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首页> 外文期刊>Plant Disease >PIRA-PCR for Detection of Fusarium fujikuroi Genotypes with Carbendazim-Resistance Alleles
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PIRA-PCR for Detection of Fusarium fujikuroi Genotypes with Carbendazim-Resistance Alleles

机译:PIRA-PCR检测多菌灵抗性等位基因镰刀菌的基因型

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摘要

Carbendazim, a methyl benzimidazole carbamate (MBC)-group fungicide, has been used to control rice bakanae disease, caused by Fusarium fujikuroi (teleomorph: Gibberella fujikuroi), for decades in China. Previous research revealed that point mutations(El98V, GAG to GTG at codon 198, and F200Y, TTC to TAC at codon 200) of the $2-tubulin gene conferred resistance of F. fujikuroi to MBC. In this study, primer-introduced restriction analysis polymerase chain reaction (P1RA-PCR) was developed to determinegenotypes with resistance of F. fujikuroi to MBC. A PCR template of each strain was created by an outer primer pair. Fragments with 177 bp (for mutation at codon 235) and 146 bp (for E198V) were amplified by nested PCR,with two inner primer pairs designed and synthesized according to the nucleotide sequence of fS2-tubulin for further enzyme digestion validation, respectively. AccII and PmaCl restriction enzyme recognition sites were introduced artificially by inner primers to differentiate MBC-sensitive and -resistant strains, respectively. The sensitivity of each strain to MBC was indirectly determined by analyzing electrophoresis patterns of the resulting amplified fragments after simultaneous digestion by both AccII and PmaCl. PIRA-PCR produced the same result as conventional methods in 6% of the time. PIRA-PCR is a sensitive and effective method for genotyping resistance alleles of F. fujikuroi strains to MBC.
机译:在中国数十年来,多菌灵是一种甲基苯并咪唑氨基甲酸酯(MBC)类杀真菌剂,已被用于控制由富士镰刀菌(Fusarium fujikuroi)(teleomorph:Gibberella fujikuroi)引起的水稻巴卡那病。先前的研究表明,$ 2-微管蛋白基因的点突变(E98V,GAG为198密码子的GTG,F200Y,TTC为200密码子的TAC)赋予了F.fujikuroi对MBC的抗性。在这项研究中,引物引入的限制性酶切分析聚合酶链反应(P1RA-PCR)被开发出来,以确定对富士康对MBC有抗性的基因型。通过外部引物对产生每个菌株的PCR模板。通过巢式PCR扩增177 bp(用于235位密码子的突变)和146 bp(用于E198V)的片段,并根据fS2-微管蛋白的核苷酸序列设计和合成了两个内部引物对,分别用于进一步的酶切验证。内部引物人工引入AccII和PmaCl限制酶识别位点,分别区分MBC敏感和耐药菌株。通过同时分析AccII和PmaCl消化后得到的扩增片段的电泳图谱,间接确定每种菌株对MBC的敏​​感性。 PIRA-PCR在6%的时间内产生了与常规方法相同的结果。 PIRA-PCR是一种敏感而有效的方法,可用于对富士黑狐菌菌株的MBC抗性等位基因进行基因分型。

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