Johannesson Hanna, Stenlid Jan
Department of Plant and Microbial Biology, University of California, 111 Koshland Hall, Berkeley, CA 94720-3102, USA.
Fungal Genet Biol. 2004 May;41(5):563-70. doi: 10.1016/j.fgb.2004.01.002.
Somatic incompatibility is not an absolute block to nuclear exchange between incompatible mycelia of the basidiomycete Heterobasidion annosum in vitro. Under laboratory conditions new heterokaryotic genotypes can be isolated from the gap between incompatible heterokaryons, and nuclear migration between pairs of heterokaryons grown in Petri dishes has been observed. In this study, we test the hypothesis of nuclear transfer and reassortment between heterokaryotic mycelia in natural populations of H. annosum. We developed six microsatellite markers to genotype nuclei populating 21 somatically incompatible mycelia of H. annosum isolated from a single stump of Picea abies, and found that the detected heterokaryons share nuclei; 10 of the nuclear haplotypes were found in more than one mycelium. In one isolate, four nuclear types were found in the same mycelium. These findings indicate that new heterokaryons can be formed as a result of nuclear reassortment between incompatible heterokaryotic mycelia in nature.
体细胞不亲和性并非是担子菌纲的异担子菌在体外不亲和菌丝体之间进行核交换的绝对障碍。在实验室条件下,可从不亲和异核体之间的间隙中分离出新的异核基因型,并且已观察到在培养皿中生长的异核体对之间的核迁移。在本研究中,我们检验了异担子菌自然种群中异核菌丝体之间核转移和重排的假说。我们开发了六个微卫星标记,对从一棵欧洲云杉树桩上分离出的21个异担子菌的体细胞不亲和菌丝体中的细胞核进行基因分型,发现检测到的异核体共享细胞核;10种核单倍型在不止一个菌丝体中被发现。在一个分离物中,在同一个菌丝体中发现了四种核类型。这些发现表明,在自然环境中,不亲和的异核菌丝体之间的核重排可导致新的异核体形成。