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Ime1 and Ime2 Are Required for Pseudohyphal Growth of Saccharomyces cerevisiae on Nonfermentable Carbon Sources

机译:Ime1和Ime2是酿酒酵母在非发酵碳源上假菌丝生长所必需的

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摘要

Pseudohyphal growth and meiosis are two differentiation responses to nitrogen starvation of diploid Saccharomyces cerevisiae. Nitrogen starvation in the presence of fermentable carbon sources is thought to induce pseudohyphal growth, whereas nitrogen and sugar starvation induces meiosis. In contrast to the genetic background routinely used to study pseudohyphal growth (Σ1278b), nonfermentable carbon sources stimulate pseudohyphal growth in the efficiently sporulating strain SK1. Pseudohyphal SK1 cells can exit pseudohyphal growth to complete meiosis. Two stimulators of meiosis, Ime1 and Ime2, are required for pseudohyphal growth of SK1 cells in the presence of nonfermentable carbon sources. Epistasis analysis suggests that Ime1 and Ime2 act in the same order in pseudohyphal growth as in meiosis. The different behaviors of strains SK1 and Σ1278b are in part attributable to differences in cyclic AMP (cAMP) signaling. In contrast to Σ1278b cells, hyperactivation of cAMP signaling using constitutively active Ras2G19V inhibited pseudohyphal growth in SK1 cells. Our data identify the SK1 genetic background as an alternative genetic background for the study of pseudohyphal growth and suggest an overlap between signaling pathways controlling pseudohyphal growth and meiosis. Based on these findings, we propose to include exit from pseudohyphal growth and entry into meiosis in the life cycle of S. cerevisiae.
机译:假菌丝的生长和减数分裂是对二倍体酿酒酵母氮饥饿的两种分化反应。人们认为,在存在可发酵碳源的情况下,氮饥饿会导致假菌丝的生长,而氮和糖的饥饿会导致减数分裂。与通常用于研究假菌丝生长的遗传背景(Σ1278b)相反,不可发酵的碳源在有效孢子形成菌株SK1中刺激了假菌丝的生长。假菌丝SK1细胞可以退出假菌丝生长以完成减数分裂。在不可发酵的碳源存在下,SK1细胞的假菌丝生长需要两种减数分裂刺激剂Ime1和Ime2。上位性分析表明,Ime1和Ime2在假菌丝生长中的作用与减数分裂中的作用相同。菌株SK1和Σ1278b的不同行为部分归因于循环AMP(cAMP)信号传导的差异。与Σ1278b细胞相反,使用组成型活性Ras2 G19V 激活cAMP信号的过度激活抑制了SK1细胞的假菌丝生长。我们的数据确定了SK1遗传背景作为假性菌丝生长研究的替代遗传背景,并表明控制假性菌丝生长和减数分裂的信号传导途径之间存在重叠。基于这些发现,我们建议在酿酒酵母的生命周期中包括假菌丝生长的退出和减数分裂的进入。

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