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Capsules of the diatom Achnanthidium minutissimum arise from fibrillar precursors and foster attachment of bacteria

机译:硅藻Ac虫的胶囊来自原纤维前体促进细菌附着

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摘要

Achnanthidium minutissimum is a benthic freshwater diatom that forms biofilms on submerged surfaces in aquatic environments. Within these biofilms, A. minutissimum cells produce extracellular structures which facilitate substrate adhesion, such as stalks and capsules. Both consist of extracellular polymeric substance (EPS), but the microstructure and development stages of the capsules are so far unknown, despite a number of hypotheses about their function, including attachment and protection. We coupled scanning electron microscopy (SEM) to bright-field microscopy (BFM) and found that A. minutissimum capsules mostly possess an unstructured surface. However, capsule material that was mechanically stressed by being stretched between or around cells displayed fibrillar substructures. Fibrils were also found on the frustules of non-encapsulated cells, implicating that A. minutissimum capsules may develop from fibrillar precursors. Energy-dispersive X-ray (EDX) spectroscopy revealed that the capsule material do not contain silicon, distinguishing it from the frustule material. We furthermore show that bacteria preferentially attach to capsules, instead of non-encapsulated A. minutissimum cells, which supports the idea that capsules mediate diatom-bacteria interactions.
机译:hn虫是一种底栖淡水硅藻,可在水生环境中的水下表面形成生物膜。在这些生物膜中,min曲霉细胞产生促进底物粘附的细胞外结构,例如茎和胶囊。两者均由细胞外聚合物质(EPS)组成,但是尽管有许多关于其功能的假设,包括附着和保护,但胶囊的微结构和发育阶段仍是未知的。我们将扫描电子显微镜(SEM)耦合到明场显微镜(BFM),发现A. minutissimum胶囊大部分具有非结构化表面。然而,通过在细胞之间或细胞周围拉伸而受到机械应力的胶囊材料显示出原纤维亚结构。在未包囊细胞的视锥细胞上还发现了原纤维,这暗示细线曲霉胶囊可能是由原纤维前体形成的。能量色散X射线(EDX)光谱显示胶囊材料不包含硅,从而将其与壳层材料区分开。我们进一步表明细菌优先附着在胶囊上,而不是未包囊的A. minutissimum细胞,这支持了胶囊介导硅藻与细菌相互作用的观点。

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