首页> 外文期刊>Pertanika Journal of Tropical Agricultural Science >Preliminary Study on the Effect of Nitrogen and Potassium Fertilization, and Evapotranspiration Replacement Interaction on Primary and Secondary Metabolites of Gynura procumbens Leaves
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Preliminary Study on the Effect of Nitrogen and Potassium Fertilization, and Evapotranspiration Replacement Interaction on Primary and Secondary Metabolites of Gynura procumbens Leaves

机译:氮素施肥效应的初步研究,蒸发迁移置换术对幼儿园的初级和次生代谢物叶片

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Despite progressive reports on pharmacological properties in Gynura procumbens, many are overlooking the importance of agronomic requirements for high yields and phytochemical content that vary due to environmental variations. The study was carried out to examine the effects of nitrogen (N), potassium (K), and evapotranspiration replacement (ER) on growth and phytochemical content. Treatments affected parameters significantly (p≤0.05) with a stronger effect on physiological and biochemical attributes (p≤0.0001). Highest and lowest yield of biomass and phytochemical content were observed under N0K30(70) and N90K0(25), respectively. Treatments interaction was highly significant (p≤0.0001) in Cond, TPrC, and TFC, (p≤0.05) in CF and PWP, and not significant (p0.05) in Photo, TCC, and TPC. The 75% ER had significant (p≤0.05) output of biomass and phytochemical content. As ER decreased from 100 to 25%, the Photo and CF were reduced. Phytochemical content displayed a significant negative relationship with PWP. Caffeic acid, kaempferol, and ferulic acid demonstrated as lead compounds. Following this, there were correlations between phenolic biosynthesis-regulated gene and gene expressions such as PAL, CHS, and F3H primers.
机译:尽管Gynura Procumbens的药理性质进行了渐进式报告,但许多人忽略了农艺要求对高产率和植物化学含量的重要性,这些内容因环境变异而有所不同。进行该研究以检查氮(N),钾(K)和蒸散溶液置换(ER)对生长和植物化学含量的影响。治疗显着的参数(p≤0.05),对生理和生化属性的影响更强(P≤0.0001)。在N0K30(70)和N90K0(25)下观察到最高和最低产量和植物化学含量的产率。在CF和PWP中,在COND,TPRC和TFC中,在COND,TPRC和TFC中具有高度显着(p≤0.0001),在照片,TCC和TPC中不显着(P≤0.05)。 75%ER具有显着的(P≤0.05)生物质和植物化学含量的产量。由于呃从100%降低到25%,减少了照片和CF。植物化学内容与PWP显示出显着的负面关系。作为铅化合物证明的咖啡酸,Kaempferol和阿魏酸。在此之后,酚类生物合成的基因与基因表达等存在相关性,例如PAL,CHS和F3H引物。

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