首页> 外文期刊>Journal of Agricultural and Food Chemistry >Effects of an Alfalfa ProtelrLHydrolysate on the Gene Expression and Activity of Enzymes of the Tricarboxylic Acid (TCA) Cycle and Nitrogen Metabolism in Zea mays L.
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Effects of an Alfalfa ProtelrLHydrolysate on the Gene Expression and Activity of Enzymes of the Tricarboxylic Acid (TCA) Cycle and Nitrogen Metabolism in Zea mays L.

机译:苜蓿蛋白水解产物对玉米中三羧酸(TCA)循环酶基因表达和活性及氮代谢的影响。

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摘要

The effects through which an alfalfa protein hydrolysate (EM) possessing gibberellin- and auxin-like activity may promote plant nitrogen (N) nutrition have been Investigated in Zea mays L. Treatment with 0.01 or 0.1 mg L~(-1) EM for 48 h resulted in enhanced plant growth and leaf sugar accumulation. Concomitantly, the level of nitrates decreased, whereas total N percentage was unchanged. The activity of a number of enzymes involved in carbon (C) metabolism (malate dehydrogenase, MDH; isocitrate dehydrogenase, IDH; citrate synthase, CS) and N reduction and assimilation (nitrate reductase, NR; nitrite reductase, NIR; glutamine synthetase, GS; glutamate synthase, GOGAT; aspartate aminotransferase, AspAT) was significantly induced by EM supply to plants, and the transcription pattern of MDH, IDH, CS, and NR strongly correlated with data of enzyme activity. The transcript accumulation of asparagine synthetase (AS) was also induced by EM in the roots. The results suggest that EM might promote nitrogen assimilation in plants through a coordinate regulation of C and N metabolic pathways and open the way for further research on protein hydrolysates as a valid tool to improve N use efficiency and, as a consequence, to reduce the intensive use of inorganic N fertilizers in agriculture.
机译:在玉米中研究了具有赤霉素和生长素样活性的苜蓿蛋白水解产物(EM)可以促进植物氮(N)营养的作用。用0.01或0.1 mg L〜(-1)EM处理48 h导致植物生长增强和叶糖积累。随之而来的是,硝酸盐的含量下降了,而总氮的含量没有变化。参与碳(C)代谢的多种酶的活性(苹果酸脱氢酶,MDH;异柠檬酸脱氢酶,IDH;柠檬酸合酶,CS)和氮还原和同化作用(硝酸还原酶,NR;亚硝酸盐还原酶,NIR;谷氨酰胺合成酶,GS) ;谷氨酸合酶GOGAT;天冬氨酸转氨酶AspAT)受到EM向植物的显着诱导,MDH,IDH,CS和NR的转录模式与酶活性数据密切相关。 EM在根中也诱导天冬酰胺合成酶(AS)的转录积累。结果表明,EM可能通过协调C和N代谢途径来促进植物中的氮同化作用,并为进一步研究蛋白质水解物开辟了道路,这是提高氮利用效率并因此减少集约利用氮素的有效手段。在农业中使用无机氮肥。

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