Spore number control and breeding in Saccharomyces cerevisiae

Author:

Taxis Christof1,Keller Philipp1,Kavagiou Zaharoula1,Jensen Lars Juhl1,Colombelli Julien1,Bork Peer1,Stelzer Ernst H.K.1,Knop Michael1

Affiliation:

1. The European Molecular Biology Laboratory, D-69117 Heidelberg, Germany

Abstract

Spindle pole bodies (SPBs) provide a structural basis for genome inheritance and spore formation during meiosis in yeast. Upon carbon source limitation during sporulation, the number of haploid spores formed per cell is reduced. We show that precise spore number control (SNC) fulfills two functions. SNC maximizes the production of spores (1–4) that are formed by a single cell. This is regulated by the concentration of three structural meiotic SPB components, which is dependent on available amounts of carbon source. Using experiments and computer simulation, we show that the molecular mechanism relies on a self-organizing system, which is able to generate particular patterns (different numbers of spores) in dependency on one single stimulus (gradually increasing amounts of SPB constituents). We also show that SNC enhances intratetrad mating, whereby maximal amounts of germinated spores are able to return to a diploid lifestyle without intermediary mitotic division. This is beneficial for the immediate fitness of the population of postmeiotic cells.

Publisher

Rockefeller University Press

Subject

Cell Biology

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