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Effects of Nitrogen Fertilization on Synthesis of Primary and Secondary Metabolites in Three Varieties of Kacip Fatimah (Labisia Pumila Blume)

机译:施氮对三种Kacip Fatimah(Labisia Pumila Blume)初级和次级代谢产物合成的影响

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摘要

A split plot 3 by 4 experiment was designed to examine the impact of 15-week variable levels of nitrogen fertilization (0, 90, 180 and 270 kg N/ha) on the characteristics of total flavonoids (TF), total phenolics (TP), total non structurable carbohydrate (TNC), net assimilation rate, leaf chlorophyll content, carbon to nitrogen ratio (C/N), phenyl alanine lyase activity (PAL) and protein content, and their relationships, in three varieties of Labisia pumila Blume (alata, pumila and lanceolata). The treatment effects were solely contributed by nitrogen application; there was neither varietal nor interaction effect observed. As nitrogen levels increased from 0 to 270 kg N/ha, the production of TNC was found to decrease steadily. Production of TF and TP reached their peaks under 0 followed by 90, 180 and 270 kg N/ha treatment. However, net assimilation rate was enhanced as nitrogen fertilization increased from 0 to 270 kg N/ha. The increase in production of TP and TF under low nitrogen levels (0 and 90 kg N/ha) was found to be correlated with enhanced PAL activity. The enhancement in PAL activity was followed by reduction in production of soluble protein under low nitrogen fertilization indicating more availability of amino acid phenyl alanine (phe) under low nitrogen content that stimulate the production of carbon based secondary metabolites (CBSM). The latter was manifested by high C/N ratio in L. pumila plants.
机译:设计了一个3乘4的分割试验,以研究15周可变水平的氮肥水平(0、90、180和270 kg N / ha)对总类黄酮(TF),总酚类(TP)特性的影响三种拉比西亚矮胖蓝变种(Labisia pumila Blume)的总非结构化碳水化合物(TNC),净同化率,叶片叶绿素含量,碳氮比(C / N),苯基丙氨酸裂解酶活性(PAL)和蛋白质含量及其关系阿拉塔拉,普米拉和轮叶)。治疗效果完全由施氮引起。没有观察到品种或相互作用的影响。随着氮含量从0增加到270 kg N / ha,TNC的产量稳定下降。 TF和TP的产量在0以下达到峰值,随后分别进行90、180和270 kg N / ha处理。但是,随着氮肥从0增加到270 kg N / ha,净同化率提高。在低氮水平(0和90 kg N / ha)下,TP和TF的产量增加与PAL活性增强有关。 PAL活性增强后,低氮施肥下可溶性蛋白质的产量减少,表明在低氮含量下氨基酸苯基丙氨酸(phe)的利用率更高,从而刺激了碳基次生代谢产物(CBSM)的产生。后者通过在L. pumila植物中高的C / N比来体现。

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