首页> 外文期刊>Environmental microbiology >The tetraspanin gene MaPls1 contributes to virulence by affecting germination, appressorial function and enzymes for cuticle degradation in the entomopathogenic fungus, Metarhizium acridum
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The tetraspanin gene MaPls1 contributes to virulence by affecting germination, appressorial function and enzymes for cuticle degradation in the entomopathogenic fungus, Metarhizium acridum

机译:四跨膜蛋白基因MaPls1通过影响昆虫病原真菌a螨(Metrahizium acridum)的发芽,表皮功能和表皮降解酶来增强毒力

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In most eukaryotes, tetraspanins regulate cellular activities by associating with other membrane components. In phytopathogenic fungi, the tetraspanin Pls1 controls appressorium-mediated penetration. However, regulation of Pls1 and its associated signalling pathways are not clear. In this study, the MaPls1 gene from the entomopathogenic fungus Metarhizium acridum was functionally characterized. MaPls1 was highly expressed in mycelium and appressorium, and accumulated on the plasma membrane or in the cytoplasm. Compared with a wild-type strain, the deletion mutant ΔMaPls1 had delayed germination and appressorium formation and impaired turgor pressure on locust wings, but normal germination on medium and non-host insect matrices. Bioassays showed that ΔMaPls1 had decreased virulence and hyphal body formation in haemolymph when topically inoculated, but was not different from wild type when the insect cuticle was bypassed. Moreover, the ability to grow out of the cuticle was impaired in ΔMaPls1. Digital gene expression profiling revealed that genes involved in hydrolysing host cuticle and cell wall synthesis and remodelling were downregulated in ΔMaPls1. MaPls1 participated in crosstalk with signalling pathways such as the cyclic adenosinemonophosphate-dependent protein kinase A and calmodulin-dependent pathways. Taken together, these results demonstrated the important roles of MaPls1 at the early stage of infection-associated development in M.acridum.
机译:在大多数真核生物中,四跨膜蛋白通过与其他膜成分缔合来调节细胞活性。在植物致病性真菌中,四跨膜蛋白Pls1控制着appressorium介导的渗透。但是,Pls1及其相关信号通路的调控尚不清楚。在这项研究中,来自昆虫病原性真菌Meta螨的MaPls1基因的功能进行了表征。 MaPls1在菌丝体和附着层中高表达,并积累在质膜或细胞质中。与野生型菌株相比,缺失突变体ΔMaPls1延迟了发芽和and的形成,刺槐翅膀上的膨大压力受损,但在中等和非宿主昆虫基质上的发芽正常。生物测定法显示,局部接种ΔMaPls1后,血淋巴中的毒力和菌丝体形成减少,而绕过昆虫角质层与野生型无差异。此外,在ΔMaPls1中损害了从角质层生长出来的能力。数字基因表达谱分析显示参与水解宿主表皮以及细胞壁合成和重塑的基因在ΔMaPls1中被下调。 MaPls1参与了与信号传导通路的串扰,例如环状磷酸腺苷依赖性蛋白激酶A和钙调蛋白依赖性通路。综上所述,这些结果证明了MaPls1在M.acridum感染相关发育的早期阶段起着重要的作用。

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