Department of Biology, Faculty of Science, Universiti Putra Malaysia, UPM Serdang, Selangor Darul Ehsan 43400, Malaysia.
Department of Biology, Institute of Biological Science, Faculty of Science, University Malaya, Kuala Lumpur 50603, Malaysia.
Molecules. 2017 Oct 12;22(10):1623. doi: 10.3390/molecules22101623.
A randomized complete block (RCBD) study was designed to investigate the effects of cadmium (Cd) and copper (Cu) on the growth, bioaccumulation of the two heavy metals, metabolite content and antibacterial activities in (Lour.) Merr. Nine treatments including (1) control (no Cd and Cu); (2) Cd 2 = cadmium 2 mg/L; (3) Cd 4 = cadmium 4 mg/L; (4) Cu 70 = copper 70 mg/L; (5) Cu 140 = copper 140 mg/L); (6) Cd 2 + Cu 70 = cadmium 2 mg/L + copper 70 mg/L); (7) Cd 2 + Cu 140 = cadmium 2 mg/L + copper 70 mg/L); (8) Cd 4 + Cu 70 = cadmium 4 mg/L+ copper 70 mg/L and (9) Cd 4 + Cu 140 = cadmium 4 mg/L + copper 140 mg/L) were evaluated in this experiment. It was found that the growth parameters (plant dry weight, total leaf area and basal diameter) were reduced with the exposure to increased concentrations of Cd and Cu and further decreased under interaction between Cd and Cu. Production of total phenolics, flavonoids and saponin was observed to be reduced under combined Cd and Cu treatment. The reduction in the production of plant secondary metabolites might be due to lower phenyl alanine lyase (PAL) activity under these conditions. Due to that, the 1,1-diphenyl-2-picrylhydrazyl (DPPH), ferric reducing antioxidant potential (FRAP) and antibacterial activities was also found to be reduced by the combined treatments. The current experiments show that the medicinal properties of are reduced by cadmium and copper contamination. The accumulation of heavy metal also was found to be higher than the safety level recommended by the WHO in the single and combined treatments of Cd and Cu. These results indicate that exposure of to Cd and Cu contaminated soil may potentially harm consumers due to bioaccumulation of metals and reduced efficacy of the herbal product.
采用完全随机区组(RCBD)设计研究了镉(Cd)和铜(Cu)对 (Lour.) Merr.生长、对这两种重金属的生物积累、代谢产物含量和抗菌活性的影响。共有 9 种处理,包括(1)对照(无 Cd 和 Cu);(2)Cd 2 = 2mg/L 镉;(3)Cd 4 = 4mg/L 镉;(4)Cu 70 = 70mg/L 铜;(5)Cu 140 = 140mg/L 铜;(6)Cd 2 + Cu 70 = 2mg/L 镉+70mg/L 铜;(7)Cd 2 + Cu 140 = 2mg/L 镉+140mg/L 铜;(8)Cd 4 + Cu 70 = 4mg/L 镉+70mg/L 铜;(9)Cd 4 + Cu 140 = 4mg/L 镉+140mg/L 铜)。结果表明,随着 Cd 和 Cu 浓度的增加,植株的生长参数(干重、总叶面积和基径)均降低,而在 Cd 和 Cu 相互作用下进一步降低。在 Cd 和 Cu 联合处理下,总酚、类黄酮和皂苷的产量也观察到降低。在这些条件下,苯丙氨酸裂解酶(PAL)活性降低,可能导致植物次生代谢产物的产量降低。因此,1,1-二苯基-2-苦基肼(DPPH)、铁还原抗氧化能力(FRAP)和抗菌活性也因联合处理而降低。目前的实验表明,重金属 Cd 和 Cu 的污染降低了 的药用价值。在 Cd 和 Cu 的单一和联合处理中,重金属的积累也高于世界卫生组织(WHO)推荐的安全水平。这些结果表明,由于金属的生物积累和草药产品功效的降低, 暴露于 Cd 和 Cu 污染的土壤可能会对消费者造成潜在危害。