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Environmental signals controlling sexual development of the corn Smut fungus Ustilago maydis through the transcriptional regulator Prf1.

机译:通过转录调节因子Prf1环境信号控制玉米黑穗病真菌Ustilago的有性发育。

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摘要

Environmental signals induce and coordinate discrete morphological transitions during sexual development of Ustilago maydis. In this fungus, mating of two compatible haploid sporidia is a prerequisite for plant infection. Cell fusion is governed by the action of pheromones and receptors, whereas the subsequent pathogenicity program is controlled by the combinatorial interaction of homeodomain proteins. The U. maydis pheromone response factor (Prf1) is a central regulator of both processes. We have analyzed the regulation of the prf1 gene and demonstrate that pheromone and cAMP signaling regulate prf1 post-transcriptionally. Transcriptional activation of prf1 was observed in the presence of carbon sources, such as glucose and fructose, allowing us to define the cis-acting element in the prf1 promoter that mediates these effects. The same element provides for negative control of prf1 gene transcription at high cAMP levels. A protein that specifically binds to this element was purified and analyzed for its role in prf1 gene regulation. On the basis of these results, we present a model in which prf1 integrates different environmental signals to control development in U. maydis.
机译:在Ustilago maydis的性发育过程中,环境信号会诱导并协调离散的形态转变。在这种真菌中,两个兼容的单倍体孢子虫的交配是植物感染的先决条件。细胞融合受信息素和受体的作用控制,而随后的致病性程序则由同源域蛋白的组合相互作用控制。 U. maydis信息素反应因子(Prf1)是这两个过程的中央调节器。我们已经分析了prf1基因的调节,并证明信息素和cAMP信号传导在转录后调节prf1。在碳源(例如葡萄糖和果糖)的存在下观察到prf1的转录激活,这使我们能够在prf1启动子中定义介导这些作用的顺式作用元件。相同的元件可在高cAMP水平下对prf1基因转录进行负控制。纯化与该元件特异性结合的蛋白质,并分析其在prf1基因调控中的作用。基于这些结果,我们提出了一个模型,其中prf1整合了不同的环境信号来控制美人鱼的发育。

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