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聚乙二醇诱导双灭活原生质体融合培育羊肚菌属杂交种

Interspecific hybridization between cultivated morels Morchella importuna and Morchella sextelata by PEG-induced double inactivated protoplast fusion.

机构信息

School of Food and Biological Engineering, Zhengzhou University of Light Industry, Zhengzhou, 450002, China.

Institute of Vegetable, Wuhan Academy of Agricultural Sciences, Wuhan, 430070, China.

出版信息

World J Microbiol Biotechnol. 2020 Mar 31;36(4):58. doi: 10.1007/s11274-020-02835-0.

Abstract

The commercial production of Morchella mushrooms calls for urgent breeding of excellent varieties or strains with appropriate tools, such as protoplast fusion. However, the protoplast fusion in morels has not been studied. In this paper, interspecific hybridization between cultivated morels of M. importuna and M. sextelata by PEG-induced protoplast fusion was conducted. Apart from functional complementation of double inactivated protoplasts, the fusants were characterized by cultural and cultivated characters and molecular markers of random amplified polymorphic DNA (RAPD). The results suggested that the hybrids and their parents showed significant difference in their inoculum recovery time, mycelial growth rate, yield of cultivation and total amino acid content of ascocarps. Moreover, positive barrage reactions were observed between parental strains as well as between each parent and a hybrid line. A dendrogram created on the basis of RAPD fingerprints exhibited three major clusters, in which morel hybrids showed intra-cluster variations, M. sextelata #6 formed an out group, while M. importuna #4 was phylogenetically closer to morel hybrids. All the results demonstrated that real fusants were obtained in our study. Protoplast fusion may provide an ideal alternative for new strain selection, and thus will promote the healthy development of morel industry.

摘要

羊肚菌的商业化生产需要利用适当的工具,如原生质体融合,来迫切培育优良品种或菌株。然而,有关羊肚菌的原生质体融合尚未见报道。本研究采用 PEG 诱导原生质体融合的方法,对栽培羊肚菌 M. importuna 和 M. sextelata 进行了种间杂交。除了双灭活原生质体的功能互补外,杂种还通过随机扩增多态性 DNA(RAPD)的培养和栽培特征及分子标记进行了鉴定。结果表明,杂种及其亲本在接种体恢复时间、菌丝生长速度、产量和子实体总氨基酸含量方面存在显著差异。此外,在亲本菌株之间以及每个亲本与杂种系之间均观察到阳性杂交带反应。基于 RAPD 指纹图谱构建的聚类树表明存在 3 个主要聚类,其中羊肚菌杂种存在种内变异,M. sextelata #6 形成一个外群,而 M. importuna #4 在系统发育上与羊肚菌杂种更为接近。所有结果表明,本研究中确实获得了融合体。原生质体融合可能为新菌株的选择提供一种理想的替代方法,从而促进羊肚菌产业的健康发展。

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