Manzano M, Cocolin L, Astori G, Pipan C, Botta G A, Cantoni C, Comi G
Dipartimento di Scienze degli Alimenti, Facoltà di Agraria, Università di Udine, Italy.
Mol Cell Probes. 1998 Aug;12(4):227-34. doi: 10.1006/mcpr.1998.0176.
The authors have developed an easy and rapid detection and identification system for Salmonella spp. in food. The gene inv A was selected as the target sequence. Oligonucleotides derived from conserved regions of this gene were able to exclusively prime the amplification of a 389 bp fragment when Salmonella spp. DNA was used as the template. An internal Salmonella spp. specific DNA probe was used for confirmation of the amplified polymerase chain reaction(PCR)product, by Southern blot or microplate-capture hybridization assay. In this fashion the sensitivity of the method was increased 100-fold (4.5 fg total DNA). To validate the method, a total of 75 food samples were tested. The PCR-microplate capture hybridization assay is easy to perform and much faster than traditional detection methods for Salmonella spp. in food. Hybridization in microtitre plates is more readily observed than in Southern blot and is more sensitive than conventional agarose gel electrophoresis.
作者开发了一种用于食品中沙门氏菌属的简便快速检测与鉴定系统。选择inv A基因作为目标序列。当以沙门氏菌属DNA为模板时,源自该基因保守区域的寡核苷酸能够特异性地引发一段389 bp片段的扩增。使用沙门氏菌属特异性内部DNA探针,通过Southern印迹或微孔板捕获杂交试验来确认扩增的聚合酶链反应(PCR)产物。通过这种方式,该方法的灵敏度提高了100倍(总DNA为4.5 fg)。为验证该方法,共检测了75份食品样本。PCR-微孔板捕获杂交试验操作简便,比食品中沙门氏菌属的传统检测方法快得多。微孔板中的杂交比Southern印迹更容易观察,且比传统琼脂糖凝胶电泳更灵敏。