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首页> 外文期刊>Breeding science >Establishment of uracil auxotrophic dikaryotic strains of Lentinula edodes by crossbreeding
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Establishment of uracil auxotrophic dikaryotic strains of Lentinula edodes by crossbreeding

机译:通过杂交建立香菇尿嘧啶营养型二核菌株。

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摘要

The uracil auxotrophic monokaryotic strain 423-9 of Lentinula edodes was crossed with nine monokaryons (cro2-2-9, W66-1, xd2-3-2, QingKe 20A, 241-1-1, 9015-1, L66-2, 241-1-2, and Qing 23A) derived from wild type strains of L. edodes . Nine dikaryotic hybrids were established from these crosses. These hybrids were fruited and 496 single spore isolates were obtained. Among these single spore isolates, 166 were identified as monokaryons under a microscope. We screened these monokaryons on selective medium and obtained 19 uracil auxotrophic monokaryons. By using the Monkaryon-monkaryon crossing method among the uracil auxotrophic monokaryons, 56 uracil auxotrophic dikaryotic strains were established on selective medium. These dikaryotic strains were unable to grow on minimal medium without uracil and exhibited slow growth rates on PDA plates compared to the wild type strain. The uracil auxotrophic dikaryotic strains also showed more vigorous growth on sawdust cultivation medium containing uracil than that without uracil. The fruiting tests showed that they formed normal fruiting bodies on the sawdust medium containing uracil. The results show that the uracil auxotrophic dikaryotic strain of L. edodes could be produced by mating, and will provide a valuable resource for future genetic studies and for spawn protection and identification.
机译:Lentinula edodes的尿嘧啶营养型单核生物菌株423-9与九个单核细胞杂交(cro2-2-9,W66-1,xd2-3-2,QingKe 20A,241-1-1、9015-1,L66-2, 241-1-2和Qing 23A)来源于香菇的野生型菌株。从这些杂交中建立了九个双核杂交体。这些杂种结实,获得了496个单孢子分离株。在这些单个孢子分离物中,在显微镜下鉴定出166个为单核体。我们在选择性培养基上筛选了这些单核生物,并获得了19种尿嘧啶营养缺陷型单核生物。通过在尿嘧啶营养缺陷型单核生物中采用Monkaryon-monkaryon杂交方法,在选择培养基上建立了56株尿嘧啶营养缺陷型双核菌株。与野生型菌株相比,这些双核菌株不能在没有尿嘧啶的基本培养基上生长,并且在PDA平板上显示出缓慢的生长速率。在含有尿嘧啶的木屑培养基上,尿嘧啶营养型双核生物菌株也显示出比没有尿嘧啶的木屑培养基更旺盛的生长。结果表明,它们在含有尿嘧啶的木屑培养基上形成了正常的子实体。结果表明,可以通过交配产生香菇L.edodes的尿嘧啶营养型双核菌株,并将为将来的遗传研究以及产卵保护和鉴定提供有价值的资源。

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