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藻酸盐和果聚糖的产生对丁香假单胞菌生物膜形成的作用。

Contribution of alginate and levan production to biofilm formation by Pseudomonas syringae.

作者信息

Laue Heike, Schenk Alexander, Li Hongqiao, Lambertsen Lotte, Neu Thomas R, Molin Søren, Ullrich Matthias S

机构信息

Molecular Microbial Ecology Group, BioCentrum-DTU, Technical University of Denmark, DK-2800 Lyngby, Denmark.

School of Engineering and Sciences, International University Bremen, Campusring 1, D-28759 Bremen, Germany.

出版信息

Microbiology (Reading). 2006 Oct;152(Pt 10):2909-2918. doi: 10.1099/mic.0.28875-0.

Abstract

Exopolysaccharides (EPSs) play important roles in the attachment of bacterial cells to a surface and/or in building and maintaining the three-dimensional, complex structure of bacterial biofilms. To elucidate the spatial distribution and function of the EPSs levan and alginate during biofilm formation, biofilms of Pseudomonas syringae strains with different EPS patterns were compared. The mucoid strain PG4180.muc, which produces levan and alginate, and its levan- and/or alginate-deficient derivatives all formed biofilms in the wells of microtitre plates and in flow chambers. Confocal laser scanning microscopy with fluorescently labelled lectins was applied to investigate the spatial distribution of levan and an additional as yet unknown EPS in flow-chamber biofilms. Concanavalin A (ConA) bound specifically to levan and accumulated in cell-depleted voids in the centres of microcolonies and in blebs. No binding of ConA was observed in biofilms of the levan-deficient mutants or in wild-type biofilms grown in the absence of sucrose as confirmed by an enzyme-linked lectin-sorbent assay using peroxidase-linked ConA. Time-course studies revealed that expression of the levan-forming enzyme, levansucrase, occurred mainly during early exponential growth of both planktonic and sessile cells. Thus, accumulation of levan in biofilm voids hints to a function as a nutrient storage source for later stages of biofilm development. The presence of a third EPS besides levan and alginate was indicated by binding of the lectin from Naja mossambica to a fibrous structure in biofilms of all P. syringae derivatives. Production of the as yet uncharacterized additional EPS might be more important for biofilm formation than the syntheses of levan and alginate.

摘要

胞外多糖(EPSs)在细菌细胞附着于表面和/或构建及维持细菌生物膜的三维复杂结构中发挥着重要作用。为了阐明果聚糖和藻酸盐在生物膜形成过程中的空间分布及功能,对具有不同EPS模式的丁香假单胞菌菌株的生物膜进行了比较。产生果聚糖和藻酸盐的黏液型菌株PG4180.muc及其果聚糖和/或藻酸盐缺陷型衍生物均能在微量滴定板孔中和流动室中形成生物膜。应用带有荧光标记凝集素的共聚焦激光扫描显微镜来研究流动室生物膜中果聚糖和另一种尚未明确的EPS的空间分布。伴刀豆球蛋白A(ConA)特异性结合果聚糖,并积聚在微菌落中心的细胞缺失空隙和气泡中。通过使用过氧化物酶标记的ConA的酶联凝集素吸附测定法证实,在果聚糖缺陷型突变体的生物膜中或在无蔗糖条件下生长的野生型生物膜中均未观察到ConA的结合。时间进程研究表明,果聚糖合成酶(levansucrase)的表达主要发生在浮游细胞和固着细胞的指数生长早期。因此,果聚糖在生物膜空隙中的积聚暗示其在生物膜发育后期作为营养储存源的功能。来自莫桑比克眼镜蛇的凝集素与所有丁香假单胞菌衍生物生物膜中的纤维状结构结合,表明除了果聚糖和藻酸盐外还存在第三种EPS。产生这种尚未鉴定的额外EPS可能对生物膜形成比果聚糖和藻酸盐的合成更为重要。

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