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Breeding of New Strains of Mushroom by Basidiospore Chemical Mutagenesis

机译:孢子孢子化学诱变选育新菌种

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Chemical mutagenesis of basidiospores of Hypsizygus marmoreus generated new mushroom strains. The basidospores were treated with methanesulfonate methylester, an alkylating agent, to yield 400 mutant monokaryotic mycelia. Twenty fast-growing mycelia were selected and mated each other by hyphal fusion. Fifty out of the 190 matings were successful (mating rate of 26.3%), judged by the formation of clamp connections. The mutant dikaryons were cultivated to investigate their morphological and cultivation characteristics. Mutant strains No. 3 and No. 5 showed 10% and 6% increase in fruiting body production, respectively. Eight mutant strains showed delayed and reduced primordia formation, resulting in the reduced production yield with prolonged cultivation period. The number of the fruiting bodies of mutant No. 31, which displayed reduced primordial formation, was only 15, compared to the parental number of 65. Another interesting phenotype was a fruiting body with a flattened stipe and pileus. Dikaryons generated by mating with the mutant spore No. 14 produced flat fruiting bodies. Further molecular biological studies will provide details of the mechanism. This work shows that the chemical mutagenesis approach is highly utilizable in the development of mushroom strains as well as in the generation of resources for molecular genetic studies.
机译:化学变形诱变的玛格氏菌的孢子产生了新的蘑菇菌株。用甲磺酸甲酯(一种烷基化剂)处理该孢子孢子,产生400个突变的单核细胞菌丝体。选择了二十个快速生长的菌丝体,并通过菌丝融合使其交配。通过夹紧连接的形成判断,在190个配合中,有50个成功(匹配率为26.3%)。培养突变体双核生物以研究其形态和栽培特性。 3号和5号突变株的子实体产量分别增加了10%和6%。八个突变菌株显示出延迟和减少的原基形成,从而导致产量降低,且培养时间延长。与亲本的65个相比,突变体No.31的子实体的数目显示出减少的原始基序形成,只有15个。另一个有趣的表型是具有扁平的柄和绒头的子实体。通过与14号突变孢子交配而产生的双核生物产生扁平子实体。进一步的分子生物学研究将提供机理的细节。这项工作表明,化学诱变方法在蘑菇菌株的开发以及分子遗传学研究资源的产生中具有很高的利用性。

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