DeLange A M, Griffiths A J
Can J Genet Cytol. 1975 Sep;17(3):441-9. doi: 10.1139/g75-058.
In Neurospora crassa, strains of opposite mating type generally do not form stable heterokaryons because the mating type locus acts as a heterokaryon incompatibility locus. However, when one A and one a strain, having complementing auxotrophic mutants, are placed together on minimal medium, growth may occur, although the growth is generally slow. In this study, escape from such slow growth to that at a wild type or near-wild type rate was observed. The escape cultures are stable heterokaryons, mostly having lost the mating type allele function from one component nucleus, so that the nuclear types are heterokaryon compatible. Either A or a mating type can be lost. This loss of function has been attributed to deletion since only one nuclear type could be recovered in all heterokaryons except one, but deletion spanning adjacent loci has been directly demonstrated in a minority of cases. Alternatively when one component strain is tol and the other tol+ (tol being a recessive mutant suppressing the heterokaryon incompatibility associated with mating type), escape may occur by the deletion or mutation of tol+, also resulting in heterokaryon compatibility. An induction mechanism for escape is speculated upon.
在粗糙脉孢菌中,相反交配型的菌株通常不会形成稳定的异核体,因为交配型位点充当异核体不相容位点。然而,当一个具有互补营养缺陷型突变体的A菌株和一个a菌株一起置于基本培养基上时,可能会生长,尽管生长通常很缓慢。在本研究中,观察到从这种缓慢生长转变为野生型或接近野生型速率的生长情况。逃逸培养物是稳定的异核体,大多从一个组分核中失去了交配型等位基因功能,因此核型是异核体相容的。A或a交配型都可能丢失。这种功能丧失被归因于缺失,因为除了一个之外,在所有异核体中只能恢复一种核型,但在少数情况下已直接证明存在跨越相邻位点的缺失。另外,当一个组分菌株是tol而另一个是tol +(tol是一个隐性突变体,可抑制与交配型相关的异核体不相容性)时,tol +的缺失或突变可能会导致逃逸,这也会导致异核体相容。推测了逃逸的诱导机制。