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在血链球菌菌株上发现的表面结构(周毛菌纤丝和纤丝簇)可能与其与其他口腔菌属共聚的能力有关。

Surface structures (peritrichous fibrils and tufts of fibrils) found on Streptococcus sanguis strains may be related to their ability to coaggregate with other oral genera.

作者信息

Handley P S, Carter P L, Wyatt J E, Hesketh L M

出版信息

Infect Immun. 1985 Jan;47(1):217-27. doi: 10.1128/iai.47.1.217-227.1985.

Abstract

We screened 36 strains of Streptococcus sanguis biotype I and 8 strains of S. sanguis biotype II for the presence of surface structures and for their ability to coaggregate with Actinomyces viscosus, Actinomyces naeslundii, and Fusobacterium nucleatum. Negative staining under an electron microscope revealed detectable surface structures on all S. sanguis strains. The majority of strains (38 of 44) carried peritrichous fibrils, which have an irregular profile and no distinct width. They usually appeared as a fringe with a constant width around the cell. Strains selected for measurement had a fringe with an average length of 72.4 +/- 8.5 nm on biotype I strains and 51.6 +/- 3.3 nm on biotype II strains. Some fibrillar biotype I strains carried an additional, longer (158.7 +/- 33.1 nm) type of fibril projecting through the shorter fibrils. Fibrillar density was characteristic for each strain, ranging from very dense on all cells in a population to very sparse on a few cells in a population. A small group of six strains carried tufts of fibrils in a lateral or polar position on the cell. Either one or two lengths of fibril were present in the tuft depending on the strain. One strain carried both peritrichous fibrils and fimbriae. Fimbriae are flexible structures with a constant width (4.5 to 5.0 nm) all along their length but very variable lengths (less than or equal to 0.7 micron) on each cell. S. sanguis I and II both included strains with peritrichous fibrils and tufts of fibrils, but the mixed morphotype strain was confined to biotype II. Fibrils were present on cells at all stages throughout the growth cycle for the strains tested. Freshly isolated fibrillar strains coaggregated consistently well with A. viscosus and A. naeslundii, although some fibrillar reference strains lacked the ability. In addition, all tufted strains could not coaggregate, but the strains with the mixed morphotype coaggregated well. Coaggregation with F. nucleatum was very strong for the fibrillar strains, but less strong for the tufted strains. We discuss the possible correlation between S. sanguis surface structure and ability to coaggregate.

摘要

我们筛选了36株血链球菌I型菌株和8株血链球菌II型菌株,检测其表面结构以及它们与黏性放线菌、内氏放线菌和具核梭杆菌的共聚能力。电子显微镜下的负染色显示,所有血链球菌菌株均存在可检测到的表面结构。大多数菌株(44株中的38株)具有周生纤毛,其形态不规则,宽度不明显。它们通常表现为围绕细胞的宽度恒定的边缘。被选用于测量的菌株中,I型菌株的边缘平均长度为72.4±8.5纳米,II型菌株的边缘平均长度为51.6±3.3纳米。一些I型纤毛菌株还带有另一种更长(158.7±33.1纳米)的纤毛,穿过较短的纤毛伸出。纤毛密度因菌株而异,从群体中所有细胞上都非常密集到群体中少数细胞上非常稀疏。一小群六株菌株在细胞的侧面或极位带有纤毛束。根据菌株不同,纤毛束中存在一种或两种长度的纤毛。一株菌株同时带有周生纤毛和菌毛。菌毛是一种柔性结构,沿其长度方向宽度恒定(4.5至5.0纳米),但每个细胞上的长度变化很大(小于或等于0.7微米)。血链球菌I型和II型均包括具有周生纤毛和纤毛束的菌株,但混合形态型菌株仅限于II型。在所测试的菌株的整个生长周期的所有阶段,细胞上均存在纤毛。尽管一些纤毛参考菌株缺乏这种能力,但新分离的纤毛菌株与黏性放线菌和内氏放线菌始终能很好地共聚。此外,所有有纤毛束的菌株都不能共聚,但具有混合形态型的菌株共聚良好。纤毛菌株与具核梭杆菌的共聚作用很强,但有纤毛束的菌株的共聚作用较弱。我们讨论了血链球菌表面结构与共聚能力之间可能的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d247/261499/94a1bfeb2e93/iai00118-0236-a.jpg

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