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Insights into Adaptations to a Near-Obligate Nematode Endoparasitic Lifestyle from the Finished Genome of Drechmeria coniospora

机译:从DrechMeria Coniospora的完成基因组中欣赏到近乎迫使近乎临近的线虫内甲虫生活方式

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Nematophagous fungi employ three distinct predatory strategies: nematode trapping, parasitism of females and eggs, and endoparasitism. While endoparasites play key roles in controlling nematode populations in nature, their application for integrated pest management is hindered by the limited understanding of their biology. We present a comparative analysis of a high quality finished genome assembly of Drechmeria coniospora, a model endoparasitic nematophagous fungus, integrated with a transcriptomic study. Adaptation of D. coniospora to its almost completely obligate endoparasitic lifestyle led to the simplification of many orthologous gene families involved in the saprophytic trophic mode, while maintaining orthologs of most known fungal pathogen-host interaction proteins, stress response circuits and putative effectors of the small secreted protein type. The need to adhere to and penetrate the host cuticle led to a selective radiation of surface proteins and hydrolytic enzymes. Although the endoparasite has a simplified secondary metabolome, it produces a novel peptaibiotic family that shows antibacterial, antifungal and nematicidal activities. Our analyses emphasize the basic malleability of the D. coniospora genome: loss of genes advantageous for the saprophytic lifestyle; modulation of elements that its cohort species utilize for entomopathogenesis; and expansion of protein families necessary for the nematode endoparasitic lifestyle.
机译:Nematophagous真菌采用三种不同的掠夺性策略:线虫诱捕,女性和鸡蛋的寄生症,以及内甲酰碱。虽然内蒙萨斯遗传癖在自然控制线虫人口中发挥关键作用,但它们对综合害虫管理的应用受到对其生物学的有限了解的阻碍。我们提出了一种对德克塞尔康氏菌族的高质量完成基因组组装的比较分析,该模型内透缺陷的内脱石真菌与转录组研究相结合。 D. coniospora的适应几乎完全是内索能生活方式导致了许多涉及嗜酸性营养模式的许多外科基因家族,同时保持最着名的真菌病原体 - 宿主相互作用蛋白质,应力响应电路和小的施用效果分泌的蛋白质类型。需要粘附并穿透宿主角质层导致表面蛋白和水解酶的选择性辐射。虽然内铝酸酯具有简化的次生代谢物,但它产生了一种表现出抗菌,抗真菌和象征性活性的新型Peptaibiotic系列。我们的分析强调了D.Coniospora Genome的基本延长性:对嗜嗜性生活方式有利的基因丧失;调制其队列物种利用昆虫病因的元素;并扩大了线虫内甲虫生活方式所必需的蛋白质家族。

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