首页> 外文OA文献 >Nuclear magnetic resonance spectroscopy-based metabolite profiling of transgenic tomato fruit engineered to accumulate spermidine and spermine reveals enhanced anabolic and nitrogen-carbon interactions.
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Nuclear magnetic resonance spectroscopy-based metabolite profiling of transgenic tomato fruit engineered to accumulate spermidine and spermine reveals enhanced anabolic and nitrogen-carbon interactions.

机译:基于核磁共振波谱技术的转基因番茄果实代谢产物谱图,可积累亚精胺和亚精胺,从而显示出合成代谢和氮碳相互作用增强。

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摘要

Polyamines are ubiquitous aliphatic amines that have been implicated in myriad processes, but their precise biochemical roles are not fully understood. We have carried out metabolite profiling analyses of transgenic tomato (Solanum lycopersicum) fruit engineered to accumulate the higher polyamines spermidine (Spd) and spermine (Spm) to bring an insight into the metabolic processes that Spd/Spm regulate in plants. NMR spectroscopic analysis revealed distinct metabolite trends in the transgenic and wild-type/azygous fruits ripened off the vine. Distinct metabolites (glutamine, asparagine, choline, citrate, fumarate, malate, and an unidentified compound A) accumulated in the red transgenic fruit, while the levels of valine, aspartic acid, sucrose, and glucose were significantly lower as compared to the control (wild-type and azygous) red fruit. The levels of isoleucine, glucose, gamma-aminobutyrate, phenylalanine, and fructose remained similar in the nontransgenic and transgenic fruits. Statistical treatment of the metabolite variables distinguished the control fruits from the transgenic fruit and provided credence to the pronounced, differential metabolite profiles seen during ripening of the transgenic fruits. The pathways involved in the nitrogen sensing/signaling and carbon metabolism seem preferentially activated in the high Spd/Spm transgenics. The metabolite profiling analysis suggests that Spd and Spm are perceived as nitrogenous metabolites by the fruit cells, which in turn results in the stimulation of carbon sequestration. This is seen manifested in higher respiratory activity and up-regulation of phosphoenolpyruvate carboxylase and NADP-dependent isocitrate dehydrogenase transcripts in the transgenic fruit compared to controls, indicating high metabolic status of the transgenics even late in fruit ripening.
机译:多胺是无处不在的脂族胺,已经涉及到无数的过程,但是它们的确切生化作用尚未得到充分理解。我们对转基因番茄(Solanum lycopersicum)果实进行了代谢产物分析,该果实经过工程设计可积累更高的多胺亚精胺(Spd)和亚精胺(Spm),从而深入了解Spd / Spm在植物中调控的代谢过程。 NMR光谱分析表明,从葡萄藤中成熟的转基因和野生型/水合果实具有明显的代谢趋势。在红色转基因果实中积累了独特的代谢产物(谷氨酰胺,天冬酰胺,胆碱,柠檬酸盐,富马酸盐,苹果酸和未知的化合物A),而缬氨酸,天冬氨酸,蔗糖和葡萄糖的水平则明显低于对照组(野生型和无核的)红色果实。在非转基因和转基因水果中,异亮氨酸,葡萄糖,γ-氨基丁酸,苯丙氨酸和果糖的水平保持相似。代谢物变量的统计处理将对照果实与转基因果实区分开,并为转基因果实成熟过程中可见的明显的,不同的代谢产物谱提供了依据。在高Spd / Spm转基因中,似乎优先激活了涉及氮感测/信号传递和碳代谢的途径。代谢物谱分析表明,果实细胞将Spd和Spm视为含氮代谢物,进而刺激了碳固存。与对照相比,这表现为转基因果实具有更高的呼吸活性和磷酸烯醇丙酮酸羧化酶和NADP依赖性异柠檬酸脱氢酶转录物的上调,表明转基因即使在果实成熟后期也具有高代谢状态。

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