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首页> 外文期刊>Molecular Microbiology >Identification of a complex genetic network underlying Saccharomyces cerevisiae colony morphology
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Identification of a complex genetic network underlying Saccharomyces cerevisiae colony morphology

机译:鉴定酿酒酵母菌落形态的复杂遗传网络

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摘要

When grown on solid substrates, different microorganisms often form colonies with very specific morphologies. Whereas the pioneers of microbiology often used colony morphology to discriminate between species and strains, the phenomenon has not received much attention recently. In this study, we use a genome-wide assay in the model yeast Saccharomyces cerevisiae to identify all genes that affect colony morphology. We show that several major signalling cascades, including the MAPK, TORC, SNF1 and RIM101 pathways play a role, indicating that morphological changes are a reaction to changing environments. Other genes that affect colony morphology are involved in protein sorting and epigenetic regulation. Interestingly, the screen reveals only few genes that are likely to play a direct role in establishing colony morphology, with one notable example being FLO11, a gene encoding a cell-surface adhesin that has already been implicated in colony morphology, biofilm formation, and invasive and pseudohyphal growth. Using a series of modified promoters for fine-tuning FLO11 expression, we confirm the central role of Flo11 and show that differences in FLO11 expression result in distinct colony morphologies. Together, our results provide a first comprehensive look at the complex genetic network that underlies the diversity in the morphologies of yeast colonies.
机译:当在固体基质上生长时,不同的微生物通常形成具有非常特殊形态的菌落。微生物学的开创者经常使用菌落形态来区分物种和菌株,但这种现象最近并未引起人们的广泛关注。在这项研究中,我们在啤酒酵母模型中使用了全基因组检测,以鉴定影响菌落形态的所有基因。我们表明,几个主要的信号级联反应,包括MAPK,TORC,SNF1和RIM101途径起作用,表明形态变化是对变化的环境的反应。影响菌落形态的其他基因也参与蛋白质分选和表观遗传调控。有趣的是,该屏幕仅显示了可能在建立菌落形态中直接发挥作用的几个基因,其中一个著名的例子是FLO11,它是一种编码细胞表面粘附素的基因,已经与菌落形态,生物膜形成和侵袭有关。和假菌丝生长。使用一系列修饰的启动子来微调FLO11的表达,我们确认Flo11的核心作用,并表明FLO11表达的差异导致不同的菌落形态。在一起,我们的结果提供了对复杂基因网络的首次全面观察,该基因网络是酵母菌落形态多样性的基础。

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