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Cla4, but not Rac1, regulates the filamentous response of Ustilago maydis to low ammonium conditions

机译:Cla4,而不是Rac1,调节Ustilago maydis对低铵条件的丝状反应

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摘要

Ustilago maydis, the fungal pathogen of maize, undergoes a dimorphic transition from budding yeast-like growth to filamentous growth, both as part of its program for pathogenesis and distinctly, in response to environmental cues, such as acid pH or low nitrogen availability. Smu1 is a p21-activated protein kinase (PAK) with roles in both the mating response required for the former function, as well as for the nutrient response. Hsl7 may be a negative regulator of Smu1 and appears to play a role in cell length and cell cycle.  Additional proteins that participate in cell polarity and filamentation pathways include the small G protein, Rac1, and its effector PAK kinase, Cla4. Here we describe further experiments that explore the roles of Cla4 and Rac1 in the response to nitrogen availability. While deletion of rac1severely delays filamentous growth on solid media low in ammonium (SLAD), we found that deletion of cla4 does not abolish filamentous cell morphology on solid SLAD. Unexpectedly, however, the Dcla4 mutants also filament in liquid SLAD. The filamentous cell morphology of the cla4 mutant in liquid SLAD has only been seen previously for one other mutant, a strain deleted for hsl7 that simultaneously over-expresses smu1. 
机译:玉米的真菌病原体Ustilago maydis经历了从发芽的酵母样生长到丝状生长的双态转变,这既是其发病机理的一部分,又是对环境因素(例如酸性pH或低氮利用率)的响应。 Smu1是一种p21活化的蛋白激酶(PAK),在前者功能所需的交配反应以及养分反应中均发挥作用。 Hsl7可能是Smu1的负调节子,似乎在细胞长度和细胞周期中起作用。参与细胞极性和丝化途径的其他蛋白质包括小G蛋白Rac1及其效应物PAK激酶Cla4。在这里,我们描述了进一步的实验,这些实验探索了Cla4和Rac1在对氮可用性的响应中的作用。虽然删除rac1严重延迟了铵盐含量低的固体培养基(SLAD)上的丝状细胞生长,但我们发现删除cla4并不能消除固体SLAD上的丝状细胞形态。但是,出乎意料的是,Dcla4突变体也在液态SLAD中长丝。液体SLAD中cla4突变体的丝状细胞形态仅在以前才见过,另一个突变体是hsl7缺失的菌株,同时过表达smu1。

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