School of Life Sciences, Heriot-Watt University, Edinburgh, UK.
J Fish Dis. 2011 Apr;34(4):311-7. doi: 10.1111/j.1365-2761.2011.01237.x. Epub 2011 Feb 15.
The biochemical and cell surface characteristics of 63 non-motile isolates of Yersinia ruckeri from various sources were compared using the API 20E rapid identification system and conventional phenotypic methods. Eight individual phenotypic groups from a variety of fish species were observed from the data set. Non-motile isolates were not exclusively observed from serogroup O1; membership of biotype 2 was recorded for representatives from serogroups O2-O7. Variations in phenotypes highlights that new clonal groups are arising and that the current typing scheme requires expansion. Previously, it was hypothesized that disease was caused by a few virulent clones; data in this paper suggests that this assumption is not the case. The lipopolysaccharide (O antigen) type in the non-motile biotype was different from other isolates of Y. ruckeri.
采用 API 20E 快速鉴定系统和常规表型方法比较了来自不同来源的 63 株非运动性鲁氏耶尔森菌的生化和细胞表面特征。从数据集观察到来自各种鱼类的 8 个个体表型群。非运动性分离株并非仅从 O1 血清群中观察到;生物型 2 的成员记录于 O2-O7 血清群的代表中。表型的变化表明新的克隆群正在出现,并且当前的分型方案需要扩展。以前,有人假设疾病是由少数毒力克隆引起的;本文中的数据表明情况并非如此。非运动性生物型的脂多糖(O 抗原)型与其他鲁氏耶尔森菌分离株不同。