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α-变形菌根瘤菌巴西固氮螺菌 Sp245 的极生鞭毛在生物膜生物量积累和在静止和动态条件下的生物膜维持中发挥作用。

Polar flagellum of the alphaproteobacterium Azospirillum brasilense Sp245 plays a role in biofilm biomass accumulation and in biofilm maintenance under stationary and dynamic conditions.

机构信息

Institute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences, 13 Prospekt Entuziastov, 410049, Saratov, Russia.

出版信息

World J Microbiol Biotechnol. 2019 Jan 17;35(2):19. doi: 10.1007/s11274-019-2594-0.

Abstract

Bacteria Azospirillum brasilense may swim and swarm owing to the rotation of a constitutive polar flagellum (Fla) and inducible lateral flagella (Laf). They also construct sessile biofilms on various interfaces. As compared to the wild-type strain Sp245, the previously characterized Fla Laf flhB1 mutant Sp245.1063 accumulated less biomass in mature biofilms, which also were susceptible to the forces of hydrodynamic shear. In this study, we compared biofilms formed by strain Sp245 and its previously constructed derivatives on the interfaces between a minimal (malate-salt medium, or MSM) or rich (LB) liquid growth medium and a hydrophilic (glass) or hydrophobic (polystyrene) solid surface under static or dynamic conditions. In all experimental settings, the alterations in Sp245.1063's mature biofilm traits were partially (in MSM) or completely (in LB) rescued in the complemented mutant Sp245.1063 (pRK415-150177), which received the pRK415-borne coding sequence for the putative FlhB1 protein of the flagellar type III secretion system. Although Laf were not found in the biofilms of azospirilla, Fla was present on the biofilm cells of the complemented mutant Sp245.1063 (pRK415-150177) and other studied strains, which had normal flagellation on liquid and solid nutritional media. Accordingly, mature biofilms of these strains contained more biomass and were significantly more resistant to shaking at 140 rpm, as compared to the biofilms of the flagella-free mutant bacteria. These data proved that the polar flagellum of A. brasilense Sp245 plays a significant positive role in biofilm biomass increase and in biofilm stabilization.

摘要

巴西固氮螺菌(Azospirillum brasilense)可能会由于组成性极生鞭毛(Fla)和诱导性侧生鞭毛(Laf)的旋转而游动和群集。它们还在各种界面上构建定殖生物膜。与野生型 Sp245 菌株相比,先前表征的 Fla Laf flhB1 突变体 Sp245.1063 在成熟生物膜中积累的生物量较少,并且容易受到流体动力剪切力的影响。在这项研究中,我们比较了菌株 Sp245 及其先前构建的衍生物在贫(苹果酸盐盐培养基,或 MSM)或富(LB)液体生长培养基与亲水(玻璃)或疏水性(聚苯乙烯)固体表面之间形成的生物膜,在静态或动态条件下。在所有实验设置中,突变体 Sp245.1063 的成熟生物膜特性的改变在互补突变体 Sp245.1063(pRK415-150177)中部分(在 MSM 中)或完全(在 LB 中)得到挽救,该突变体接收了编码来自 flagellar type III secretion system 的 FlhB1 蛋白的 pRK415 携带的编码序列。尽管在固氮螺菌的生物膜中未发现 Laf,但在互补突变体 Sp245.1063(pRK415-150177)和其他研究菌株的生物膜细胞中存在 Fla,这些菌株在液体和固体营养培养基上具有正常的鞭毛。因此,与无鞭毛突变体细菌的生物膜相比,这些菌株的成熟生物膜含有更多的生物量,并且在 140 rpm 摇动时更能抵抗摇动。这些数据证明了巴西固氮螺菌 Sp245 的极性鞭毛在生物膜生物量增加和生物膜稳定化方面发挥了重要的积极作用。

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