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首页> 外文期刊>Biological Control: Theory and Application in Pest Management >Comparative genome and transcriptome analysis of the nematode-trapping fungus Duddingtonia flagrans reveals high pathogenicity during nematode infection
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Comparative genome and transcriptome analysis of the nematode-trapping fungus Duddingtonia flagrans reveals high pathogenicity during nematode infection

机译:Nematode捕获真菌达丁顿毒性芽糖患者的比较基因组和转录组分析揭示了线虫感染期间的高致病性

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Duddingtonia flagrans is a nematode-trapping fungus that is widely used to control parasitic nematodes in livestock. To investigate the features and advantages of D. flagrans for nematode control at the molecular level, the genome and transcriptome of D. flagrans were sequenced and studied through a comparative analysis. The genome of D. flagrans had a size of 36.3 Mb and contained a higher ratio of repetitive sequences, which revealed its slow evolution. Comparative genomics analysis revealed the genome of D. flagrans to be relatively conserved compared to eight sequenced fungal genomes. Genes related to nematode trapping, virulence and pathogenicity were expanded in the D. flagrans genome, such as PHI genes, cytochrome P450 genes and various secretory protein genes. Remarkably, D. flagrans possessed a significant variety and abundance of putative proteases, while carbohydrate degradation-related genes were rare. Based on transcriptional profiling of different nematode trapping stages (0 h, 12 h and 48 h), the genes for some crucial secreted enzymes were up-regulated during nematode trapping process, including Zn(2)-C6-type transcription factor, chitinases, serine proteases and lectin-coding genes. The draft genome and transcriptome of D. flagrans provide evidence for the high pathogenicity and weaker saprophytic capability of this organism and constitute a theoretical foundation for the clinical use of D. flagrans as a biocontrol agent against parasitic nematodes.
机译:Duddingtonia Flagrans是一种线虫捕获真菌,广泛用于控制牲畜中的寄生线虫。为了探讨D. D. Foragans对线虫控制的特征和优点,在分子水平下,通过对比分析测序和研究D.Amagrans的基因组和转录组。 D. Flagrans的基因组的尺寸为36.3mb,含有更高的重复序列比,揭示了其缓慢的进化。比较基因组学分析显示,与八个测序的真菌基因组相比,迄今为止迄今为止迄今为止迄今为止的基因组。与线虫捕获,毒力和致病性有关的基因在D. Flagans基因组中膨胀,例如Phi基因,细胞色素P450基因和各种分泌蛋白基因。值得注意的是,D.Flagrans具有显着的调整蛋白酶和丰富的抗议蛋白酶,而碳水化合物降解相关基因是罕见的。基于不同线虫捕获阶段的转录分析(0h,12 h和48h),在线虫捕获过程中,在Nematode捕获过程中对一些关键分泌酶的基因进行上调,包括Zn(2)-C6型转录因子,几丁酶,丝氨酸蛋白酶和凝集素编码基因。 D. Foragans的基因组和转录组草案为该生物体的高致病性和较弱的嗜血性能力提供了证据,并构成了D.Alagrans作为寄生线虫的生物控制剂的临床应用的理论基础。

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