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首页> 外文期刊>Environmental microbiology >P-type calcium ATPase functions as a core regulator of Beauveria bassiana growth, conidiation and responses to multiple stressful stimuli through cross-talk with signalling networks
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P-type calcium ATPase functions as a core regulator of Beauveria bassiana growth, conidiation and responses to multiple stressful stimuli through cross-talk with signalling networks

机译:P型钙ATPase充当球孢白僵菌生长,分生和通过与信号网络的串扰对多种应激刺激的反应的核心调节剂

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Summary: P-type Ca~(2+)-ATPase (Pmr1) is a core element in calcium-calcineurin pathway and evidence for its cross-talk with other signalling pathways in filamentous fungi is of scarcity. Here, we characterized the striking functions of a Golgi Ca~(2+)-ATPase (Bbpmr1) in Beauveria bassiana (fungal entomopathogen) by multi-phenotypic and transcriptional analyses under normal and stressful conditions. Bbpmr1 inactivation caused severe defects in nutritional uptake, growth, conidiation and germination under normal conditions, drastic reductions in cell tolerances to oxidative, hyperosmotic, cell wall disturbing and fungicidal stresses and toxic metal ions during colony growth and/or conidial germination, and half loss of the fungal biocontrol potential represented by conidial virulence, thermotolerance and UV-B resistance. Accompanied with the multi-phenotypic defects, four important genes associated with asexual development were repressed by ≥75% in ΔBbpmr1 versus wild type, and all or most of stress-responsive genes encoding 14 cascaded proteins in MAPK pathways, two Ras GTPases, two protein kinases, Ssk1-type response regulator, TOR signalling protein, and many downstream enzymes and proteins were greatly downregulated in ΔBbpmr1 under the chemical stresses. Conclusively, Bbpmr1 regulates positively fundamental aspects on B.bassiana biology and environmental adaptation through wide cross-talk with cellular signalling networks including MAPK cascades and those upstream or independent of the cascades.
机译:简介:P型Ca〜(2 +)-ATPase(Pmr1)是钙-钙调神经磷酸途径中的核心元素,其与丝状真菌中其他信号途径的相互干扰的证据不足。在这里,我们通过正常和压力条件下的多表型和转录分析,表征了球孢白僵菌中的高尔基Ca〜(2 +)-ATPase(Bbpmr1)的惊人功能。 Bbpmr1失活导致正常条件下的营养吸收,生长,分生和发芽严重缺陷,菌落生长和/或分生孢子萌发期间,细胞对氧化,高渗,细胞壁干扰和杀真菌应力以及有毒金属离子的耐受性急剧下降,损失一半分生孢子毒力,耐热性和抗UV-B代表的真菌生物防治潜能。与多表型缺陷相伴,与野生型相比,ΔBbpmr1与野生型相关的四个与无性发育相关的重要基因被抑制≥75%,并且全部或大部分应力响应基因在MAPK途径中编码14个级联蛋白,两个Ras GTPases,两个蛋白在化学胁迫下,ΔBbpmr1中激酶,Ssk1型应答调节剂,TOR信号蛋白以及许多下游酶和蛋白被大大下调。最终,Bbpmr1通过与细胞信号网络(包括MAPK级联和上游或独立于级联的细胞)的广泛串扰,积极调控巴斯德氏菌生物学和环境适应的基本方面。

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