【2h】

Ultrastructure of the

机译:超微结构的

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摘要

Mycobacterium avium subsp. hominissuis (MAH) is one of the most common nontuberculous mycobacterial pathogens responsible for chronic lung disease in humans. It is widely distributed in biofilms in natural and living environments. It is considered to be transmitted from the environment. Despite its importance in public health, the ultrastructure of the MAH biofilm remains largely unknown. The ultrastructure of a MAH-containing multispecies biofilm that formed naturally in a bathtub inlet was herein reported along with those of monoculture biofilms developed from microcolonies and pellicles formed in the laboratory. Scanning electron microscopy revealed an essentially multilayered bathtub biofilm that was packed with cocci and short and long rods connected by an extracellular matrix (ECM). Scattered mycobacterium-like rod-shaped cells were observed around biofilm chunks. The MAH monoculture biofilms that developed from microcolonies in vitro exhibited an assembly of flat layers covered with thin film-like ECM membranes. Numerous small bacterial cells (0.76±0.19‍ ‍μm in length) were observed, but not embedded in ECM. A glycopeptidolipid-deficient strain did not develop the layered ECM membrane architecture, suggesting its essential role in the development of biofilms. The pellicle biofilm also consisted of flat layered cells covered with an ECM membrane and small cells. MAH alone generated a flat layered biofilm covered with an ECM membrane. This unique structure may be suitable for resistance to water flow and disinfectants and the exclusion of fast-growing competitors, and small cells in biofilms may contribute to the formation and transmission of bioaerosols.
机译:分枝杆菌亚空间。 Hominissuis(MAH)是负责人类慢性肺病的最常见的非洲分枝杆菌之一。它广泛分布在天然和生活环境中的生物膜中。它被认为是从环境中传播的。尽管在公共卫生方面重视,但MAH生物膜的超微结构仍然很大程度上是未知的。本发明据报道,含有MAH的多边形生物膜的MAH的多层的生物膜的超微结构与从实验室中形成的微菌根和薄膜产生的单一种生物膜的MAH的多层膜。扫描电子显微镜显微镜揭示了由细胞外基质(ECM)连接的Cocci和短杆填充的基本多层浴缸生物膜。在生物膜大块周围观察到散射的分枝杆状杆状细胞。从体外微菌根开发的MAH MAH MAH MAH MAH MAH MAH MAHOOMULLURE BIOFILMS表现出覆盖有薄膜样ECM膜的平面层组件。观察到许多小细菌细胞(长度为0.76±0.19μm),但不嵌入ECM中。糖肽脂脂肪脂肪菌株没有发展分层ECM膜架构,表明其在生物膜发育中的基本作用。薄膜生物膜也包括用ECM膜和小细胞覆盖的扁平分层细胞。单独的MAH产生了覆盖着ECM膜的平分层生物膜。这种独特的结构可能适用于水流动和消毒剂的抵抗力,并且排除快速增长的竞争者,并且生物膜中的小细胞可能有助于生物溶胶的形成和传递。

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