首页> 外文期刊>Turkish Journal of Agriculture: Food Science and Technology >Genotyping via Sequence Related Amplified Polymorphism Markers in Fusarium culmorum
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Genotyping via Sequence Related Amplified Polymorphism Markers in Fusarium culmorum

机译:通过序列相关的扩增镰刀菌基因多态性标记进行基因分型

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Fusarium culmorum is predominating causal agent of head blight (HB) and root rot (RR) in cereals worldwide. Since F. culmorum has a great level of genetic diversity and the parasexual stage is assumed for this phytopathogen, characterization of isolates from different regions is significant step in food safety and controlling the HB. In this study, it was aimed to characterize totally 37 F. culmorum isolates from Turkey via sequence related amplified polymorphism (SRAP) marker based genotyping. MAT-1/MAT-2 type assay was also used in order to reveal intraspecific variation in F. culmorum. MAT-1 and MAT-2 specific primer pairs for mating assays resulted in 210 and 260 bp bands, respectively. 11 of isolates were belonged to MAT-1 type whereas 19 samples were of MAT-2. Remaining 7 samples yielded both amplicons. Totally 9 SRAP primer sets yielded amplicons from all isolates. Genetic similarity values were ranged from 39 to 94.7%. Total band number was 127 and PCR product sizes were in the range of 0.1-2.5 kb. Amplicon numbers for individuals were ranged from 1 to 16. According to data obtained from current study, SRAP based genotyping is powerful tool for supporting the data obtained from investigations including phenotypic and agro-ecological characteristics. Findings showed that SRAP-based markers could be useful in F. culmorum characterization.
机译:镰刀菌是世界范围内谷物中头枯病(HB)和根腐病(RR)的主要病因。由于细角镰刀菌具有很高的遗传多样性水平,并且假定该植物病原体处于双性恋阶段,因此表征不同地区的分离株是食品安全和控制HB的重要步骤。在这项研究中,其目的是通过基于序列相关的扩增多态性(SRAP)标记的基因分型来鉴定来自土耳其的总共37个F. culmorum分离株。还使用了MAT-1 / MAT-2型分析法,以揭示黄瓜镰刀菌的种内变异。用于交配测定的MAT-1和MAT-2特异性引物对分别产生210和260 bp的条带。分离物中有11个属于MAT-1类型,而MAT-2有19个样品。剩余的7个样品产生了两个扩增子。总共9个SRAP引物对可从所有分离物中得到扩增子。遗传相似性值在39%至94.7%之间。总带数为127,PCR产物大小在0.1-2.5kb范围内。个体的扩增子数量在1到16之间。根据当前研究获得的数据,基于SRAP的基因分型是支持从包括表型和农业生态特征在内的研究中获得数据的强大工具。研究结果表明,基于SRAP的标记可能在鉴定镰刀菌中有用。

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