实时荧光定量PCR法检测山羊和绵羊的流产布鲁氏菌

Muhammad Bilawal Arain, Abdullah Babar, Muhammad Ibrahim Panhwar, Khush Hal, Muhammad Mubashir Farooq, Zainab Lanjar, A. Soomro, Saqib Ali Fazilani, M. N. Jan, Loveson Lakhani, A. Yousaf, Inayatullah Sarki, Rehana Shahnawaz, Mathan
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引用次数: 3

摘要

本研究利用分子技术在拉合尔地区进行了一项分子研究,以证实在山羊和绵羊中存在abortus b抗原。小反刍动物可能感染流产杆菌(牛布鲁氏菌病的病原体),这使布鲁氏菌病控制工作复杂化,因为大多数布鲁氏菌病控制规划依靠免疫检测而不是基因组检测来确定在反刍动物中传播的特定物种。本次调查共采集山羊血清1270份,绵羊血清770份。在已经用玫瑰孟加拉试验进行检测后,所有阳性标本都用实时PCR技术进行检测。RBT证实,山羊和绵羊的布鲁氏菌病患病率分别为21.43±0.37%和18.11±0.12%。在230份阳性山羊样本中,150份绵羊和山羊样本(65.21±0.51)中检测到abortus,在165份血清阳性绵羊样本中,118份(71.51±0.21%)中检测到abortus。小型反刍动物的流产布鲁氏菌感染可能是由多种因素共同引起的,包括小型反刍动物与大型反刍动物混合饲养、共用同一牧场以及农场中存在水库宿主,所有这些因素都可能是布鲁氏菌在非物种宿主中交叉感染的危险因素。已经确定,在巴基斯坦,产弧菌是山羊和绵羊布鲁氏菌病的病原体。本研究结果可用于制定成功的小反刍动物布鲁氏菌病根除和控制策略,并可应用于其他动物。
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Detection of Brucella Abortus in Caprine and Ovine by Real-Time PCR Assay
A molecular research was carried out in the areas of Lahore in order to confirm the existence of B. abortus antigen in Caprine and ovine by utilizing molecular techniques in this study. Small ruminants can be infected with B. abortus (the causative agent of bovine brucellosis), which complicates brucellosis control efforts because most brucellosis control programmes rely on immunological testing rather than genomic testing to determine the specific species circulating in ruminants. Now at this investigation, n = 1270 goat serum samples and n = 770 sheep serum samples were collected, respectively. After already being tested with the Rose Bengal test, all positive specimens were examined to the real-time PCR technique. RBT confirmed brucellosis prevalence of 21.43±0.37% and 18.11±0.12 in caprine and ovine respectively. Out of 230 positive goat samples, real-time PCR found B. abortus in 150 samples (65.21±0.51) in sheep and goats and 118 samples (71.51±0.21%) out of 165 seropositive sheep samples. Brucella abortus infection in small ruminants could be caused by a combination of factors including mixed farming of small and large ruminants, sharing of the same pasture, and the presence of reservoir hosts on a farm, all of which could be risk factors for Brucella species cross-infection in non-species hosts. It has been determined that B. abortus is the causative agent of caprine and ovine brucellosis in the country of Pakistan. Results of this study can be utilised to develop successful brucellosis eradication and control strategies in small ruminants, which can be applied to other animals.
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