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The Phytophthora cactorum genome provides insights into the adaptation to host defense compounds and fungicides

机译:疫霉菌基因组提供了对适应宿主防御化合物和杀真菌剂的见解

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摘要

Phytophthora cactorum is a homothallic oomycete pathogen, which has a wide host range and high capability to adapt to host defense compounds and fungicides. Here we report the 121.5 Mb genome assembly of the P. cactorum using the third-generation single-molecule real-time (SMRT) sequencing technology. It is the second largest genome sequenced so far in the Phytophthora genera, which contains 27,981 protein-coding genes. Comparison with other Phytophthora genomes showed that P. cactorum had a closer relationship with P. parasitica, P. infestans and P. capsici. P. cactorum has similar gene families in the secondary metabolism and pathogenicity-related effector proteins compared with other oomycete species, but specific gene families associated with detoxification enzymes and carbohydrate-active enzymes (CAZymes) underwent expansion in P. cactorum. P. cactorum had a higher utilization and detoxification ability against ginsenosides–a group of defense compounds from Panax notoginseng–compared with the narrow host pathogen P. sojae. The elevated expression levels of detoxification enzymes and hydrolase activity-associated genes after exposure to ginsenosides further supported that the high detoxification and utilization ability of P. cactorum play a crucial role in the rapid adaptability of the pathogen to host plant defense compounds and fungicides.
机译:疫霉菌是一种同型卵菌病原体,具有广泛的宿主范围,并具有较高的适应宿主防御化合物和杀真菌剂的能力。在这里,我们报告使用第三代单分子实时(SMRT)测序技术的仙人掌的121.5 Mb基因组组装。它是迄今为止在疫霉属中测序的第二大基因组,它包含27,981个蛋白质编码基因。与其他疫霉菌基因组的比较表明,仙人掌疫霉与寄生疫霉,致病疫霉和辣椒疫霉有更密切的关系。与其他卵菌菌种相比,仙人掌菌在次级代谢和致病性相关的效应蛋白中具有相似的基因家族,但是与解毒酶和碳水化合物活性酶(CAZymes)相关的特定基因家族在仙人掌菌中得到扩展。与窄宿主病原体大豆疫霉菌相比,仙人掌疫霉菌对人参皂甙(三七的一组防御化合物)具有更高的利用和解毒能力。暴露于人参皂甙后,解毒酶和水解酶活性相关基因的表达水平升高,进一步证明了仙人掌假单胞菌的高解毒和利用能力在病原体对宿主植物防御化合物和杀真菌剂的快速适应性中起着至关重要的作用。

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