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揭示呼吸道合并感染:用于纳米流体PCR平台上鸟类呼吸道病原体的广谱检测分析

Disclosing respiratory co-infections: a broad-range panel assay for avian respiratory pathogens on a nanofluidic PCR platform.

作者信息

Croville Guillaume, Foret Charlotte, Heuillard Pauline, Senet Alexis, Delpont Mattias, Mouahid Mohammed, Ducatez Mariette F, Kichou Faouzi, Guerin Jean-Luc

机构信息

a IHAP, Université de Toulouse, ENVT, INRA , Toulouse , France.

b Veterinary Practice , Temara , Morocco.

出版信息

Avian Pathol. 2018 Jun;47(3):253-260. doi: 10.1080/03079457.2018.1430891. Epub 2018 Feb 27.

DOI:10.1080/03079457.2018.1430891
PMID:29350071
Abstract

Respiratory syndromes (RS) are among the most significant pathological conditions in edible birds and are caused by complex coactions of pathogens and environmental factors. In poultry, low pathogenic avian influenza A viruses, metapneumoviruses, infectious bronchitis virus, infectious laryngotracheitis virus, Mycoplasma spp. Escherichia coli and/or Ornithobacterium rhinotracheale in turkeys are considered as key co-infectious agents of RS. Aspergillus sp., Pasteurella multocida, Avibacterium paragallinarum or Chlamydia psittaci may also be involved in respiratory outbreaks. An innovative quantitative PCR method, based on a nanofluidic technology, has the ability to screen up to 96 samples with 96 pathogen-specific PCR primers, at the same time, in one run of real-time quantitative PCR. This platform was used for the screening of avian respiratory pathogens: 15 respiratory agents, including viruses, bacteria and fungi potentially associated with respiratory infections of poultry, were targeted. Primers were designed and validated for SYBR green real-time quantitative PCR and subsequently validated on the Biomark high throughput PCR nanofluidic platform (Fluidigm©, San Francisco, CA, USA). As a clinical assessment, tracheal swabs were sampled from turkeys showing RS and submitted to this panel assay. Beside systematic detection of E. coli, avian metapneumovirus, Mycoplasma gallisepticum and Mycoplasma synoviae were frequently detected, with distinctive co-infection patterns between French and Moroccan flocks. This proof-of-concept study illustrates the potential of such panel assays for unveiling respiratory co-infection profiles in poultry.

摘要

呼吸道综合征(RS)是食用禽类中最严重的病理状况之一,由病原体和环境因素的复杂共同作用引起。在家禽中,低致病性甲型禽流感病毒、偏肺病毒、传染性支气管炎病毒、传染性喉气管炎病毒、支原体属、大肠杆菌和/或火鸡中的鼻气管鸟杆菌被认为是RS的关键共感染因子。曲霉菌属、多杀性巴氏杆菌、副鸡禽杆菌或鹦鹉热衣原体也可能参与呼吸道疾病的爆发。一种基于纳米流体技术的创新定量PCR方法,能够在一次实时定量PCR运行中,同时使用96种病原体特异性PCR引物筛选多达96个样本。该平台用于筛选禽呼吸道病原体:针对15种呼吸道病原体,包括可能与家禽呼吸道感染相关的病毒、细菌和真菌。设计并验证了用于SYBR绿实时定量PCR的引物,随后在Biomark高通量PCR纳米流体平台(Fluidigm©,美国加利福尼亚州旧金山)上进行了验证。作为一项临床评估,从表现出RS的火鸡中采集气管拭子,并提交至该检测组进行检测。除了系统检测大肠杆菌外,还经常检测到禽偏肺病毒、鸡毒支原体和滑液支原体,法国和摩洛哥鸡群之间存在独特的共感染模式。这项概念验证研究说明了此类检测组在揭示家禽呼吸道共感染情况方面的潜力。

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