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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >Molecular evolution and transcriptional profile of GH3 and GH20 β-N-acetylglucosaminidases in the entomopathogenic fungus Metarhizium anisopliae
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Molecular evolution and transcriptional profile of GH3 and GH20 β-N-acetylglucosaminidases in the entomopathogenic fungus Metarhizium anisopliae

机译:昆虫病原真菌异形体中GH3和GH20β-N-乙酰氨基葡萄糖苷酶的分子进化和转录特征

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摘要

Abstract Cell walls are involved in manifold aspects of fungi maintenance. For several fungi, chitin synthesis, degradation and recycling are essential processes required for cell wall biogenesis; notably, the activity of β-N-acetylglucosaminidases (NAGases) must be present for chitin utilization. For entomopathogenic fungi, such as Metarhizium anisopliae, chitin degradation is also used to breach the host cuticle during infection. In view of the putative role of NAGases as virulence factors, this study explored the transcriptional profile and evolution of putative GH20 NAGases (MaNAG1 and MaNAG2) and GH3 NAGases (MaNAG3 and MaNAG4) identified in M. anisopliae. While MaNAG2 orthologs are conserved in several ascomycetes, MaNAG1 clusters only with Aspergilllus sp. and entomopathogenic fungal species. By contrast, MaNAG3 and MaNAG4 were phylogenetically related with bacterial GH3 NAGases. The transcriptional profiles of M. anisopliae NAGase genes were evaluated in seven culture conditions showing no common regulatory patterns, suggesting that these enzymes may have specific roles during the Metarhizium life cycle. Moreover, the expression of MaNAG3 and MaNAG4 regulated by chitinous substrates is the first evidence of the involvement of putative GH3 NAGases in physiological cell processes in entomopathogens, indicating their potential influence on cell differentiation during the M. anisopliae life cycle.
机译:摘要细胞壁参与真菌维护的各个方面。对于几种真菌,几丁质的合成,降解和再循环是细胞壁生物发生所必需的基本过程。值得注意的是,β-N-乙酰氨基葡萄糖苷酶(NAGases)的活性必须存在于几丁质的利用中。对于昆虫病原真菌,如金属异化菌,甲壳质降解也可在感染过程中破坏宿主表皮。鉴于NAGases作为毒力因子的假定作用,本研究探讨了在拟南芥中鉴定的GH20 NAGases(MaNAG1和MaNAG2)和GH3 NAGases(MaNAG3和MaNAG4)的转录概况和进化。虽然MaNAG2直系同源物在几个子囊菌中都保守,但MaNAG1仅与Aspergilllus sp。聚簇。和昆虫病原真菌种类。相比之下,MaNAG3和MaNAG4与细菌GH3 NAGase在系统发育上相关。在没有共同调控模式的七个培养条件下评估了无分支链霉菌NAGase基因的转录谱,表明这些酶可能在Metarhizium的生命周期中具有特定的作用。此外,几丁质底物调节的MaNAG3和MaNAG4的表达是推论GH3 NAGases参与昆虫病原体生理细胞过程的第一个证据,表明它们在M. anisopliae生命周期中对细胞分化的潜在影响。

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