Doonan J, Denman S, Gertler C, Pachebat J A, Golyshin P N, McDonald J E
School of Biological Sciences, Bangor University, Bangor, UK.
J Appl Microbiol. 2015 Jan;118(1):193-201. doi: 10.1111/jam.12677. Epub 2014 Nov 27.
We assessed the veracity of intergenic spacer region 1 (ITS1) ribotyping for the rapid, inexpensive and accurate identification of Brenneria goodwinii and Gibbsiella quercinecans that are associated with acute oak decline (AOD) in the UK.
Agarose gel electrophoresis and polyacrylamide gel electrophoresis (PAGE) were applied for the typing of ITS1 PCR amplicons from strains of B. goodwinii, G. quercinecans and related species (n = 34). The number and length of ITS1 amplicons varied significantly between strains. ITS1 profiles generated via PAGE were used to differentiate species using a neighbour-joining phylogram. The ITS1 phylogram was compared against DNA gyrase B (gyrB) gene sequences from the same strains, demonstrating that ITS1 ribotyping is as effective as gyrB at resolving G. quercinecans and B. goodwinii to the species level.
The ITS1 gene has been successfully employed as a novel marker to resolve newly described AOD-associated Enterobacteriaceae, B. goodwinii and G. quercinecans, to species level.
ITS1 ribotyping of B. goodwinii and G. quercinecans provides equivalent sensitivity to the current standard method for strain identification (sequence analysis of the gyrB gene), but with reduced processing time and cost. Furthermore, the ITS1 gene is widely applicable as a rapid and inexpensive typing system for Enterobacteriaceae.
我们评估了基因间隔区1(ITS1)核糖体分型在快速、低成本且准确鉴定与英国急性橡树衰退(AOD)相关的古德温布伦纳氏菌(Brenneria goodwinii)和栎树吉氏杆菌(Gibbsiella quercinecans)方面的准确性。
采用琼脂糖凝胶电泳和聚丙烯酰胺凝胶电泳(PAGE)对来自古德温布伦纳氏菌、栎树吉氏杆菌及相关物种(n = 34)菌株的ITS1 PCR扩增产物进行分型。不同菌株间ITS1扩增产物的数量和长度差异显著。通过PAGE生成的ITS1图谱用于利用邻接法系统发育树区分物种。将ITS1系统发育树与相同菌株的DNA促旋酶B(gyrB)基因序列进行比较,结果表明ITS1核糖体分型在将栎树吉氏杆菌和古德温布伦纳氏菌分辨到物种水平方面与gyrB一样有效。
ITS1基因已成功用作一种新型标记,可将新描述的与AOD相关的肠杆菌科细菌、古德温布伦纳氏菌和栎树吉氏杆菌分辨到物种水平。
古德温布伦纳氏菌和栎树吉氏杆菌的ITS1核糖体分型对当前菌株鉴定的标准方法(gyrB基因序列分析)具有同等的敏感性,但处理时间和成本更低。此外,ITS1基因作为一种快速且低成本的肠杆菌科分型系统具有广泛的适用性。