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An unknown mechanism promotes somatic incompatibility in Ceratobasidium bicorne

机译:未知机制促进了角质ceratobasidium bicorne的体细胞不相容性

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摘要

Strains of Ceratobasidium bicorne (anamorph uninucleate Rhizoctonia), causing root dieback in nursery-grown conifer seedlings, were fruited in the laboratory and the pairing interactions among sibling, single-basidiospore progeny were investigated. No mating reactions were observed. Instead, a high frequency of somatic incompatibility was observed in progeny pairings, indicated by a killing reaction in hyphal anastomosis and by formation of a demarcation line. The 171 progeny also could be fruited, and the level of somatic incompatibility within the F2 progeny remained high, even if lower than in the F1 progeny. The interaction types in pairings within a family of progeny were similar in all respects to those between field isolates, indicating that the species is homothallic. The uninucleate condition of vegetative cells and the basidial characteristics would indicate homokaryotic fruiting, but the possibility of pseudohomothallism remains. We currently are not able to provide an explanation for the mechanism promoting somatic incompatibility in this species, but it seems likely that the classic heterogenic model of somatic incompatibility recognized in basidiomycetes is not applicable here. Alternative mechanisms are discussed. [References: 46]
机译:在实验室中结实了导致幼树生长的针叶树幼苗的根枯萎的双角藜麦角变种(Seratobasidium bicorne)的菌株,并研究了同胞,单担子孢子后代之间的配对相互作用。没有观察到交配反应。取而代之的是,在子代配对中观察到了高频率的体细胞不相容性,这由菌丝吻合中的杀伤反应和形成分界线表明。 171个子代也可以结出果实,即使比F1子代低,F2子代的体细胞不相容水平仍然很高。后代家族配对中的相互作用类型在所有方面都与田间分离株之间的相互作用类型相似,这表明该物种是同型的。营养细胞的单核状态和基底特征将表明同核生物结实,但假高保真性的可能性仍然存在。我们目前尚不能解释促进该物种中体细胞不相容性的机制,但似乎在担子菌中识别的经典的体细胞不相容性异源模型不适用于此处。讨论了其他机制。 [参考:46]

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