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MiL-FISH: Multilabeled Oligonucleotides for Fluorescence In Situ Hybridization Improve Visualization of Bacterial Cells

机译:MiL-FISH:用于荧光原位杂交的多标记寡核苷酸可改善细菌细胞的可视化

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Fluorescence in situ hybridization (FISH) has become a vital tool for environmental and medical microbiology and is commonly used for the identification, localization, and isolation of defined microbial taxa. However, fluorescence signal strength is often a limiting factor for targeting all members in a microbial community. Here, we present the application of a multilabeled FISH approach (MiL-FISH) that (i) enables the simultaneous targeting of up to seven microbial groups using combinatorial labeling of a single oligonucleotide probe, (ii) is applicable for the isolation of unfixed environmental microorganisms via fluorescence-activated cell sorting (FACS), and (iii) improves signal and imaging quality of tissue sections in acrylic resin for precise localization of individual microbial cells. We show the ability of MiL-FISH to distinguish between seven microbial groups using a mock community of marine organisms and its applicability for the localization of bacteria associated with animal tissue and their isolation from host tissues using FACS. To further increase the number of potential target organisms, a streamlined combinatorial labeling and spectral imaging-FISH (CLASI-FISH) concept with MiL-FISH probes is presented here. Through the combination of increased probe signal, the possibility of targeting hard-to-detect taxa and isolating these from an environmental sample, the identification and precise localization of microbiota in host tissues, and the simultaneous multilabeling of up to seven microbial groups, we show here that MiL-FISH is a multifaceted alternative to standard monolabeled FISH that can be used for a wide range of biological and medical applications.
机译:荧光原位杂交(FISH)已成为环境和医学微生物学的重要工具,通常用于鉴定,定位和分离确定的微生物类群。然而,荧光信号强度通常是针对微生物群落中所有成员的限制因素。在这里,我们介绍了多标记FISH方法(MiL-FISH)的应用,该方法(i)使用单个寡核苷酸探针的组合标记能够同时靶向多达七个微生物组,(ii)适用于未固定环境的分离微生物通过荧光激活细胞分选(FACS),以及(iii)改善了丙烯酸树脂中组织切片的信号和成像质量,可精确定位单个微生物细胞。我们展示了MiL-FISH能够区分使用模拟海洋生物群落的七个微生物组的能力,以及其对与动物组织相关的细菌的定位以及使用FACS从宿主组织中分离的适用性。为了进一步增加潜在目标生物的数量,此处介绍了使用MiL-FISH探针进行简化的组合标记和光谱成像-FISH(CLASI-FISH)概念。通过结合增加的探针信号,靶向难于检测的生物分类并将其与环境样品分离,宿主组织中微生物群的鉴定和精确定位以及多达七个微生物组的同时多重标记相结合的可能性,我们证明了在这里,MiL-FISH是标准单标签FISH的多方面替代品,可用于多种生物学和医学应用。

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