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Genome sequence and transcriptome profiles of pathogenic fungus Paecilomyces penicillatus reveal its interactions with edible fungus Morchella importuna

机译:基因组序列和转录组型致病性真菌博士学博士植物Penicillatus揭示了其与食用菌莫尔科拉Importuna的相互作用

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Paecilomyces penicillatus is one of the pathogens of morels, which greatly affects the yield and quality of Morchella spp.. In the present study, we de novo assembled the genome sequence of the fungus P. penicillatus SAAS_ppe1. We analyzed the transcriptional profile of P. penicillatus SAAS_ppe1 infection of Morchella importuna at different stages (3?days and 6?days after infection) and the response of M. importuna using the transcriptome. The assembled genome sequence of P. penicillatus SAAS_ppe1 was 39.78?Mb in length (11 scaffolds; scaffold N50, 6.50?Mb), in which 99.7% of the expected genes were detected. A total of 7.48% and 19.83% clean transcriptional reads from the infected sites were mapped to the P. penicillatus genome at the early and late stages of infection, respectively. There were 3,943 genes differently expressed in P. penicillatus at different stages of infection, of which 24 genes had increased expression with the infection and infection stage, including diphthamide biosynthesis, aldehyde reductase, and NAD (P)H-hydrate epimerase ( P ?0.05). Several genes had variable expression trends at different stages of infection, indicating P. penicillatus had diverse regulation patterns to infect M. importuna . GO function, involving cellular components, and KEGG pathways, involving glycerolipid metabolism, and plant-pathogen interaction were significantly enriched during infection by P. penicillatus . The expression of ten genes in M. importuna increased during the infection and infection stage, and these may regulate the response of M. importuna to P. penicillatus infection. This is the first comprehensive study on P. penicillatus infection mechanism and M. importuna response mechanism, which will lay a foundation for understanding the fungus-fungus interactions, gene functions, and variety breeding of pathogenic and edible fungi.
机译:Paecilomyces penicillatus是羊肚菌的病原体之一,这极大地影响了莫尔科拉SPP的产量和质量。在本研究中,我们德诺维组装了真菌P.Penicillatus SAAS_PPE1的基因组序列。我们分析了不同阶段(3?天和6天和5天的Morchella Importuna的P.Penicillatus SaaS_PPE1感染的转录概况和M. Importuna使用转录组的响应。 P.Penicillatus SAAS_PPE1的组装基因组序列长度为39.78μmb(11个支架;支架N50,6.50?MB),其中检测到99.7%的预期基因。在感染的早期和晚期阶段,总共7.48%和19.83%的清洁转录读数分别映射到P.Penicillatus基因组。在不同阶段的P. penicillatus中有3,943个基因在不同的感染阶段中表达,其中24个基因与感染和感染阶段的表达增加,包括二酰胺生物合成,醛还原酶和NAD(P)H-水合物映像酶(P& ?0.05)。几个基因在感染阶段具有可变的表达趋势,表明P. Penicillatus具有不同的调节模式来感染M. Importuna。在P.Pinicillatus感染期间,在感染期间,涉及细胞组分和Kegg途径,涉及甘油脂性代谢和植物病原体相互作用的功能。在感染和感染阶段的M. Importuna中的十个基因的表达增加,这些可能调节M. Importuna对P.Penicillatus感染的反应。这是第一次综合研究P.Penicillatus感染机制和M. Importuna响应机制,这将为理解真菌 - 真菌相互作用,基因功能和致病性和食用菌的品种育种来说,这将为理解的基础。

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