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Sequencing and functional analysis of the genome of a nematode egg-parasitic fungus, Pochonia chlamydosporia

机译:线虫卵寄生真菌Pochonia chlamydosporia的基因组测序和功能分析

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摘要

Pochonia chlamydosporia is a worldwide-distributed soil fungus with a great capacity to infect and destroy the eggs and kill females of plant-parasitic nematodes. Additionally, it has the ability to colonize endophytically roots of economically-important crop plants, thereby promoting their growth and eliciting plant defenses. This multitrophic behavior makes P. chlamydosporia a potentially useful tool for sustainable agriculture approaches. We sequenced and assembled ∼41 Mb of P. chlamydosporia genomic DNA and predicted 12,122 gene models, of which many were homologous to genes of fungal pathogens of invertebrates and fungal plant pathogens. Predicted genes (65%) were functionally annotated according to Gene Ontology, and 16% of them found to share homology with genes in the Pathogen Host Interactions (PHI) database. The genome of this fungus is highly enriched in genes encoding hydrolytic enzymes, such as proteases, glycoside hydrolases and carbohydrate esterases. We used RNA-Seq technology in order to identify the genes expressed during endophytic behavior of P. chlamydosporia when colonizing barley roots. Functional annotation of these genes showed that hydrolytic enzymes and transporters are expressed during endophytism. This structural and functional analysis of the P. chlamydosporia genome provides a starting point for understanding the molecular mechanisms involved in the multitrophic lifestyle of this fungus. The genomic information provided here should also prove useful for enhancing the capabilities of this fungus as a biocontrol agent of plant-parasitic nematodes and as a plant growth-promoting organism.
机译:Pochonia chlamydosporia是一种分布在世界各地的土壤真菌,具有感染和破坏卵子并杀死植物寄生线虫雌性的强大能力。另外,它具有在经济上很重要的作物植物的内生根上定殖的能力,从而促进了它们的生长并引发了植物防御。这种多营养的行为使衣原体体育成为可持续农业方法的潜在有用工具。我们对约41 Mb的衣原体衣原体基因组DNA进行了测序和组装,并预测了12,122个基因模型,其中许多与无脊椎动物真菌病原体和真菌植物病原体的基因同源。根据基因本体论,对预测​​的基因(65%)进行了功能注释,其中16%发现与病原体宿主相互作用(PHI)数据库中的基因具有同源性。这种真菌的基因组高度富含编码水解酶(例如蛋白酶,糖苷水解酶和碳水化合物酯酶)的基因。我们使用RNA-Seq技术来鉴定定植大麦根时衣原体衣原体的内生行为中表达的基因。这些基因的功能注释表明,在内生菌过程中表达了水解酶和转运蛋白。衣原体假单胞菌基因组的这种结构和功能分析为了解这种真菌的多营养型生活方式涉及的分子机制提供了一个起点。此处提供的基因组信息也应证明有助于增强这种真菌作为植物寄生线虫的生物防治剂和植物生长生物的能力。

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