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首页> 外文期刊>Virulence. >Transcriptomic analyses reveal comprehensive responses of insect hemocytes to mycopathogen Beauveria bassiana, and fungal virulence-related cell wall protein assists pathogen to evade host cellular defense
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Transcriptomic analyses reveal comprehensive responses of insect hemocytes to mycopathogen Beauveria bassiana, and fungal virulence-related cell wall protein assists pathogen to evade host cellular defense

机译:转录组分析揭示了昆虫血细胞对肌孢囊嗜孢菌的综合反应,并且真菌毒力相关的细胞壁蛋白有助于病原体逃避宿主细胞防御

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Entomopathogenic fungi naturally infect insect hosts in environment. Fungal invasion and host immune defense are still in the progress of co-evolution. In this study, entomopathogenic fungus Beauveria bassiana and lepidopteran insect Galleria mellonella were used to investigate host cellular immunity and fungal strategy to evade host defense. First of all, genome-wide expression revealed the transcriptomic responses of hemocytes to insect mycopathogen, which dynamically varied during infection process. Enrichment analysis indicated that differentially expressed genes were primarily involved in metabolism, cellular process and immune system. Notably, cellular response involved a series of hydrolytic enzyme and antimicrobial peptide genes which were sorted together in clustering analysis. In B. bassiana, a cell-wall protein gene (BbCwp) contributes to fungal development in host hemocoel and virulence. RT-qPCR analyses indicated that infection by ΔBbCwp mutant strain caused the up-regulated expression of a series of immunity-related genes, including β-1, 3-glucan recognition protein, hydrolytic enzyme and antimicrobial peptide genes. Disruption of BbCwp resulted in a significant change in conidial lectin-binding feature and the enhanced encapsulation by the host hemocytes. After being treated with hydrolytic enzymes, ΔBbCwp mutant displayed a significantly enhanced sensitivity to osmotic and oxidative stresses. In conclusion, fungal invasion initiates comprehensive physiological responses in the host hemocytes. For mycopathogen, cell-wall protein plays an important role in fungal evasion of immunity defense and colonization in host. Our studies provide an initial framework for exploring more mechanistic details about the fungus–host interaction.
机译:昆虫疗法真菌自然是感染环境中的昆虫宿主。真菌入侵和宿主免疫防御仍在共同进化方面。在这项研究中,昆虫疗法菌嗜睡和鳞翅目昆虫菌麦隆菌用于探讨宿主细胞免疫和真菌策略,以逃避宿主防御。首先,基因组的表达揭示了血细胞对昆虫肌病症的转录组反应,其在感染过程中动态变化。富集分析表明,差异表达的基因主要参与代谢,细胞过程和免疫系统。值得注意的是,细胞反应涉及一系列水解酶和抗微生物肽基因,其在聚类分析中分类在一起。在B.Bassiana,一种细胞壁蛋白基因(BBCWP)有助于宿主血管素和毒力的真菌发育。 RT-QPCR分析表明,ΔBBCWP突变体菌株感染导致一系列免疫相关基因的上调表达,包括β-1,3-葡聚糖识别蛋白,水解酶和抗微生物肽基因。 BBCWP的破坏导致共生凝集素结合特征的显着变化和宿主血细胞增强的包封。用水解酶处理后,ΔBBCWP突变体显示出明显增强的渗透和氧化应激的敏感性。总之,真菌入侵在宿主血细胞中引发全面的生理反应。对于肌肿瘤肝癌,细胞壁蛋白在宿主中的真菌防御和殖民化的真菌逃避中起重要作用。我们的研究提供了有关真菌宿主交互的更多机械细节的初始框架。

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