Birling Avian Laboratories, Bringelly, NSW, Australia.
J Appl Microbiol. 2010 Jul;109(1):25-34. doi: 10.1111/j.1365-2672.2009.04649.x. Epub 2009 Dec 7.
To validate the effectiveness of a miniaturized most probable number method (mMPN) in enumerating Salmonella from poultry matrices.
A MPN was developed, based on the ISO 6579:2002 method using modified semi-solid Rappaport-Vassiliadis media as the sole selective medium. The validation of the mMPN was shown to not differ significantly from, at the 95% confidence level (Student's t-test P = 0·357) to, the traditional 9-tube MPN (tMPN) using pure cultures of Salmonella ser. Typhimurium, Infantis, Montevideo, Muenster and Salmonella subsp II 1,4,12,27:b:[e,n,x] (Sofia). The validation of naturally and artificially contaminated poultry matrices (carcasses, scald tank water, faeces, caeca and feed) showed that detection using the mMPN compared well to the ISO 6572:2002; sensitivity (92%), specificity (97%) and agreement (KAPPA 0·72). The quantitative comparison between the tMPN and mMPN methods showed that 92% of enumerations were less than ± 1 log different (Student's t-test = 0·13). Financial analysis showed that the mMPN required 64% less media and 56% less labour than the tMPN.
The mMPN is a consistent, easy to automate method for the enumeration of Salmonella from different poultry matrices.
The miniaturized MPN reduces the material and labour cost of the method and enables the uniform and accurate measurement of the effectiveness of intervention strategies in the control of Salmonella colonization of poultry.
验证一种微型最可能数法(mMPN)在禽肉基质中计数沙门氏菌的有效性。
基于 ISO 6579:2002 方法,使用改良的半固体 Rappaport-Vassiliadis 培养基作为唯一的选择性培养基,建立了一种 MPN。结果表明,mMPN 的验证在 95%置信水平(学生 t 检验 P = 0.357)上与传统的 9 管 MPN(tMPN)没有显著差异,tMPN 使用纯培养的沙门氏菌血清型 Typhimurium、Infantis、Montevideo、Muenster 和沙门氏菌亚种 II 1,4,12,27:b:[e,n,x](索非亚)。对自然和人工污染的禽肉基质(胴体、烫水罐水、粪便、盲肠和饲料)的验证表明,使用 mMPN 的检测与 ISO 6572:2002 相比效果良好;灵敏度(92%)、特异性(97%)和一致性(KAPPA 0.72)。tMPN 和 mMPN 方法的定量比较表明,92%的计数相差小于±1 个对数(学生 t 检验=0.13)。财务分析表明,mMPN 比 tMPN 少 64%的培养基和 56%的劳动力。
mMPN 是一种从不同禽肉基质中计数沙门氏菌的一致、易于自动化的方法。
微型 MPN 降低了方法的材料和劳动力成本,并使干预策略在控制沙门氏菌对家禽定植的有效性的统一和准确测量成为可能。