4040 East Campus Loop, 115Q NVDC, School of Veterinary Medicine and Biomedical Sciences, University of Nebraska-Lincoln, Lincoln, NE68583-0906, USA.
Anim Health Res Rev. 2020 Dec;21(2):164-167. doi: 10.1017/S1466252320000092. Epub 2020 Dec 2.
Advances in molecular and proteomic technologies and methods have enabled new diagnostic tools for bovine respiratory pathogens that are high-throughput, rapid, and extremely sensitive. Classically, diagnostic testing for these pathogens required culture-based approaches that required days to weeks and highly trained technical staff to conduct. However, new advances such as multiplex hydrolysis probe-based real-time PCR technology have enabled enhanced and rapid detection of bovine respiratory disease (BRD) pathogens in a variety of clinical specimens. These tools provide many advantages and have shown superiority over culture for co-infections/co-detections where multiple pathogens are present. Additionally, the integration of matrix-assisted laser desorption ionization time of flight mass spectrometry (MS) into veterinary diagnostic labs has revolutionized the ability to rapidly identify bacterial pathogens associated with BRD. Recent applications of this technology include the ability to type these opportunistic pathogens to the sub-species level (specifically Mannheimia haemolytica) using MS-based biomarkers, to allow for the identification of bacterial genotypes associated with BRD versus genotypes that are more likely to be commensal in nature.
分子和蛋白质组学技术和方法的进步使针对牛呼吸道病原体的新型诊断工具具有高通量、快速和极高灵敏度的特点。传统上,这些病原体的诊断测试需要基于培养的方法,这些方法需要数天到数周的时间,并且需要高度训练有素的技术人员来进行。然而,新的进展,如基于多重水解探针的实时 PCR 技术,已经能够在各种临床标本中增强和快速检测牛呼吸道疾病 (BRD) 病原体。这些工具提供了许多优势,并且在存在多种病原体的混合感染/共同检测方面已经显示出优于培养的优势。此外,基质辅助激光解吸电离飞行时间质谱 (MS) 的整合已经彻底改变了兽医诊断实验室快速识别与 BRD 相关的细菌病原体的能力。该技术的最新应用包括使用基于 MS 的生物标志物对这些机会性病原体进行亚种水平(特别是溶血曼海姆菌)分型的能力,从而能够识别与 BRD 相关的细菌基因型与更可能是共生的基因型。