首页> 外文期刊>Microbiology >Mannitol promotes adherence of an outbreak strain of Burkholderia multivorans via an exopolysaccharide-independent mechanism that is associated with upregulation of newly identified fimbrial and afimbrial adhesins
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Mannitol promotes adherence of an outbreak strain of Burkholderia multivorans via an exopolysaccharide-independent mechanism that is associated with upregulation of newly identified fimbrial and afimbrial adhesins

机译:甘露醇通过不依赖胞外多糖的机制来促进伯克霍尔德氏菌爆发菌株的粘附,该机制与新发现的纤维和非粘附性粘附素的上调相关

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Burkholderia multivorans, a member of the Burkholderia cepacia complex (Bcc), is an important pathogen of the cystic fibrosis (CF) lung. Mannitol, approved as an inhaled osmolyte therapy for use in CF patients, promotes exopolysaccharide (EPS) production by the Bcc. In the present study, we investigated the role of mannitol-induced EPS in the adherence of B. multivorans. We report that mannitol promoted adherence of two representative B. multivorans strains. However, whilst this enhanced adherence was largely EPS-dependent in an environmental isolate, it was EPS-independent within a CF outbreak strain, suggesting strain-to-strain variation in adhesins. Genome sequencing of the outbreak strain enabled the identification of two distinct loci encoding putative fimbrial and afimbrial adhesins. The putative fimbriae-encoding locus was found to be widely distributed amongst clinical and environmental B. multivorans. In contrast, the locus encoding the putative afimbrial adhesin (of the filamentous haemagglutinin family, FHA) was restricted to clinical isolates. Both loci contributed to biofilm formation and mucin adherence. Furthermore, we report that mannitol promoted expression of both loci, and that the locus encoding the putative FHA-family adhesin is a key determinant of the enhanced adherence observed following growth in mannitol. Our studies provide the first characterization, to our knowledge, of B. multivorans adhesins, and in so doing highlight the strain-dependent role of EPS in the Bcc and the difficulties in assigning phenotypic traits to Bcc EPS due to the wider response to mannitol. Our observations also highlight the need to monitor the microbiological effects of inhaled mannitol therapy in Bcc-infected CF patients.
机译:伯克霍尔德酒洋葱复合体(Bcc)的成员伯克霍尔德菌是伯氏囊性纤维化(CF)肺的重要病原体。甘露醇被批准用作CF患者的吸入渗透压疗法,可促进Bcc分泌胞外多糖(EPS)。在本研究中,我们调查了甘露醇诱导的EPS在B. multivorans的坚持中的作用。我们报告,甘露醇促进两个代表性B.multivorans菌株的依从性。然而,尽管这种增强的粘附力在环境分离物中很大程度上依赖于EPS,但在CF爆发菌株中却与EPS无关,这表明粘附素的菌株之间存在差异。暴发毒株的基因组测序使得能够鉴定编码推定的纤维和非粘附粘附素的两个不同的基因座。发现推定的菌毛编码基因座广泛分布在临床和环境多菌种中。相反,编码假定的房顶粘附素(丝状血凝素家族,FHA)的基因座仅限于临床分离株。两个基因座都有助于生物膜的形成和粘蛋白的粘附。此外,我们报道甘露醇促进了两个基因座的表达,并且编码假定的FHA-家族粘附素的基因座是甘露醇生长后观察到的粘附增强的关键决定因素。据我们所知,我们的研究提供了B. multivorans粘附素的第一个特征,因此突出了EPS在Bcc中的依赖于菌株的作用以及由于对甘露醇的广泛反应而难以为Bcc EPS分配表型性状。我们的观察结果还强调了需要监测吸入甘露醇治疗对Bcc感染的CF患者的微生物作用。

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