Amany Dieb Bahr, Fayez Awad-allah Salib, Yousef A. Soliman, Mahmoud Mohamed Amin
Abstract
Advances in Animal and Veterinary Sciencesor physiological stress induced by unfavourable climatic and ecological conditions, including severely bad weather, improper management, co-mingling, overcrowding, shipping or prior infection with mycoplasma, respiratory viruses or certain other pathogens, may therefore contribute to pneumonic pasteurellosis (Tadesse et al., 2017).The acute febrile course of pneumonic pasteurellosis is characterized by death of infected animals within few days after the onset of clinical signs if they are not properly Research ArticleAbstract | Pasteurella multocida (P.multocida) and Mannheimia haemolytica (M.haemolytica) are widespread pathogens, resulting in economically significant animal diseases.This study aimed to investigate some of the epidemiological aspects of P. multocida and M. haemolytica infections in Egypt, proper diagnosis of P. multocida and M. haemolytica infections, describe the distribution of capsular types of P. multocida isolates and measure the prevalence of multi-drug resistance in bacterial isolates recovered from cattle, buffaloes, sheep, and goats (ruminants) suffering from respiratory manifestations.A total of 155 deep nasal swabs were collected from 20 cattle, 37 buffaloes, 80 sheep, and 18 goats.Detection of 24 P. multocida and 12 M. haemolytica isolates from tested samples was carried out by bacteriological isolation, then identified by biochemical tests, and confirmed by polymerase chain reaction (PCR).The highest rate of infection with P. multocida and M. haemolytica has been found in young males (0-6 months age group).P. multocida capsular group A was found in the majority of the P. multocida strains (87.5%), while group D bacteria were identified in only three samples.Capsular groups B, E, and F have not been detected.The antimicrobial susceptibility pattern of P. multocida and M. haemolytica isolates indicated a high prevalence of multi-resistance to the majority of antimicrobials used as high resistance was detected against ampicillin, amoxicillin, penicillin-G, tetracycline, streptomycin, cefotaxime and chloramphenicol, however, 100% sensitivity was demonstrated by M. haemolytica isolates to gentamicin.Therefore, continuous monitoring of antimicrobial resistance is important to prevent the dissemination of resistant bacteria..