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Hyperhalophilic archaeal biofilms: growth kinetics, structure, and antagonistic interaction in continuous culture

机译:嗜盐古细菌生物膜:连续培养中的生长动力学,结构和拮抗作用。

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摘要

Biofilms by the hyperhalophilic archaea Halorubrum sp. and Halobacterium sp. were analyzed, and for the first time the progression of structural features and the developmental parameters of these sessile populations are described. Optical slicing and digital analysis of sequential micrographs showed that their three dimensional structure was microorganism dependent. Biofilms of Halobacterium sp. developed in clusters that covered about 30% of the supporting surface at the interface level and expanded over about 86 ± 4 μm in thickness, while Halorubrum sp. biofilms covered less than 20% of the surface and reached a thickness of 41 ± 1 μm. The kinetics of growth was lower in biofilms, with generation times of 27 ± 1 and 36 ±2 h for Halobacterium sp. and Halorubrum sp., respectively, as compared to 8.4 ±0.3 and 14 ± 1 h in planktonic cultures. Differences between microorganisms were also observed at the cell morphology level. The interaction between the two microorganisms was also evaluated, showing that Halobacterium sp. can outcompete already established Halorubrum sp. biofilms by a mechanism that might include the combined action of tunnelling swimmers and antimicrobial compounds.
机译:高嗜盐古生菌Halorubrum sp。的生物膜。和Halobacterium sp.。进行了分析,并首次描述了这些无柄种群的结构特征和发育参数。光学切片和连续显微照片的数字分析表明,它们的三维结构是微生物依赖性的。盐杆菌属的生物膜。呈簇状生长,在界面水平覆盖约30%的支撑表面,厚度扩展到约86±4μm,而Halorubrum sp。生物膜覆盖不到20%的表面,厚度达到41±1μm。生物膜中的生长动力学较低,Halobacterium sp。的产生时间为27±1和36±2 h。和Halorubrum sp。分别为浮游文化的8.4±0.3和14±1 h。在细胞形态学水平上也观察到了微生物之间的差异。还评估了两种微生物之间的相互作用,表明Halobacterium sp.。可以胜过已经建立的Halorubrum sp。生物膜的机制可能包括隧穿游泳者和抗菌化合物的联合作用。

著录项

  • 来源
    《Biofouling》 |2014年第2期|237-245|共9页
  • 作者单位

    Facultad de Ciencias Exactas y Naturales, Institute de Investigaciones Biologicas, CONICET-UNMDP, Mar del Plata, Argentina;

    Laboratorio de Bioelectroquimica, Area Electroquimica y Corrosion, INTEMA-CONICET, Mar del Plata, Argentina;

    Facultad de Ingenieria, Grupo de Procesamiento Digital de Imdgenes, UNMdP, Mar del Plata, Argentina;

    Facultad de Ingenieria, Grupo de Procesamiento Digital de Imdgenes, UNMdP, Mar del Plata, Argentina;

    Facultad de Ciencias Exactas y Naturales, Institute de Investigaciones Biologicas, CONICET-UNMDP, Mar del Plata, Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    antagonistic interactions; archaea; biofilm; halophiles;

    机译:拮抗作用古细菌生物膜嗜盐菌;

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