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凝集素结合分析用于生物膜系统中糖缀合物原位检测的评估。

Assessment of lectin-binding analysis for in situ detection of glycoconjugates in biofilm systems.

作者信息

Neu Thomas R, Swerhone George D W, Lawrence John R

机构信息

Department of Inland Water Research Magdeburg, UFZ Centre for Environmental Research, Leipzig-Halle, Brueckstrasse 3A, 39114 Magdeburg, Germany1.

National Water Research Institute, Saskatoon, Saskatchewan, Canada2.

出版信息

Microbiology (Reading). 2001 Feb;147(Pt 2):299-313. doi: 10.1099/00221287-147-2-299.

Abstract

An assessment of lectin-binding analysis for the characterization of extracellular glycoconjugates as part of the extracellular polymeric substances in environmental microbial communities was performed using fully hydrated river biofilms. The applicability of the method was evaluated for single, dual and triple staining with a panel of fluor-conjugated lectins. It was shown that lectin-binding analysis was able to stain glycoconjugates within biofilm communities. Lectin staining also demonstrated spatial heterogeneity within the biofilm matrix. Furthermore, the application of two or even three lectins was possible if suitable combinations were selected. The lectin-binding analysis can be combined with general nucleic acid stains to collect both nucleic acid and glycoconjugate signals. The effects of incubation time, lectin concentration, fluor labelling, carbohydrate inhibition, order of addition and lectin interactions were studied. An incubation time of 20 min was found to be sufficient for completion of lectin binding. It was not possible to ascertain saturating concentration for individual lectins, therefore a standard concentration was used for the assay. Carbohydrate inhibition tests indicated that fluorescein isothiocyanate (FITC)-conjugated lectins had more specific binding characteristics than tetramethyl rhodamine isothiocyanate (TRITC)- or cyanine dye (CY5)-labelled lectins. The order of addition and the nature of the fluor conjugate were also found to influence the binding pattern of the lectins. Therefore the selection of a panel of lectins for investigating the EPS matrix must be based on a full evaluation of their behaviour in the biofilm system to be studied. Despite this necessity, lectin-binding analysis represents a valuable tool to examine the glycoconjugate distribution in fully hydrated biofilms. Thereby, chemical heterogeneities within extracellular biofilm locations can be identified in order to examine the role (e.g. sorption properties, microenvironments, cell-extracellular polymeric substance interactions) of the extracellular polymeric substances in environmental biofilm systems.

摘要

使用完全水合的河流生物膜对凝集素结合分析进行了评估,以表征作为环境微生物群落中细胞外聚合物一部分的细胞外糖缀合物。使用一组荧光共轭凝集素对该方法在单染色、双染色和三染色中的适用性进行了评估。结果表明,凝集素结合分析能够对生物膜群落中的糖缀合物进行染色。凝集素染色还显示了生物膜基质内的空间异质性。此外,如果选择合适的组合,也可以应用两种甚至三种凝集素。凝集素结合分析可以与通用核酸染色剂结合,以收集核酸和糖缀合物信号。研究了孵育时间、凝集素浓度、荧光标记、碳水化合物抑制、添加顺序和凝集素相互作用的影响。发现20分钟的孵育时间足以完成凝集素结合。无法确定单个凝集素的饱和浓度,因此测定中使用了标准浓度。碳水化合物抑制试验表明,异硫氰酸荧光素(FITC)共轭凝集素比异硫氰酸四甲基罗丹明(TRITC)或花菁染料(CY5)标记的凝集素具有更特异的结合特性。还发现添加顺序和荧光共轭物的性质会影响凝集素的结合模式。因此,选择一组凝集素来研究EPS基质必须基于对它们在待研究生物膜系统中的行为的全面评估。尽管有此必要,但凝集素结合分析仍是检查完全水合生物膜中糖缀合物分布的有价值工具。由此,可以识别细胞外生物膜位置内的化学异质性,以研究细胞外聚合物在环境生物膜系统中的作用(例如吸附特性、微环境、细胞-细胞外聚合物相互作用)。

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