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首页> 外文期刊>Scientific reports. >A novel exopolysaccharide elicitor from endophytic fungus Gilmaniella sp. AL12 on volatile oils accumulation in Atractylodes lancea
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A novel exopolysaccharide elicitor from endophytic fungus Gilmaniella sp. AL12 on volatile oils accumulation in Atractylodes lancea

机译:来自内参真菌Gilmaniella sp的新型外偶糖。 Al12关于atractylode Lankea的挥发油积累

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摘要

Endophytes and plants can establish specific long-term symbiosis through the accumulation of secondary metabolites. Previous studies have shown that the endophytic fungus Gilmaniella sp. AL12 can stimulate Atractylodes lancea to produce volatile oils. The purpose of this report is to investigate key factors involved in the stimulation of A. lancea by AL12 and reveal the mechanism. We identified the active component from AL12 as an extracellular mannan with a polymerization degree of 26-42. Differential membrane proteomics of A. lancea was performed by 2D electrophoresis. The results showed that there were significant differences in the expression of 83 proteins. Based on these results, we conclude that AL12 secreted mannan contributes to the antagonistic balance seen in interactions between AL12 and A. lancea. One portion of the mannan was degraded to mannose for hexokinase activation, promoting photosynthesis and energy metabolism, with a potential metabolic fluxes flowing towards terpenoid biosynthesis. The other portion of the mannan directly enhanced autoimmunity of A. lancea through G protein-mediated signal transduction and the mannan-binding lectin pathway. Volatile oil accumulation was ultimately promoted in subsequent defense reactions. This study provides a new perspective on the regulation of secondary metabolites by endophytic fungal elicitors in medicinal plants.
机译:通过次级代谢物的积累,内心细胞和植物可以建立特定的长期共生。以前的研究表明,内生真菌Gilmaniella sp。 Al12可以刺激Atractylodes Lankea产生挥发性油。本报告的目的是调查AL12刺激A. Lankea刺激的关键因素并揭示机制。我们将来自Al12的活性组分作为细胞外甘露聚合度鉴定为26-42的细胞外甘露。通过2D电泳进行A. Lancea的差动膜蛋白质组学。结果表明,83个蛋白质表达存在显着差异。根据这些结果,我们得出结论,Al12分泌的甘露甘露群落有助于Al12和A. Lankea之间的相互作用中看到的拮抗平衡。甘露甘露甘露甘露甘露糖的一部分用于甘露糖,促进光合作用和能量代谢,潜在的代谢势倍流向萜类化合物生物合成。甘露甘露甘露蛋白介导的信号转导和甘露结合凝集素途径直接增强A. Lankea的自身免疫。在随后的防御反应中最终促进了挥发性油积分。本研究提供了一种关于药用植物中内科真菌菌的次生代谢物调节的新观点。

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