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Diagnosis of flavobacteriosis by direct amplification of rRNA genes

机译:直接扩增rRNA基因诊断黄杆菌病

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A broad-range bacterial PCR method with universal 16S rDNA targeting primers and bacterial cultivation was used to identify the putative pathogen in flavobacterial outbreaks. Restriction fragment length polymorphism (PCR-RFLP) analysis and sequencing of the partial 16S rDNA PCR products of 10 skin samples and 10 representative isolates derived from the same fish specimens revealed differences between direct molecular and cultivation-based analysis. Flavobacterium columnare-like sequences dominated in the direct molecular analysis in most cases, whereas most of the isolates belonged to a phylogenetically heterogeneous group of flavobacteria clustering with F. hibernum. F. columnare was isolated in only 1 outbreak. The possible explanations for the different results may be attributable to difficulties in the plate cultivation procedure of external flavobacterial samples. During plate cultivation, the dominating Flavobacterium species can be masked by saprophytic species of the same genus or other genera, or the growth of flavobacteria can be completely inhibited by antagonistic bacteria such as Pseudomonas. Direct analysis of the prevailing 16S rDNA sequences avoids the problems with cultivation and may thus be preferable for the diagnosis of flavobacterial diseases. When isolating flavobacteria from external samples, serial dilution of the sample before plating can improve the results.
机译:使用具有通用16S rDNA靶向引物和细菌培养的大范围细菌PCR方法来鉴定黄细菌爆发中的推定病原体。限制性片段长度多态性(PCR-RFLP)分析和部分10S皮肤样品的16S rDNA PCR产物的测序以及从同一鱼标本中提取的10个代表性分离株的测序揭示了直接分子分析和基于培养的分析之间的差异。在大多数情况下,黄杆菌属类序列在直接分子分析中占主导地位,而大多数分离物则属于黄褐菌聚类的黄细菌的系统发生异质性群体。 F. columnare仅在1次暴发中被隔离。对于不同结果的可能解释可能归因于外部黄细菌样品的平板培养过程中的困难。在平板培养过程中,主要的黄杆菌属物种可以被相同属或其他属的腐生菌种所掩盖,或者黄细菌的生长可以被诸如假单胞菌等拮抗细菌完全抑制。直接分析流行的16S rDNA序列避免了培养问题,因此可能更适合诊断黄细菌性疾病。从外部样品中分离出黄细菌时,在电镀前对样品进行连续稀释可以改善结果。

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