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No single alternative input could induce multiple mating projections, although some produced a single projection.
Prolonged exposure to the mating pheromone α-factor induces an unusual morphology in yeast cells: multiple mating projections.
Intriguingly, when cells are exposed continuously to high concentrations of α-factor, they will form multiple mating projections [7] [9].
Whereas wild-type cells exposed continuously to α-factor form multiple mating projections, we found that none of the AIs alone could induce multiple projections.
In this study, we attempted to reproduce in the absence of mating pheromone the multiple mating projections phenotype of yeast cells.
Are the oscillatory dynamics that underlie multiple mating projections formation a systems-level property or the outcome of the actions of a single or small set of genes?
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Thus, we re-engineered the mating morphology using alternative inputs to induce multiple mating-projections without α-factor.
Transcriptional activation of mating-related genes, formation of mating projections, and fusion of the two opposite mating type cells are involved in this process.
Transcriptional activation of mating-related genes, formation of mating projections, and fusion of two opposite mating type cells are involved in this process.
Most shapes are formed by grooved rolls with mating projections that form together a window in their gap.
Recognition of the ubiquity of female multiple mating has caused an important shift in sexual selection research, emphasizing the adaptive nature of female mating strategies.
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