytic clearance. Modeling of interspecies interaction predicts that these more virulent S. pneumoniae will prevail during competition with H. influenzae, even if production of a capsule is otherwise costly. Experimental colonization studies confirmed the increased survival of the more virulent S. pneumoniae type during competition. Our findings demonstrate that competition between microbes during their commensal state may underlie selection for characteristics that allow invasive disease.
机译:对于许多机会性病原体,尚不清楚当宿主的损坏或死亡对微生物的生长或存活没有明显的选择性优势时,为什么会演变出它们的毒力决定因素和致病行为的表达[1-3]。许多病原体会与其宿主在粘膜表面上发生相互作用,并且必须与微生物群的其他成员竞争相同的生态位。在这里,我们探讨微生物之间的竞争性相互作用是否促进了毒力特征的获得。在模型鼠的鼻部定殖过程中,流感嗜血杆菌通过招募中性粒细胞并刺激杀死补体调理的肺炎球菌,胜过了本地菌群的另一成员肺炎链球菌[4]。对于肺炎链球菌,对调理吞噬细胞杀伤的抵抗力取决于其多糖胶囊[5,6]。尽管在不同的肺炎链球菌分离物中有许多胶囊类型可以有效定植,但是强力肺炎球菌表达的胶囊赋予对调理吞噬作用的抵抗力。种间相互作用的模型预测,即使以其他方式生产胶囊成本高昂,这些更具毒性的肺炎链球菌也会在与流感嗜血杆菌竞争期间占优势。实验定植研究证实,在竞争过程中,更具毒性的肺炎链球菌的存活率提高了。我们的发现表明,微生物在共生状态下的竞争可能是选择允许侵袭性疾病的特征的基础。

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