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Metabolic Responses to Waterlogging Differ between Roots and Shoots and Reflect Phloem Transport Alteration in

机译:对涝渍的代谢反应在根和芽之间的不同之处并反映了韧皮新的运输改变

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摘要

Root oxygen deficiency that is induced by flooding (waterlogging) is a common situation in many agricultural areas, causing considerable loss in yield and productivity. Physiological and metabolic acclimation to hypoxia has mostly been studied on roots or whole seedlings under full submergence. The metabolic difference between shoots and roots during waterlogging, and how roots and shoots communicate in such a situation is much less known. In particular, the metabolic acclimation in shoots and how this, in turn, impacts on roots metabolism is not well documented. Here, we monitored changes in the metabolome of roots and shoots of barrel clover (Medicago truncatula), growth, and gas-exchange, and analyzed phloem sap exudate composition. Roots exhibited a typical response to hypoxia, such as γ-aminobutyrate and alanine accumulation, as well as a strong decline in raffinose, sucrose, hexoses, and pentoses. Leaves exhibited a strong increase in starch, sugars, sugar derivatives, and phenolics (tyrosine, tryptophan, phenylalanine, benzoate, ferulate), suggesting an inhibition of sugar export and their alternative utilization by aromatic compounds production via pentose phosphates and phosphoenolpyruvate. Accordingly, there was an enrichment in sugars and a decline in organic acids in phloem sap exudates under waterlogging. Mass-balance calculations further suggest an increased imbalance between loading by shoots and unloading by roots under waterlogging. Taken as a whole, our results are consistent with the inhibition of sugar import by waterlogged roots, leading to an increase in phloem sugar pool, which, in turn, exert negative feedback on sugar metabolism and utilization in shoots.
机译:洪水引起的根缺氧(涝渍)是许多农业领域的常见情况,导致产量和生产力的相当大。对缺氧的生理和代谢适应主要是在完全潜水下的根部或整个幼苗上进行研究。落水过程中枝条和根部之间的代谢差异,以及如何在这种情况下沟通的根源和枝条如何越少。特别是,枝条中的代谢适应以及如何反过来对根系代谢的影响并没有充分记录。在这里,我们监测了枪管三叶草(Medicago truncatula),生长和气体交换的根源和射击的变化,并分析了Phloem Sap渗出物组合物。根源表现出对缺氧的典型反应,例如γ-氨基丁酯和丙氨酸积聚,以及棉子糖,蔗糖,己糖和戊糖的强烈下降。叶片在淀粉,糖,糖衍生物和酚醛血症(酪氨酸,色氨酸,苯丙氨酸,苯甲酸酯,脱果)中表现出强烈增加,表明糖类通过戊糖磷酸盐和磷酸丙烯酸盐产生芳香族化合物产生的糖类产量及其替代利用。因此,糖中的富集和普罗仑SAP中有机酸的下降在水涝池中渗出。质量平衡计算进一步表明射击射击和卸载在涝渍下的卸载之间的不平衡增加。作为一个整体,我们的结果与涝渍的抑制抑制糖类含量,导致韧皮糖池的增加,反过来,这反馈对糖代谢和芽中的利用产生负面反馈。

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