Bingham D P, Moore R, Richards A B
Department of Biology and Geosciences, West Texas State University, Canyon 79016.
Am J Vet Res. 1990 Aug;51(8):1161-6.
A commercially available microbiological identification system and DNA:DNA hybridization were used to determine relationships between and within serovars 1-13 of Pasteurella haemolytica, and between P haemolytica and P multocida and 4 species of Actinobacillus. All serovars of P haemolytica that belonged to biovar A were related with mean DNA homology of 78%, whereas all serovars of P haemolytica that belonged to biovar T were related to each other with mean DNA homology of 90%. The DNA:DNA hybridization between strains of biovars A and T ranged from 3 to 13%, indicating little or no genetic relationship between the 2 biovars of P haemolytica. The DNA homology between all serovars of P haemolytica and other species of non-P haemolytica bacteria tested (P multocida and actinobacilli) was less than 14%, suggestive of essentially no genetic relationship of P haemolytica with the ATCC reference strains of the genus Pasteurella or the genus Actinobacillus. Enzymatic differences were observed between P haemolytica and the other non-P haemolytica bacteria tested; however, the microbiological identification system that uses enzymatic reactions could not distinguish among biovars of P haemolytica. Results of this research support other data that suggest that biovars A and T of P haemolytica should be classified as separate species, but do not support the inclusion of either biovar A or T within the genus Actinobacillus.
使用一种市售的微生物鉴定系统和DNA:DNA杂交技术来确定溶血巴斯德菌1 - 13血清型之间及其内部的关系,以及溶血巴斯德菌与多杀巴斯德菌和4种放线杆菌之间的关系。属于生物变种A的所有溶血巴斯德菌血清型的平均DNA同源性为78%,而属于生物变种T的所有溶血巴斯德菌血清型彼此之间的平均DNA同源性为90%。生物变种A和T的菌株之间的DNA:DNA杂交率在3%至13%之间,表明溶血巴斯德菌的这两个生物变种之间几乎没有或没有遗传关系。溶血巴斯德菌的所有血清型与测试的其他非溶血巴斯德菌(多杀巴斯德菌和放线杆菌)之间的DNA同源性小于14%,这表明溶血巴斯德菌与巴斯德菌属或放线杆菌属的ATCC参考菌株基本上没有遗传关系。在溶血巴斯德菌与测试的其他非溶血巴斯德菌之间观察到酶学差异;然而,使用酶促反应的微生物鉴定系统无法区分溶血巴斯德菌的生物变种。本研究结果支持其他数据,这些数据表明溶血巴斯德菌的生物变种A和T应被分类为不同的物种,但不支持将生物变种A或T纳入放线杆菌属。