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Application of random amplified polymorphic DNA (RAPD) analysis coupled with microchip electrophoresis for high-resolution identification of Monascus strains

机译:随机扩增多态性DNA(RAPD)分析和微芯片电泳技术在高分辨率鉴定红曲菌菌株中的应用

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摘要

Monascus fungi are commonly used for a variety of food products in Asia, and are also known to produce some biologically active compounds. Since the use of Monascus is expected to increase in food industries, strain-level identification and management of Monascus will be needed in the near future. In the present study, random amplified polymorphic DNA (RAPD) analysis coupled with microchip electrophoresis was applied for this purpose. Evaluations of the analysis stability revealed that reproducible results could be obtained, although template DNA fragmentation could influence the resulting RAPD pattern. RAPD analysis using 15 Monascus strains consisting of four species, M. ruber, M. pilosus, M. purpureus, and M. kaoliang showed that each strain generated a unique RAPD pattern, which allows strain-level identification of Monascus. In addition, the phylogenetic tree constructed from RAPD patterns reflected M. ruber-M. pilosus and M. purpureus-M. kaoliang clusters inferred from both ITS and β-tubulin gene sequences, which indicated that the RAPD pattern could reflect their phylogenetic traits to a certain extent. On the other hand, RAPD analysis did not support the monophyletic clustering of the four Monascus species used in this study, which suggests the necessity of reexamination of species boundaries in Monascus.
机译:红曲霉菌在亚洲广泛用于各种食品,也已知会产生某些生物活性化合物。由于预计在食品工业中使用红曲霉会增加,因此在不久的将来将需要对红曲霉进行菌株水平的鉴定和管理。在本研究中,随机扩增多态性DNA(RAPD)分析与微芯片电泳相结合被用于此目的。分析稳定性的评估表明,尽管模板DNA片段化可能影响所得的RAPD模式,但仍可获得可重复的结果。使用15种红曲霉菌株进行RAPD分析,该菌株由红曲霉,毛状毛霉,purpureus和M. kaoliang 4种组成,显示每种菌株均产生独特的RAPD模式,从而可以对红曲霉进行菌株级鉴定。此外,由RAPD模式构建的系统发育树反映了鲁氏甲烷八叠球菌。 pilosus和M.purpureus-M。从ITS和β-微管蛋白基因序列推断出高粱聚类,表明RAPD模式可以在一定程度上反映其系统发生性状。另一方面,RAPD分析不支持本研究中使用的四种红曲菌物种的单系聚类,这表明有必要对红曲菌中物种边界进行重新检查。

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