Effects of Nitrogen Concentration on Growth, Yield and Phytochemical Content of Persicaria minor Cultivated Using Hydroponics System

Yaseer Suhaimi Mohd, A. Mirfat, Z. A. S. Nurzahidah, M. R. M. Faris
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Abstract

Persicaria minor or locally known as kesum from the family Polygonaceae is a common herbal plant found in Malaysia. Hydroponic cultivation of kesum using deep water culture (DWC) system can be an alternative option for kesum growers in increasing crop yields. The deep water culture system is a method in which liquid fertiliser solution is given directly to the plant roots without any medium and water flow. The study’s main objective was to determine the effects of nitrogen concentration on growth, yield and phytochemical content of kesum cultivated using hydroponic system. Plants were grown under one of four nitrogen concentration solution regimes and the experiment was conducted under a side netted rain shelter. The four treatments comprised of 200 mg/L, 100 mg/L, 50 mg/L and 0 mg/L of nitrogen concentrations. The experiment was arranged in Randomized Complete Block Design (RCBD) with 4 replications. Plants were selected randomly and harvested eight weeks after planting. Plants grown supplemented with 100 mg/L of nitrogen concentration gave the best growth performance and biomass yield. They produced the highest plant height (78 cm) and fresh biomass yield (174 g per plant). Meanwhile plants supplemented with 50 mg/L of nitrogen concentration produced the highest Quercetin-3-glucuronide (Q3G) (98.261 mg/mL) and Quercitrin (61.367 mg/mL) compound compared to the other treatments. However, plants treated with 0 mg/L of nitrogen concentrations exhibited major nutrients deficiencies symptoms and die after 3 weeks of planting. Hence, it can be concluded that the kesum plants cultivated using hydroponics’ deep water culture system supplemented with 100 mg/L of nitrogen concentration gave the highest plant growth and biomass yields. However, to obtain higher Quercetin-3-glucuronide and Quercitrin compound, 50 mg/L of nitrogen concentration is recommended.
小桃香,或在当地称为桃香,来自蓼科,是一种常见的草本植物,发现于马来西亚。利用深水培养(DWC)系统进行水耕栽培,可以成为龙葵种植者提高作物产量的另一种选择。深水培养系统是一种在没有任何介质和水流的情况下将液体肥料溶液直接注入植物根部的方法。本研究的主要目的是确定氮素浓度对水培系统栽培的kesum生长、产量和植物化学成分的影响。植物在四种氮浓度溶液中的一种下生长,实验在侧网雨棚下进行。4个处理的氮浓度分别为200 mg/L、100 mg/L、50 mg/L和0 mg/L。试验采用随机完全区组设计(RCBD),每组4个重复。随机选择植株,在种植8周后收获。添加100 mg/L氮的植株生长性能和生物量最好。它们产生最高的株高(78厘米)和新鲜生物量产量(每株174克)。在氮浓度为50 mg/L的处理下,槲皮素-3-葡糖苷(Q3G)和槲皮素(61.367 mg/mL)化合物含量最高。然而,氮浓度为0 mg/L的植株表现出主要的营养缺乏症状,并在种植3周后死亡。综上所述,在水培的深水培养体系中,添加浓度为100 mg/L的氮,可获得最高的植株生长和生物量产量。然而,为了获得更高的槲皮素-3-葡糖苷和槲皮素化合物,建议氮浓度为50 mg/L。
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