首页> 外文期刊>FEMS Microbiology Letters >Implication of a regulator of G protein signalling (BbRGS1) in conidiation and conidial thermotolerance of the insect pathogenic fungus Beauveria bassiana
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Implication of a regulator of G protein signalling (BbRGS1) in conidiation and conidial thermotolerance of the insect pathogenic fungus Beauveria bassiana

机译:G蛋白信号调节剂(BbRGS1)在昆虫病原真菌球孢白僵菌的分生和分生孢子耐热性中的意义

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摘要

Beauveria bassiana is an insect pathogenic fungus widely used as a biocontrol agent to infect and control insect pests. The conidium initiates pathogenesis and mediates disease transmission, however, little is known about genetic elements that control conidiation. Here, the cloning and characterization of a regulatory G protein-signalling (RGS) gene Bbrgs1 from B. bassiana is reported. Phylogenetic analysis showed that BbRGS1 was orthologous to the RGS protein, FlbA from Aspergillus nidulans. The disruption of Bbrgs1 resulted in significantly reduced conidial production on agar plates or from infected insects. The Delta Bbrgs1 conidia also demonstrated reduced thermotolerance and conidial viability but germinated significantly faster than the wild type. Although hydrophobins have been implicated in conidial thermal sensitivity, the amount of hydrophobin on the conidial surface and the level of transcription of the hydrophobin-like protein gene hl were unaltered. Virulence toward insects was similar to that of the wild-type or reverse complementation transformants, and the mRNA levels of virulence factor genes for chitinase (Bbchit) and subtilisin-like protease (cdep1), were unchanged in Delta Bbrgs1. Characterization of a single RGS gene Bbrgs1 of B. bassiana suggests that it functions differently than RGS proteins in other fungi. However, there may be additional RGS proteins and signalling pathways that control colony development in B. bassiana.
机译:球孢白僵菌是一种致病性真菌,被广泛用作感染和防治害虫的生物防治剂。分生孢子启动发病机理并介导疾病传播,然而,控制分生孢子的遗传元件知之甚少。在此,报道了来自球孢白僵菌的调节性G蛋白信号转导(RGS)基因Bbrgs1的克隆和表征。系统发育分析表明,BbRGS1与来自构巢曲霉的RGS蛋白FlbA同源。 Bbrgs1的破坏导致琼脂平板或受感染昆虫的分生孢子产生明显减少。 Delta Bbrgs1分生孢子也表现出降低的耐热性和分生孢子活力,但发芽速度明显快于野生型。尽管疏水蛋白与分生孢子热敏感性有关,但是分生孢子表面上的疏水蛋白的量和疏水蛋白样蛋白基因h1的转录水平没有改变。对昆虫的毒力与野生型或反向互补转化子相似,在三角洲Bbrgs1中,几丁质酶(Bbchit)和枯草杆菌蛋白酶样蛋白酶(cdep1)的毒力因子基因的mRNA水平没有变化。球孢白僵菌的单个RGS基因Bbrgs1的特征表明,其功能不同于其他真菌中的RGS蛋白。但是,可能还有其他的RGS蛋白和信号传导途径,可控制球孢杆菌中的菌落发育。

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