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Mating compatibility in C. cinerea is controlled by two loci, A and B. Following fusion of undifferentiated hyphal cells, a complex program is initiated which results in the maintenance of one nucleus from each parent in every cell (the dikaryon). We identified downstream targets of the A locus (A...
ORGANISM(S): Coprinopsis cinerea 
Coprinopsis cinerea vegetative dikaryotic mycelia compared to vegetative monokaryotic mycelia Vegetative dikaryon cDNA was comparitively hybridized with monokaryotic vegetative cDNA. Labelled cDNA was hybridized to arrays in a 2 channel reaction.
ORGANISM(S): Coprinopsis cinerea 
Meiosis was compared in msh5-22 and wild type strains of C. cinerea at 6 time points spanning the meiotic timecourse. Abstract: The basidiomycete Coprinopsis cinerea is well-suited to studies of meiosis because meiosis progresses synchronously in ten million cells within each mushroom cap. Approxima...
ORGANISM(S): Coprinopsis cinerea 
Meiosis was compared in rad50-1 and wild type strains of C. cinerea at 6 time points spanning the meiotic timecourse. Abstract: The basidiomycete Coprinopsis cinerea is well-suited to studies of meiosis because meiosis progresses synchronously in ten million cells within each mushroom cap. Approxima...
ORGANISM(S): Coprinopsis cinerea 
This SuperSeries is composed of the following subset Series: GSE37942: Comparison of gene expression during meiosis between wild-type and rad50-deficient strains of Coprinopsis cinerea GSE37943: Comparison of gene expression during meiosis between wild-type and msh5-deficient strains of Coprinopsis ...
ORGANISM(S): Coprinopsis cinerea 
Coprinopsis cinerea exhibits synchronised meiosis in the gill tissue of the fungus, which is 75% meiotic. The mushroom develops from a dikaryon, which contains two separate nuclei. These nucleifuse in the basidia (karyogamy). After karyogamy, the nuclei enter an extended meiotic prophase, in whi...
ORGANISM(S): Coprinopsis cinerea 
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