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Infrared spectroscopy-based metabolomic analysis of maize growing under different nitrogen nutrition

机译:不同氮素营养条件下玉米基于红外光谱的代谢组学分析

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For metabolomic analysis of maize plants growing under different nitrogen nutrition sequential extraction of fresh biomass was used and isolated fractions were characterized and evaluated using IR spectra. The IR spectra of individual fractions were evaluated in relation to the nitrogen rates (2 g or 4 g N), to applied fertilizers (ammonium nitrogen or urea ammonium nitrate solution) and sampling period. For butanol fraction, typical bands of flavonoids, polar phospholipids, steryl glycosides, analogues of ecdysteroids were characterized. The IR spectra of BuOH fraction showed changes of relative contents of isolated compounds mainly affected by nitrogen rates. For water fraction bands of organic acids, salts of organic acids, flavonoid glycosides and oligopeptides (phytochelatins and/or glutathione) were the most significant. The results showed an increased induction of oxalic acid in plants after 4 g N application. Degradation of this acid induced oxidative stress, therefore strong correlation among contents of oxalic acid, flavonoids and compounds with amide nitrogen (glutathione) was observed in plants growing under 4 g nitrogen nutrition. The glutathione-ascorbate cycle protects plants against oxidative damage.
机译:对于在不同氮营养条件下生长的玉米植物的代谢组学分析,使用了新鲜生物质的顺序提取,并使用红外光谱对分离出的馏分进行了表征和评估。评估了各个部分的红外光谱,其中包括与施氮量(2 g或4 g N),施肥(铵态氮或硝酸铵尿素铵溶液)和采样周期有关。对于丁醇级分,表征了类黄酮,极性磷脂,甾醇糖苷,蜕皮类固醇类似物的典型谱带。 BuOH馏分的红外光谱表明,分离出的化合物的相对含量变化主要受氮速率的影响。对于有机酸的水馏分带,有机酸,类黄酮糖苷和寡肽(植物螯合素和/或谷胱甘肽)的盐最为重要。结果表明,施用4 g N后植物中草酸的诱导作用增加。在4 g氮营养下生长的植物中观察到该酸的降解诱导了氧化应激,因此草酸,类黄酮和具有酰胺氮(谷胱甘肽)的化合物之间的相关性很强。谷胱甘肽-抗坏血酸循环保护植物免受氧化损伤。

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