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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Involvement of BbTpc1, an important Zn(II)(2)Cys(6) transcriptional regulator, in chitin biosynthesis, fungal development and virulence of an insect mycopathogen
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Involvement of BbTpc1, an important Zn(II)(2)Cys(6) transcriptional regulator, in chitin biosynthesis, fungal development and virulence of an insect mycopathogen

机译:BBTPC1的参与,重要的Zn(II)(2)Cys(6)转录调节剂,在几丁质生物合成,真菌发育和昆虫肌病毒力的毒力

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摘要

Chitin is one of the major components of the fungal cell wall and contributes to the mechanical strength and shape of the fungal cell. Zn(II)(2)Cys(6) transcription factors are unique to the fungal kingdom and have a variety of functions in some fungi. However, the mechanisms by which Zn(II)(2)Cys(6) proteins affect entomopathogenic fungi are largely unknown. Here, we characterized the Zn(II)(2)Cys(6) transcription factor BbTpc1 in the insect pathogenic fungus Beauveria bassiana. Disruption of BbTpc1 resulted in a distinct changes in vegetative growth and septa tion patterns, and a significant decrease in conidia and blastospore yield. The Delta BbTpc1 mutant displayed impaired resistance to chemical stresses and heat shock and attenuated virulence in topical and intrahemocoel injection assays. Importantly, the Delta BbTpc1 mutant had an abnormal cell wall with altered wall thickness and chitin synthesis, which were accompanied by transcriptional repression of the chitin synthetase family genes. In addition, comparative transcriptomics revealed that deletion of BbTpc1 altered fungal asexual reproduction via different genetic pathways. These data revealed that BbTpc1 regulates fungal development, chitin synthesis and biological control potential in B. bassiana. (C) 2020 Elsevier B.V. All rights reserved.
机译:几丁质是真菌细胞壁的主要成分之一,对真菌细胞的机械强度和形状有贡献。Zn(II)(2)Cys(6)转录因子是真菌界特有的转录因子,在某些真菌中具有多种功能。然而,Zn(II)(2)Cys(6)蛋白影响昆虫病原真菌的机制尚不清楚。在此,我们对昆虫病原真菌白僵菌中的Zn(II)(2)Cys(6)转录因子BbTpc1进行了表征。BbTpc1的破坏导致营养生长和分隔模式发生明显变化,分生孢子和芽生孢子产量显著下降。Delta BbTpc1突变体在局部和血腔内注射试验中表现出对化学应激和热休克的抵抗力受损,毒力减弱。重要的是,Delta BbTpc1突变体的细胞壁异常,壁厚和几丁质合成发生改变,伴随着几丁质合成酶家族基因的转录抑制。此外,比较转录组学显示,BbTpc1的缺失通过不同的遗传途径改变了真菌的无性繁殖。这些数据表明,BbTpc1调节球孢白僵菌的真菌发育、几丁质合成和生物防治潜力。(C) 2020爱思唯尔B.V.版权所有。

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