首页> 外文期刊>Applied Microbiology and Biotechnology >The Hog1-like MAPK Mpk3 collaborates with Hog1 in response to heat shock and functions in sustaining the biological control potential of a fungal insect pathogen
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The Hog1-like MAPK Mpk3 collaborates with Hog1 in response to heat shock and functions in sustaining the biological control potential of a fungal insect pathogen

机译:霍格1的MAPK MPK3在响应热冲击和持续性真菌昆虫病原体的生物控制潜力方面与HOG1合作

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The mitogen-activated protein kinase (MAPK) Mpk3/MpkC resembles the MAPK Hog1 but does not necessarily function in some filamentous fungi. Here, we compared functions of Mpk3 and Hog1 in Beauveria bassiana, a filamentous fungal insect pathogen, by multi-phenotypic analyses of their single/double deletion mutants. Growth defects of Delta mpk3 were moderate on all 14 minimal media with different carbon or nitrogen sources and less severe than those of Delta hog1 on most media tested. The double deletion mutant suffered significantly more severe growth defects than those observed in Delta mpk3 and Delta hog1, suggesting overlapping and collaborative roles of Mpk3 and Hog1 in uptake of six carbon and four nitrogen sources during normal growth. Despite little impact on conidiation capacity, mpk3 deletion slowed down conidial germination as much as hog1 or double deletion. Conidial resistance to UV-B irradiation decreased less in Delta mpk3 than in Delta hog1 or in the double mutant. The fungal virulence was similarly attenuated for all deletion mutants against Galleria mellonella larvae through normal cuticle infection. Intriguingly, the Delta mpk3 mutant displayed null response to high osmolarity and fludioxonil fungicide, to which both Delta hog1 and double mutants were hypersensitive and highly resistant, respectively, but it was more sensitive to a 3-h heat shock at 40 A degrees C than Delta hog1 during normal incubation. Western blot hybridization demonstrated that Mpk3 could collaborate with Hog1 in response to heat shock rather than to the chemical stresses. Altogether, Mpk3 collaborates with Hog1 only in response to heat shock and functions in sustaining the pest control potential of B. bassiana.
机译:丝裂原激活的蛋白激酶(MAPK)MPK3 / MPKC类似MAPK HOG1,但不一定在一些丝状真菌中起作用。这里,我们通过单一/双缺失突变体的多表型分析比较MPK3和Hog1在Beauveria Bassiana的功能。 Delta MPK3的生长缺陷在所有14个最小培养基上适度,不同的碳或氮源和大多数媒体上的Delta Hog1的严重较小。双缺失突变体比达达MPK3和DELTA HOG1中观察到的缺陷显着更严重的生长缺陷显着更严重,这表明在正常生长期间对MPK3和HOG1的重叠和协作作用在六种碳和四个氮源摄取。尽管对共分配的影响几乎没有影响,但MPK3缺失尽管较低的分析萌发减缓了猪或双缺失。 δMPK3的分枝抗抗UV-B照射比在Delta Hog1或双突变体中降低。通过正常的角质层感染,对所有缺失突变体的所有缺失突变体相似衰减真菌毒力。有趣的是,DELTA MPK3突变体显示出高渗透压和氟葡萄醛杀菌剂的空响应,ΔHog1和双突变体分别是过敏和高度抗性的,但它比40℃下的3-H热冲击更敏感ΔHog1在正常孵化期间。 Western印迹杂交证明MPK3可以响应于热休克而不是化学胁迫而与HOG1合作。完全,MPK3仅在响应热冲击和持续伤害B.Bassiana的害虫控制潜力时与Hog1合作。

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