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首页> 外文期刊>BMC Plant Biology >Dual RNA-seq analysis provides new insights into interactions between Norway spruce and necrotrophic pathogen Heterobasidion annosum s.l.
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Dual RNA-seq analysis provides new insights into interactions between Norway spruce and necrotrophic pathogen Heterobasidion annosum s.l.

机译:双RNA-SEQ分析在挪威云杉和病症云杉和病情病原体异常的相互作用中提供了新的洞察力annosum s.l.

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摘要

Root and butt rot of conifer trees caused by fungi belonging to the Heterobasidion annosum species complex is one of the most economically important fungal diseases in commercial conifer plantations throughout the Northern hemisphere. We investigated the interactions between Heterobasidion fungi and their host by conducting dual RNA-seq and chemical analysis on Norway spruce trees naturally infected by Heterobasidion spp. We analyzed host and pathogen transcriptome and phenolic and terpenoid contents of the spruce trees. Presented results emphasize the role of the phenylpropanoid and flavonoid pathways in the chemical defense of Norway spruce trees. Accumulation of lignans was observed in trees displaying symptoms of wood decay. A number of candidate genes with a predicted role in the higher level regulation of spruce defense responses were identified. Our data indicate a possible role of abscisic acid (ABA) signaling in the spruce defense against Heterobasidion infection. Fungal transcripts corresponding to genes encoding carbohydrate- and lignin-degrading enzymes, secondary metabolism genes and effector-like genes were expressed during the host colonization. Our results provide additional insight into defense strategies employed by Norway spruce trees against Heterobasidion infection. The potential applications of the identified candidate genes as markers for higher resistance against root and butt rot deserve further evaluation.
机译:由属于异质含有的真菌的针叶树造成的针叶树树木的根和对接腐烂是北半球北半球的商业针叶树种植园中最经济上最重要的真菌疾病之一。我们通过在异常感染的挪威云杉树上进行双RNA-SEQ和化学分析,研究了异代性真菌与其宿主之间的相互作用。我们分析了宿主和病原体转录组和刺激性树木的酚类和萜类含量。提出的结果强调苯丙烷和黄酮途径在挪威云杉树的化学防御中的作用。在树木中观察到木材的积累显示木材衰变的症状。确定了许多具有预测作用的候选基因在云杉防御反应的较高水平调节中。我们的数据表明脱离酸(ABA)信号传导在云杉防御中的可能作用。对应于编码碳水化合物和木质素降解酶的基因的真菌转录物,在宿主定植期间表达次生代谢基因和效应样基因。我们的结果提供了挪威云杉树抵抗异常感染的防御战略的额外洞察力。所识别的候选基因的潜在应用作为用于更高抗根和对接腐蚀的标记值得进一步的评估。

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