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首页> 外文期刊>Environmental microbiology >Integrated proteomic and metabolomic analyses revealed molecular adjustments inPopulus x canescenscolonized with the ectomycorrhizal fungusPaxillus involutus, which limited plant host growth
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Integrated proteomic and metabolomic analyses revealed molecular adjustments inPopulus x canescenscolonized with the ectomycorrhizal fungusPaxillus involutus, which limited plant host growth

机译:综合蛋白质组学和代谢物分析显示分子调整Inpulus x CanescensColonized与Ececycorrohizal Funguspaxillus患者,其有限的植物宿主生长

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Ectomycorrhizae (ECMs) are a highly context-dependent interactions that are not always beneficial for the plant host, sometimes leading to a decrease in plant growth. However, the molecular status of these plants remains unknown. We studiedPopulus x canescensmicrocuttings characterized by impaired growth in response to colonization by aPaxillus involutusstrain via integrative proteomics-metabolomics analyses. The analysed strain was characterized by low compatibility and formed only mantles, not a Hartig net, in the majority of root tips. The increased abundance of photosynthetic proteins and foliar carbohydrates co-occurred with signals of intensified resource exchange via the stems of colonized plants. In the roots, intensified C metabolism resulted in the biosynthesis of secondary C compounds unavailable to the fungal partner but also C skeletons necessary to increase insufficient N uptake from the hyphae. The stress response was also detected in colonized plants but was similar to that reported previously during mutualistic ECM interactions. In colonized poplar plants, mechanisms to prevent imbalanced C/N trade-offs were activated. Root metabolism strongly depended on features of the whole plant, especially the foliar C/N budget. However, despite ECM-triggered growth impairment and the foliar nutrient status, the fungal partner was recognized to be a symbiotic partner.
机译:Eccycorrhizae(ECMS)是一种高度上下文依赖的相互作用,对植物宿主并不总是有益,有时导致植物生长减少。然而,这些植物的分子状态仍然未知。我们研究了通过综合蛋白质组学 - 代谢组科分析对Apaxillus的殖民化的增长受损的特征化X Canescensmicrocuttings。分析的菌株的特征在于低相容性,并仅形成了大多数根尖中的搭扣,而不是Hartig网。通过殖民化植物的茎,利用加强资源交换信号的光合蛋白和叶状碳水化合物的增加的丰富。在根系中,增强的C代谢导致二次C化合物的生物合成,对真菌伴侣不提供,而且还需要增加菌丝不足的骨骼的骨骼。在殖民化植物中也检测到应力反应,但类似于先前在互相互动的ECM相互作用期间报道的植物。在殖民化杨树植物中,激活防止不平衡C / N权衡的机制。根代谢强烈依赖于整个植物的特征,特别是叶面C / ​​N预算。然而,尽管存在ECM引发的增长障碍和叶面营养状况,但真菌合作伙伴被认为是一个共生伴侣。

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