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Synthetic gene regulation for independent external induction of the Saccharomyces cerevisiae pseudohyphal growth phenotype

机译:酿酒酵母假菌丝生长表型独立外部诱导的合成基因调控。

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Pseudohyphal growth is a multicellular phenotype naturally performed by wild budding yeast cells in response to stress. Unicellular yeast cells undergo gross changes in their gene regulation and elongate to form branched filament structures consisting of connected cells. Here, we construct synthetic gene regulation systems to enable external induction of pseudohyphal growth in Saccharomyces cerevisiae. By controlling the expression of the natural PHD1 and FLO8 genes we are able to trigger pseudohyphal growth in both diploid and haploid yeast, even in different types of rich media. Using this system, we also investigate how members of the BUD gene family control filamentation in haploid cells. Finally, we employ a synthetic genetic timer network to control pseudohyphal growth and further explore the reversibility of differentiation. Our work demonstrates that synthetic regulation can exert control over a complex multigene phenotype and offers opportunities for rationally modifying the resulting multicellular structure.
机译:假菌丝生长是野生芽酵母细胞响应压力自然产生的多细胞表型。单细胞酵母细胞的基因调控发生重大变化,并伸长形成由相连细胞组成的分支细丝结构。在这里,我们构建合成基因调控系统,以使酿酒酵母中的假菌丝生长的外部诱导。通过控制天然PHD1和FLO8基因的表达,我们甚至可以在二倍体和单倍体酵母中触发假菌丝生长,即使在不同类型的富媒体中也是如此。使用该系统,我们还研究了BUD基因家族的成员如何控制单倍体细胞中的丝化。最后,我们采用合成遗传计时器网络来控制假菌丝的生长,并进一步探索分化的可逆性。我们的工作表明,合成调控可以控制复杂的多基因表型,并为合理修饰最终的多细胞结构提供了机会。

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