Robertson C I, Bartholomew K A, Novotny C P, Ullrich R C
Cell and Molecular Biology Program, University of Vermont, Burlington 05405, USA.
Genetics. 1996 Dec;144(4):1437-44. doi: 10.1093/genetics/144.4.1437.
The A alpha locus is one of four master regulatory loci that determine mating type and regulate sexual development in Schizophyllum commune. We have made a plasmid containing a URA1 gene disruption of the A alpha Y1 gene. Y1 is the sole A alpha gene in A alpha 1 strains. We used the plasmid construction to produce an A alpha null (i.e., A alpha delta) strain by replacing the genomic Y1 gene with URA1 in an A alpha 1 strain. To characterize the role of the A alpha genes in the regulation of sexual development, we transformed various A alpha Y and Z alleles into A alpha delta strains and examined the acquired mating types and mating abilities of the transformants. These experiments demonstrate that the A alpha Y gene is not essential for fungal viability and growth, that a solitary Z A alpha mating-type gene does not itself activate development, that A beta proteins are sufficient to activate the A developmental pathway in the absence of A alpha proteins and confirm that Y and Z genes are the sole determinants of A alpha mating type. The data from these experiments support and refine our model of the regulation of A-pathway events by Y and Z proteins.
Aα 基因座是决定裂褶菌交配型并调控其有性发育的四个主要调控基因座之一。我们构建了一个含有URA1基因破坏Aα Y1基因的质粒。Y1是Aα1菌株中唯一的Aα基因。我们利用该质粒构建,通过在Aα1菌株中用URA1替换基因组Y1基因,产生了一个Aα缺失(即Aαδ)菌株。为了表征Aα基因在调控有性发育中的作用,我们将各种Aα Y和Z等位基因转化到Aαδ菌株中,并检测转化体获得的交配型和交配能力。这些实验表明,Aα Y基因对真菌的生存能力和生长并非必需,单独的Z Aα交配型基因本身并不能激活发育,在没有Aα蛋白的情况下,Aβ蛋白足以激活A发育途径,并证实Y和Z基因是Aα交配型的唯一决定因素。这些实验的数据支持并完善了我们关于Y和Z蛋白调控A途径事件的模型。