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首页> 外文期刊>Molecular Plant-Microbe Interactions >Arbuscular Mycorrhiza-Induced Shifts in Foliar Metabolism and Photosynthesis Mirror the Developmental Stage of the Symbiosis and Are Only Partly Driven by Improved Phosphate Uptake
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Arbuscular Mycorrhiza-Induced Shifts in Foliar Metabolism and Photosynthesis Mirror the Developmental Stage of the Symbiosis and Are Only Partly Driven by Improved Phosphate Uptake

机译:丛枝菌根诱导的叶代谢和光合作用的转变反映了共生的发展阶段,并且仅部分由改善的磷酸盐吸收驱动

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In arbuscular mycorrhizal (AM) plants, the plant delivers photoassimilates to the arbuscular mycorrhizal fungus (AMF), whereas the mycosymbiont contributes, in addition to other beneficial effects, to phosphate (PO43-) uptake from the soil. Thereby, the additional fungal carbon (C) sink strength in roots and improved plant PO43- nutrition may influence aboveground traits. We investigated how the foliar metabolome of Plantago major is affected along with the development of root symbiosis, whether the photosynthetic performance is affected by AM, and whether these effects are mediated by improved PO43- nutrition. Therefore, we studied PO43- -limited and PO43- -supplemented controls in comparison with mycorrhizal plants at 20, 30, and 62 days postinoculation with the AMF Rhizophagus irregularis. Foliar metabolome modifications were determined by the developmental stage of symbiosis, with changes becoming more pronounced over time. In a well-established stage of mature mutualism, about 60% of the metabolic changes and an increase in foliar CO2 assimilation were unrelated to the significantly increased foliar phosphorus (P) content. We propose a framework relating the time-dependent metabolic changes to the shifts in C costs and P benefits for the plant. Besides P-mediated effects, the strong fungal C sink activity may drive the changes in the leaf traits.
机译:在丛枝菌根(AM)植物中,该植物向丛枝菌根真菌(AMF)传递光同化作用,而除其他有益作用外,霉菌共生体还有助于从土壤中吸收磷酸盐(PO43-)。因此,根部额外的真菌碳(C)汇聚强度和改善的植物PO43营养可能影响地上性状。我们调查了车前草大叶叶片代谢组与根共生的发展如何受到影响,AM的光合性能是否受到影响,以及这些作用是否由改善的PO43营养介导。因此,我们在接种AMF不规则根瘤菌后20、30和62天,与菌根植物进行了PO43限制和PO43补充对照研究。根据共生的发育阶段来确定叶代谢组的修饰,随着时间的推移,这种变化变得更加明显。在成熟的共生阶段,大约60%的代谢变化和叶面CO2同化的增加与叶面磷(P)含量的显着增加无关。我们提出了一个框架,该框架将随时间变化的代谢变化与工厂C成本和P收益的变化联系起来。除了P介导的作用外,强大的真菌C库活动还可能推动叶片性状的变化。

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