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Connecting Source with Sink: The Role of Arabidopsis AAP8 in Phloem Loading of Amino Acids

机译:连接源与接收器:拟南芥AAP8在氨基酸韧皮部负载中的作用

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摘要

Allocation of large amounts of nitrogen to developing organs occurs in the phloem and is essential for plant growth and seed development. In Arabidopsis (Arabidopsis thaliana) and many other plant species, amino acids represent the dominant nitrogen transport forms in the phloem, and they are mainly synthesized in photosynthetically active source leaves. Following their synthesis, a broad spectrum of the amino nitrogen is actively loaded into the phloem of leaf minor veins and transported within the phloem sap to sinks such as developing leaves, fruits, or seeds. Controlled regulation of the source-to-sink transport of amino acids has long been postulated; however, the molecular mechanism of amino acid phloem loading was still unknown. In this study, Arabidopsis AMINO ACID PERMEASE8 (AAP8) was shown to be expressed in the source leaf phloem and localized to the plasma membrane, suggesting its function in phloem loading. This was further supported by transport studies with aap8 mutants fed with radiolabeled amino acids and by leaf exudate analyses. In addition, biochemical and molecular analyses revealed alterations in leaf nitrogen pools and metabolism dependent on the developmental stage of the mutants. Decreased amino acid phloem loading and partitioning to sinks led to decreased silique and seed numbers, but seed protein levels were unchanged, demonstrating the importance of AAP8 function for sink development rather than seed quality. Overall, these results show that AAP8 plays an important role in source-to-sink partitioning of nitrogen and that its function affects source leaf physiology and seed yield.
机译:韧皮部会向发育器官分配大量氮,这对于植物生长和种子发育至关重要。在拟南芥(Arabidopsis thaliana)和许多其他植物物种中,氨基酸代表韧皮部中占主导地位的氮转运形式,并且它们主要是在具有光合作用活性的叶片中合成的。在它们合成之后,广谱的氨基氮被积极地加载到叶小脉的韧皮部中,并在韧皮部汁液中运输到诸如发育中的叶片,果实或种子的汇。长期以来,人们一直认为对氨基酸从源到汇的运输进行控制性调控。然而,氨基酸韧皮部负载的分子机制仍是未知的。在这项研究中,拟南芥氨基酸PERMEASE8(AAP8)在源叶韧皮部中表达并定位于质膜,表明其在韧皮部负载中的功能。载有放射性标记氨基酸的aap8突变体的转运研究和叶渗出液分析进一步支持了这一点。此外,生化和分子分析表明,叶片氮库和代谢的变化取决于突变体的发育阶段。减少的氨基酸韧皮部加载和分配到水槽导致了角果和种子数量的减少,但是种子蛋白水平没有变化,表明AAP8功能对于水槽发育而不是种子质量的重要性。总体而言,这些结果表明,AAP8在氮源到氮的分配中起着重要作用,其功能影响源叶生理和种子产量。

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