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Epidemiological methods for use with Actinobacillus pleuropneumoniae: New developments in serotyping and future prospects.

机译:流行病学方法与Actinobacillus pleuropneumoniae一起使用:血清算法和未来前景的新发展。

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Actinobacillus pleuropneumoniae, the cause of porcine pleuropneumonia, is responsible for significant economic losses throughout the world. Serotyping, currently the "gold standard" method for strain identification, has been the mainstay technique for epidemiological monitoring and also can inform on decisions as to appropriate therapy, disease prevention or eradication. There are 16 serotypes (1-4, 5a, 5b, 6-15) with different ones predominating in particular geographical regions. Serotyping is typically determined by the immunological reactivity of rabbit serum to different surface polysaccharides. Conventional serotyping methods include complement fixation, indirect haemagglutination, ELISA,agglutination and coagulation, latex agglutination, indirect fluorescent antibody labeling, immunodiffusion and ring precipitation. These methods are not without their limitations: individual batches of test sera show variation and there is cross reaction between different serotypes e.g. between serotypes 3, 6 and 8. To circumvent problems associated with immunological methods, investigators have used gene-based methods e.g. multiplex PCR reactions that can identify strains of serotype 2, 5, 6 and 8. We now describe a serotype 3 specific PCR that can be used in a multiplex format with the A. pleuropneumoniae apxⅣ specific gene. Other methods that have been used in epidemiological/identification studies include ribotyping, sequence analysis of ribosomal intergenic regions, pulsed field gel electrophoresis,restriction endonuclease fingerprinting, aroA gene PCR-restriction fragment length polymorphism, 16S RNA sequencing, rapid amplified polymorphic DNA analysis and pulsed field gel electrophoresis. Typing methods based on the genes involved in the expression of ApxⅠ-Ⅲ toxin and the outer membrane protein OmlA have been used to inform on the serotype. However, based on the three published multilocus enzyme electrophoresis studies (MLEE) with A.pleuropneumoniae we have hypothesised that multilocus sequence typing (MLST) would be a valuable tool in epidemiological and evolutionary studies with this important pathogen. MLST involves the DNA sequencing of 7housekeeping genes that are distributed around the genome and are not proximal to others that may be under immune selection. MLST has the advantage over conventional laboratory based techniques that the data obtained are unambiguous and can be rapidly shared with other laboratories throughout the world via the intemet. Preliminary data,using isolates from Denmark, China and the UK, indicate that MLST is more discriminatory than serotyping and will be of considerable value in epidemiological studies both at the micro (within herd) and macro (global) levels and in understanding the evolution of A. pleuropneumoniae.
机译:Actinobacillus Pleuropneumoniae,猪胸膜炎的原因,负责全世界的重要经济损失。血清型,目前“黄金标准”的应变鉴定方法,是流行病学监测的主要技术,也可以为适当治疗,疾病预防或根除的决策提供信息。有16个血清型(1-4,5a,5b,6-15),其中不同的不同地理区域主要占主导地位。血清型通常通过兔血清对不同表面多糖的免疫反应性确定。常规的血清型化方法包括补体固定,间接血凝,ELISA,凝集和凝固,胶乳凝集,间接荧光抗体标记,免疫分配和环沉淀。这些方法没有局限性:单个批次的试验血清显示变化,不同的血清型之间存在交叉反应。在血清型3,6和8之间。为了规避与免疫学方法相关的问题,研究者使用基于基于基因的方法。可以鉴定血清型2,5,6和8的菌株的多重PCR反应。我们现在描述血清型3个特异性PCR,其可以以多重格式用于A.PleuropneumoniaeAPXα特异性基因。用于流行病学/识别研究的其他方法包括核糖体中间核糖体区域的核糖型分析,脉冲场凝胶电泳,限制性内切核酸酶指纹识别,aroa基因PCR限制片段长度多态性,16s RNA测序,快速扩增的多晶晶态DNA分析和脉冲现场凝胶电泳。基于APXⅠ-Ⅲ毒素表达和外膜蛋白OMLA表达的基因的键入方法已被用于通知血清型。然而,基于三个公开的多层酶电泳研究(MLEE),具有A.Pleuropneumoniae,我们已经假设多点序列打字(MLST)是具有这种重要病原体的流行病学和进化研究中的有价值的工具。 MLST涉及7次休息基因的DNA测序,其围绕基因组分布,并不近于可能在免疫选择下的其他方面。 MLST具有优于传统的基于实验室的技术,即获得的数据是明确的,可以通过互联网与世界各地的其他实验室迅速分享。使用来自丹麦,中国和英国的孤立途径的初步数据表明MLST比血清型更具歧视性,并且在微观(群体内)和宏(全球)水平中的流行病学研究中具有相当大的价值,并且理解进化A. pleuropneumoniae。

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