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The high osmotic response and cell wall integrity pathways cooperate to regulate morphology microsclerotia development and virulence in Metarhizium rileyi

机译:高渗透反应和细胞壁完整性途径协同调节莱里氏菌的形态微菌核发育和毒力

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摘要

Microsclerotia (MS) formation was successfully induced in Metarhizium rileyi under changing liquid culture conditions. Mitogen-activated protein kinases (MAPKs) play important roles in fungal development and in coordinating many stress responses. To investigate how M. rileyi transduces growth stress and regulates MS differentiation, we characterized the roles of two MAPKs, Hog1- and Slt2-type orthologues, in M. rileyi. Compared with the wild-type strain, the deletion mutants of Mrhog1 (ΔMrhog1) and Mrslt2 (ΔMrslt2) delayed germination and vegetative growth, displayed sensitivities to various stress, and produced morphologically abnormal clones. The ΔMrhog1 and ΔMrslt2 mutants significantly reduced conidial (42–99%) and MS (96–99%) yields. A transcriptional analysis showed that the two MAPKs regulate MS development in a cooperative manner. Insect bioassays revealed that ΔMrhog1 and ΔMrslt2 had decreased virulence levels in topical (36–56%) and injection (78–93%) bioassays. Our results confirmed the roles of MrHog1 and MrSlt2 in sensing growth-related stress and in regulating MS differentiation.
机译:在不断变化的液体培养条件下,成功地诱导了莱氏甲烷球菌的微菌核形成。丝裂原激活的蛋白激酶(MAPK)在真菌发育和协调许多应激反应中起重要作用。若要调查M. rileyi如何转导生长压力并调节MS分化,我们表征了两个MAPKs,Hog1和Slt2型直向同源物在M. rileyi中的作用。与野生型菌株相比,Mrhog1(ΔMrhog1)和Mrslt2(ΔMrslt2)的缺失突变体延迟了发芽和营养生长,对各种胁迫表现出敏感性,并产生了形态异常的克隆。 ΔMrhog1和ΔMrslt2突变体显着降低分生孢子(42–99%)和MS(96–99%)的产量。转录分析表明,这两个MAPKs以协同方式调节MS的发育。昆虫生物测定显示,在局部(36-56%)和注射(78-93%)生物测定中,ΔMrhog1和ΔMrslt2的毒力水平降低。我们的结果证实了MrHog1和MrSlt2在感知与生长相关的压力和调节MS分化中的作用。

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