Optimization of Callus Induction Using Different Plant Hormone and Light Condition

Siti Zulaiha Ghazali, S. Hashim, N. N. Rodzali, Siti Nur Azmu’i Abdullah, N. Muhammad, C. Tay, Sidik Norrizah Jaafar
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Abstract

Clinacanthus nutans is a well-known source for pharmaceutical drugs with most of the active ingredients classified as secondary metabolites. The study objectives are to explore the effect addition of different plant hormones alone or by combinations in the MS plant growth medium and factor of light sources towards induction of callus via in vitro culture. In this study, nodal explant of C. nutans was cultured on Murashige and Skoog Medium (MS) supplemented with different concentrations of Naphthaleneacetic acid (NAA) (0.5, 1.0, 1.5, and 2.0 mg/L) and 2,4-Dichlorophenoxyacetic acid (2,4-D) (0, 1, 2, 3 and 4 mg/L) at dark and light conditions. In hormone combination treatments, study was conducted with addition on same concentration of NAA and BAP in MS medium. Study with single hormone in MS medium resulted that only NAA had successfully induced callus at both light and dark conditions. Highest friable callus produced is at MS + 1.5 mg/L NAA in dark as 100% callus induced with 1.470 ± 0.225 g fresh weight. Next, study on the effect of NAA + BAP combinations in MS medium resulted that the treatment induced compact callus formation in both light and dark condition. The highest number of callus produced is in treatment of MS + NAA (0.1 mg/L) + BAP (0.1 mg/L) with 0.569 ± 0.159 callus fresh weight. To conclude single treatment callus 1.5 mg/L NAA alone at dark condition was best to produce friable and proliferative callus.
不同植物激素和光照条件下愈伤组织诱导的优化
槟榔是一种众所周知的药物来源,其大部分活性成分被归类为次生代谢产物。本研究的目的是探讨在MS植物生长培养基中单独或组合添加不同植物激素以及光源因素对离体培养愈伤组织诱导的影响。本研究采用Murashige和Skoog培养基(MS),分别添加不同浓度的萘乙酸(NAA)(0.5、1.0、1.5和2.0 mg/L)和2,4-二氯苯氧乙酸(2,4- d)(0、1、2、3和4 mg/L),在暗、光条件下培养肉苁茸(C. nutans)结瘤外植体。在激素联合处理中,在MS培养基中添加相同浓度的NAA和BAP。在MS培养基中单激素诱导的结果表明,在光照和黑暗条件下,只有NAA诱导愈伤组织成功。在MS + 1.5 mg/L NAA条件下,以1.470±0.225 g鲜重诱导的100%愈伤组织在黑暗条件下产生的脆性最高。接下来,研究了NAA + BAP在MS培养基中的作用,结果表明,在光照和黑暗条件下,NAA + BAP处理均能诱导致密愈伤组织形成。以MS + NAA (0.1 mg/L) + BAP (0.1 mg/L)处理的愈伤组织生成量最高,为0.569±0.159。结果表明,单用1.5 mg/L NAA处理的愈伤组织在黑暗条件下易碎、增殖效果最好。
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