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首页> 外文期刊>The Plant Cell >A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.
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A nitrogen response pathway regulates virulence functions in Fusarium oxysporum via the protein kinase TOR and the bZIP protein MeaB.

机译:氮响应途径通过蛋白激酶TOR和bZIP蛋白MeaB调节尖孢镰刀菌的毒力功能。

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摘要

During infection, fungal pathogens activate virulence mechanisms, such as host adhesion, penetration and invasive growth. In the vascular wilt fungus Fusarium oxysporum, the mitogen-activated protein kinase Fmk1 is required for plant infection and controls processes such as cellophane penetration, vegetative hyphal fusion, or root adhesion. Here, we show that these virulence-related functions are repressed by the preferred nitrogen source ammonium and restored by treatment with L-methionine sulfoximine or rapamycin, two specific inhibitors of Gln synthetase and the protein kinase TOR, respectively. Deletion of the bZIP protein MeaB also resulted in nitrogen source-independent activation of virulence mechanisms. Activation of these functions did not require the global nitrogen regulator AreA, suggesting that MeaB-mediated repression of virulence functions does not act through inhibition of AreA. Tomato plants (Solanum lycopersicum) supplied with ammonium rather than nitrate showed a significant reduction in vascular wilt symptoms when infected with the wild type but not with the meaB strain. Nitrogen source also affected invasive growth in the rice blast fungus Magnaporthe oryzae and the wheat head blight pathogen Fusarium graminearum. We propose that a conserved nitrogen-responsive pathway might operate via TOR and MeaB to control virulence in plant pathogenic fungi.
机译:在感染过程中,真菌病原体激活毒力机制,例如宿主粘附,穿透和侵袭性生长。在维管束枯萎病菌中,有丝分裂原激活的蛋白激酶Fmk1是植物感染所必需的,并控制玻璃纸渗透,植物菌丝融合或根系粘附等过程。在这里,我们显示了这些与毒力相关的功能被优选的氮源铵抑制,并通过分别用Gln合成酶和蛋白激酶TOR的两种特异性抑制剂L-蛋氨酸亚磺酰亚胺或雷帕霉素处理而恢复。 bZIP蛋白MeaB的缺失也导致了氮源非依赖性毒力机制的激活。这些功能的激活不需要全局氮调节剂AreA,这表明MeaB介导的对毒力功能的抑制并不通过抑制AreA起作用。当用野生型而不是用 meaB 菌株感染时,以铵盐而不是硝酸盐供应的番茄植株( Solanum lycopersicum )显示出明显的维管束萎缩症状。氮源还影响稻瘟病菌 Magnaporthe oryzae 和小麦头枯病病原菌 graminearum 的侵袭性生长。我们建议保守的氮响应途径可能通过TOR和MeaB来控制植物病原真菌中的毒力。

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