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首页> 外文期刊>Molecular Plant-Microbe Interactions >Host Tissue Environment Directs Activities of an Epichloe Endophyte, While It Induces Systemic Hormone and Defense Responses in Its Native Perennial Ryegrass Host
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Host Tissue Environment Directs Activities of an Epichloe Endophyte, While It Induces Systemic Hormone and Defense Responses in Its Native Perennial Ryegrass Host

机译:宿主组织环境指导Epichloe Endophyte的活动,同时它诱导其天然常年黑麦草主体中的全身激素和防御反应

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Increased resilience of pasture grasses mediated by fungal Epichloe endophytes is crucial to pastoral industries. The underlying mechanisms are only partially understood and likely involve very different activities of the endophyte in different plant tissues and responses of the plant to these. We analyzed the transcriptomes of Epichloe festucae and its host, Lolium perenne, in host tissues of different function and developmental stages. The endophyte contributed approximately 10x more to the transcriptomes than to the biomass of infected tissues. Proliferating mycelium in growing host tissues highly expressed genes involved in hyphal growth. Nonproliferating mycelium in mature plant tissues, transcriptionally equally active, highly expressed genes involved in synthesizing antiherbivore compounds. Transcripts from the latter accounted for 4 % of fungal transcripts. Endophyte infection systemically but moderately increased transcription of L perenne genes with roles in hormone biosynthesis and perception as well as stress and pathogen resistance while reducing expression of genes involved in photosynthesis. There was a good correlation between transcriptome-based observations and physiological observations. Our data indicate that the fitness-enhancing effects of the endophyte are based both on its biosynthetic activities, predominantly in mature host tissues, and also on systemic alteration of the host's hormonal responses and induction of stress response genes.
机译:由真菌癫痫患者介导的牧草草的复原力增加对牧师产业至关重要。潜在的机制仅部分地理解,并且可能涉及对不同植物组织中的内心细胞和植物对这些反应的影响非常不同的活性。我们分析了Epichloe Festucape及其宿主,Lolium Perenne的转录组,在不同功能和发育阶段的宿主组织中。 Endophyte向转录om比感染组织的生物质贡献大约10倍。在生长宿主组织中的增殖菌丝体高度表达的基因参与亚酚醛生长。在成熟的植物组织中,在成熟植物组织中进行菌丝体,具有涉及合成抗癫患化合物的同等活性的高度表达基因。后者的转录物占真菌转录物的4%。 Endophyte感染在激素生物合成和感知和感知中的作用和中度增加了L Perenne基因的转录,以及应激和病原体抗性,同时减少了光合作用中所涉及的基因的表达。转录组的观察结果与生理观察之间存在良好的相关性。我们的数据表明,内心细胞的健身增强效果主要基于其生物合成活性,主要是在成熟的宿主组织中,以及宿主对宿主反应的全身改变和应激反应基因的诱导。

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