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首页> 外文期刊>Applied and Environmental Microbiology >Identification and quantification of Bifidobacterium species isolated from food with genus-specific 16S rRNA-targeted probes by colony hybridization and PCR.
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Identification and quantification of Bifidobacterium species isolated from food with genus-specific 16S rRNA-targeted probes by colony hybridization and PCR.

机译:通过菌落杂交和PCR,用属特异性16S rRNA靶向探针从食品中分离和鉴定双歧杆菌物种。

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摘要

A Bifidobacterium genus-specific target sequence in the V9 variable region of the 16S rRNA has been elaborated and was used to develop a hybridization probe. The specificity of this probe, named lm3 (5'-CGGGTGCTI*CCCACTTTCATG-3'), was used to identify all known type strains and distinguish them from other bacteria. All of the 30 type strains of Bifidobacterium which are available at the German culture collection Deutsche Sammlung von Mikroorganismen und Zellkulturen, 6 commercially available production strains, and 34 closely related relevant strains (as negative controls) were tested. All tested bifidobacteria showed distinct positive signals by colony hybridization, whereas all negative controls showed no distinct dots except Gardnerella vaginalis DSM4944 and Propionibacterium freudenreichii subsp. shermanii DSM4902, which gave slight signals. Furthermore, we established a method for isolation and identification of bifidobacteria from food by using a PCR assay without prior isolation of DNA but breaking the cells with proteinase K. By this method, all Bifidobacterium strains lead to a DNA product of the expected size. We also established a quick assay to quantitatively measure Bifidobacterium counts in food and feces by dilution plating and colony hybridization. We were able to demonstrate that 2.1 x 10(6) to 2.3 x 10(7) colonies/g of sour milk containing bifidobacteria hybridized with the specific nucleotide probe. With these two methods, genus-specific colony hybridization and genus-specific PCR, it is now possible to readily and accurately detect any bifidobacteria in food and fecal samples and to discriminate between them and members of other genera.
机译:在16S rRNA的V9可变区中,双歧杆菌属特异的靶序列已被精心设计,并用于开发杂交探针。该探针名为lm3(5'-CGGGTGCTI * CCCACTTTCATG-3')的特异性用于鉴定所有已知类型的菌株,并将其与其他细菌区分开。测试了德国培养物馆Deutsche Sammlung von Mikroorganismen und Zellkulturen可获得的所有双歧杆菌的30种类型菌株,6种可商购的生产菌株以及34种密切相关的相关菌株(作为阴性对照)。通过菌落杂交,所有测试的双歧杆菌均显示出不同的阳性信号,而除阴道加德纳菌DSM4944和弗氏丙酸杆菌亚种以外,所有阴性对照均未显示出明显的斑点。 shermanii DSM4902,发出轻微信号。此外,我们建立了一种通过使用PCR试验从食品中分离和鉴定双歧杆菌的方法,而无需事先分离DNA,而是用蛋白酶K破坏细胞。通过这种方法,所有双歧杆菌菌株都能产生预期大小的DNA产物。我们还建立了一种快速测定法,通过稀释平板和菌落杂交来定量测量食物和粪便中双歧杆菌的数量。我们能够证明,每克含双歧杆菌的酸性乳汁中有2.1 x 10(6)到2.3 x 10(7)菌落/ g与特定核苷酸探针杂交。使用属特异性菌落杂交和属特异性PCR这两种方法,现在可以轻松,准确地检测食物和粪便样品中的任何双歧杆菌,并区分它们与其他属。

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