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The transporter GAT1 plays an important role in GABA-mediated carbon-nitrogen interactions in Arabidopsis

机译:转运蛋白GAT1在拟南芥中GABA介导的碳氮相互作用中起重要作用

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摘要

Glutamate derived γ-aminobutyric acid (GABA) is synthetized in the cytosol prior to delivery to the mitochondria where it is catabolized via the TCA cycle. GABA accumulates under various environmental conditions, but an increasing number of studies show its involvement at the crossroad between C and N metabolism. To assess the role of GABA in modulating cellular metabolism, we exposed seedlings of A. thaliana GABA transporter gat1 mutant to full nutrition medium and media deficient in C and N combined with feeding of different concentrations (0.5 and 1 mM) of exogenous GABA. GC-MS based metabolite profiling showed an expected effect of medium composition on the seedlings metabolism of mutant and wild type alike. That being said, a significant interaction between GAT1 deficiency and medium composition was determined with respect to magnitude of change in relative amino acid levels. The effect of exogenous GABA treatment on metabolism was contingent on both the medium and the genotype, leading for instance to a drop in asparagine under full nutrition and low C conditions and glucose under all tested media, but not to changes in GABA content. We additionally assessed the effect of GAT1 deficiency on the expression of glutamate metabolism related genes and genes involved in abiotic stress responses. These results suggest a role for GAT1 in GABA-mediated metabolic alterations in the context of the C-N equilibrium of plant cells.
机译:谷氨酸衍生的γ-氨基丁酸(GABA)在递送至线粒体之前在细胞质中合成,然后通过TCA循环进行分解。 GABA在各种环境条件下积累,但是越来越多的研究表明GABA参与了C和N代谢之间的交叉路口。为了评估GABA在调节细胞代谢中的作用,我们将拟南芥GABA转运蛋白gat1突变体的幼苗暴露于完全营养的培养基以及缺乏C和N的培养基,并饲喂不同浓度(0.5和1 mM)的外源GABA。基于GC-MS的代谢物谱分析显示,培养基组成对突变型和野生型相似的幼苗代谢具有预期的影响。就是说,关于相对氨基酸水平的变化幅度,确定了GAT1缺乏与培养基组成之间的显着相互作用。外源GABA处理对代谢的影响取决于培养基和基因型,例如导致在充分营养和低C条件下的天冬酰胺下降,在所有测试培养基中导致葡萄糖下降,但不会导致GABA含量变化。我们还评估了GAT1缺乏症对谷氨酸代谢相关基因和参与非生物胁迫反应的基因表达的影响。这些结果表明在植物细胞的C-N平衡的情况下,GAT1在GABA介导的代谢变化中起作用。

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