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首页> 外文期刊>Applied and Environmental Microbiology >Quantitative fluorescence in situ hybridization of Bifidobacterium spp. with genus-specific 16S rRNA-targeted probes and its application in fecal samples.
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Quantitative fluorescence in situ hybridization of Bifidobacterium spp. with genus-specific 16S rRNA-targeted probes and its application in fecal samples.

机译:双歧杆菌属物种的定量荧光原位杂交。属特异性16S rRNA靶向的探针及其在粪便样品中的应用。

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摘要

Three 16S rRNA hybridization probes were developed and tested for genus-specific detection of Bifidobacterium species in the human fecal flora. Variable regions V2, V4, and V8 of the 16S rRNA contained sequences unique to this genus and proved applicable as target sites for oligodeoxynucleotide probes. Determination of the genus specificity of the oligonucleotides was performed by whole-cell hybridization with fluorescein isothiocyanate-labelled probes. To this end, cells were fixed on glass slides, hybridized with the probes, and monitored by videomicroscopy. In combination with image analysis, this allowed quantification of the fluorescence per cell and objective evaluation of hybridization experiments. One of the probes developed was used to determine the population of Bifidobacterium spp. in human fecal samples. A comparison was made with results obtained by cultural methods for enumeration. Since both methods gave similar population estimates, it was concluded that all bifidobacteria in feces were culturable. However, since the total culturable counts were only a fraction of the total microscopic counts, the contribution of bifidobacteria to the total intestinal microflora was overestimated by almost 10-fold when cultural methods were used as the sole method for enumeration.
机译:开发了三种16S rRNA杂交探针,并进行了人类粪便菌群中双歧杆菌属的属特异性检测。 16S rRNA的可变区V2,V4和V8包含该属独特的序列,并被证明可作为寡脱氧核苷酸探针的靶位点。通过与异硫氰酸荧光素标记的探针进行全细胞杂交来确定寡核苷酸的属特异性。为此,将细胞固定在载玻片上,与探针杂交,并通过视频显微镜进行监控。结合图像分析,可以量化每个细胞的荧光并客观评估杂交实验。所开发的探针之一用于确定双歧杆菌属。在人类粪便样本中。与通过计数的文化方法获得的结果进行了比较。由于两种方法得出的种群估计值相似,因此得出结论,粪便中的所有双歧杆菌都是可培养的。但是,由于可培养的总计数仅是总显微计数的一小部分,因此当将培养方法用作唯一的计数方法时,双歧杆菌对总肠道菌群的贡献被高估了将近10倍。

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