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首页> 外文期刊>Micologia aplicada international: The refereed journal of applied mycology >A new method for producing hybrid strains of the entomopathogenic fungus verticillium lecanii (lecanicillium spp.) through protoplast fusion by using nitrate non-utilizing (nit) mutants
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A new method for producing hybrid strains of the entomopathogenic fungus verticillium lecanii (lecanicillium spp.) through protoplast fusion by using nitrate non-utilizing (nit) mutants

机译:利用硝酸盐未利用(nit)突变体通过原生质体融合生产昆虫致病性黄萎病菌(lecanicillium spp。)杂交菌株的新方法

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Mycotal and Vertalec are mass-produced fungal strains for insect control. Strain B-2, which was isolated in Japan, has high epiphytic ability on cucumber leaves. Protoplast fusion was performed using these strains of Verticillium lecanii to obtain new strains possessing useful characteristics as biological control agents (BCAs). We used nit mutants for visually selecting the protoplasts. Hybrid strains were subjected to molecular analysis using the polymerase chain reaction-restriction fragment length polymorphisms (PCR-RFLPs) and arbitrarily primed-PCR (AP-PCR) in order to determine protoplast fusion and/or genetic recombination. We detected 126, 44, and 4 hybrid strains from the combinations of Vertalec × Mycotal, B-2 × Mycotal, and B-2 × Vertalec, respectively. Morphological characteristics of hybrid strains differed from those of their parental nit mutants. Protoplast fusion of hybrid strains was confifi rmed in genomic DNA, but not in mitochondrial DNA (mtDNA). A uniform biased tendency of the DNA banding pattern was observed depending on the combination of parental strains. The molecular analysis also revealed genetic recombination. These results showed a novel method for producing hybrid strains of the entomopathogenic fungus V. lecanii.
机译:Mycotal和Vertalec是用于昆虫控制的大量生产的真菌菌株。在日本分离的菌株B-2对黄瓜叶片具有较高的附生能力。使用这些黄萎病菌菌株进行原生质体融合以获得具有作为生物防治剂(BCA)有用的特性的新菌株。我们使用nit突变体在视觉上选择原生质体。使用聚合酶链反应-限制性片段长度多态性(PCR-RFLPs)和任意引发的PCR(AP-PCR)对杂交菌株进行分子分析,以确定原生质体融合和/或遗传重组。我们分别从Vertalec×Mycotal,B-2×Mycotal和B-2×Vertalec的组合中检测到126、44和4个杂种菌株。杂种菌株的形态特征与其亲本nit突变体的形态特征不同。杂交菌株的原生质体融合仅限于基因组DNA,而非线粒体DNA(mtDNA)。根据亲本菌株的组合,观察到DNA条带模式的均匀偏差趋势。分子分析还揭示了基因重组。这些结果显示了一种新的方法,用于生产昆虫病原真菌V. lecanii的杂交菌株。

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