Identification of Burkholderia species and genomovars from cystic fibrosis patients by AFLP fingerprinting.

T Coenye, L M Schouls, J R Govan, K Kersters, P Vandamme
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引用次数: 67

Abstract

AFLP is a genomic fingerprinting technique based on the selective amplification of restriction fragments from a total double-digest of genomic DNA. The applicability of this method to differentiate between species and genomovars of the genus Burkholderia was tested, with particular emphasis on taxa occurring in cystic fibrosis patients. In this study, 78 well-characterized strains and field isolates were investigated by two methods of AFLP fingerprinting. In the manual procedure, a radioactively labelled primer was used, amplified fragments were separated by conventional PAGE and the patterns were revealed by autoradiography. In the automated procedure, a fluorescently labelled primer was used in combination with electrophoresis and on-line data collection by means of an automated DNA sequencer. Overall, there was good agreement between the two AFLP procedures and the data were mostly consistent with results obtained from SDS-PAGE of whole-cell proteins and DNA-DNA hybridization experiments. The automated AFLP procedure has considerable technical advantages compared with the manual AFLP procedure, but a thorough visual analysis of the DNA profiles was required to avoid misidentification of some Burkholderia cepacia genomovar III strains.

利用AFLP指纹图谱鉴定囊性纤维化患者伯克霍尔德菌种类和基因组型。
AFLP是一种基于基因组DNA双酶切片段选择性扩增的基因组指纹技术。测试了该方法在区分伯克霍尔德氏菌属物种和基因组变体方面的适用性,特别强调了发生在囊性纤维化患者中的分类群。本研究采用两种AFLP指纹图谱方法对78株特征良好的菌株和野外分离株进行了研究。在人工程序中,使用放射性标记引物,用常规PAGE分离扩增片段,并通过放射自显影显示图案。在自动程序中,荧光标记引物与电泳结合使用,并通过自动DNA测序仪在线收集数据。总的来说,两种AFLP方法之间有很好的一致性,数据与全细胞蛋白和DNA-DNA杂交实验的SDS-PAGE结果基本一致。与人工AFLP程序相比,自动化AFLP程序具有相当大的技术优势,但需要对DNA谱进行彻底的可视化分析,以避免某些洋葱伯克霍尔德菌基因组型菌株的错误鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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