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Cessation of photosynthesis in Lotus japonicus leaves leads to reprogramming of nodule metabolism

机译:莲ap叶片光合作用的停止导致根瘤代谢的重新编程

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摘要

Symbiotic nitrogen fixation (SNF) involves global changes in gene expression and metabolite accumulation in both rhizobia and the host plant. In order to study the metabolic changes mediated by leaf–root interaction, photosynthesis was limited in leaves by exposure of plants to darkness, and subsequently gene expression was profiled by real-time reverse transcription–PCR (RT–PCR) and metabolite levels by gas chromatography–mass spectrometry in the nodules of the model legume Lotus japonicus. Photosynthetic carbon deficiency caused by prolonged darkness affected many metabolic processes in L. japonicus nodules. Most of the metabolic genes analysed were down-regulated during the extended dark period. In addition to that, the levels of most metabolites decreased or remained unaltered, although accumulation of amino acids was observed. Reduced glycolysis and carbon fixation resulted in lower organic acid levels, especially of malate, the primary source of carbon for bacteroid metabolism and SNF. The high amino acid concentrations together with a reduction in total protein concentration indicate possible protein degradation in nodules under these conditions. Interestingly, comparisons between amino acid and protein content in various organs indicated systemic changes in response to prolonged darkness between nodulated and non-nodulated plants, rendering the nodule a source organ for both C and N under these conditions.
机译:共生固氮(SNF)涉及根瘤菌和寄主植物中基因表达和代谢产物积累的整体变化。为了研究由叶-根相互作用介导的代谢变化,通过使植物暴露在黑暗中来限制叶片的光合作用,随后通过实时逆转录-PCR(RT-PCR)分析基因表达,并通过气体分析代谢产物水平。豆科植物莲Lotus模型中的结节中的色谱-质谱联用。长期黑暗导致的光合作用碳缺乏影响了日本乳节结节的许多代谢过程。在延长的黑暗时期,分析的大多数代谢基因均被下调。除此之外,尽管观察到氨基酸的积累,大多数代谢物的水平降低或保持不变。糖酵解作用和碳固定作用的降低导致有机酸含量降低,尤其是苹果酸,这是细菌代谢和SNF的主要碳源。高氨基酸浓度加上总蛋白质浓度降低表明在这些条件下结节中蛋白质可能降解。有趣的是,各种器官中氨基酸和蛋白质含量之间的比较表明,根瘤植物和非根瘤植物之间长时间的黑暗反应使系统发生变化,使根瘤在这些条件下成为C和N的来源器官。

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