Ahmad Nisar, Abbasi Bilal Haider, Fazal Hina, Khan Mubarak Ali, Afridi Muhammad Siddique
Department of biotechnology, Faculty of Biological Sciences, Quaid-i-Azam University, 45320 Islamabad, Pakistan.
Pakistan Council of Scientific and Industrial Research (PCSIR) Laboratories Complex, 25120 Peshawar, Pakistan.
C R Biol. 2014 Jan;337(1):19-28. doi: 10.1016/j.crvi.2013.10.011. Epub 2013 Dec 16.
In this study, a novel approach for in vitro regeneration of Piper nigrum L. has been applied in order to increase healthy biomass, phytochemicals and piperine production via reverse photoperiod (16hD/8hL). Leaf portions of the seed-derived plants were placed on an MS-medium fortified with different PGRs. Under 16hD/8hL, thidiazuron (TDZ; 4.0 mg L⁻¹) and BA (1.5 mg L⁻¹) was found to be the most effective (<90%) in callus induction. Two concentrations (1.5, 2.0 mg L⁻¹) of the IBA produced>80% shoots from callus cultures. Healthy shoots were transferred to rooting medium and higher percentage of rooting (<90%) was observed on IBA (1.5 mg L⁻¹). These in vitro tissues were subjected to amino acid analysis, spectrophotometry, and HPLC. ARG, SER, THR, and TYR were the most abundant components out of 17 amino acids. Higher amino acid production was observed under normal photoperiod (16hL/8hD) than under reverse photoperiod (16hD/8hL). The highest total phenolic content (TPC; 9.91 mg/g-DW) and flavonoid content (7.38 mg/g-DW) were observed in callus cultures incubated under 16hL/8hD than other tissues incubated under 16hD/8hL photoperiod. Higher DPPH and PoMo activities were observed in tissues incubated under 16hL/8hD photoperiod, while ABTS and Fe²⁺ chelating activities were found higher in tissues incubated under reverse photoperiod. Significant quantities of piperine content were observed in all tissues except callus cultures. These results suggest that reverse photoperiod is a promising approach for callus induction, phytochemicals and piperine production for commercial applications.
在本研究中,为了通过反向光周期(16小时黑暗/8小时光照)增加健康生物量、植物化学物质和胡椒碱产量,应用了一种新颖的黑胡椒体外再生方法。将种子衍生植株的叶片部分置于添加了不同植物生长调节剂的MS培养基上。在16小时黑暗/8小时光照条件下,发现噻二唑素(TDZ;4.0毫克/升)和苄氨基嘌呤(BA;1.5毫克/升)在愈伤组织诱导方面最有效(<90%)。两种浓度(1.5、2.0毫克/升)的吲哚丁酸(IBA)能使愈伤组织培养物产生>80%的芽。将健康的芽转移到生根培养基上,在IBA(1.5毫克/升)上观察到较高的生根率(<90%)。对这些体外组织进行了氨基酸分析、分光光度法和高效液相色谱分析。在17种氨基酸中,精氨酸、丝氨酸、苏氨酸和酪氨酸是含量最丰富的成分。在正常光周期(16小时光照/8小时黑暗)下观察到的氨基酸产量高于反向光周期(16小时黑暗/8小时光照)。与在16小时黑暗/8小时光照光周期下培养的其他组织相比,在16小时光照/8小时黑暗条件下培养的愈伤组织培养物中观察到最高的总酚含量(TPC;9.91毫克/克干重)和类黄酮含量(7.38毫克/克干重)。在16小时光照/8小时黑暗光周期下培养的组织中观察到较高的DPPH和铁氰化钾活性,而在反向光周期下培养的组织中发现ABTS和Fe²⁺螯合活性较高。除愈伤组织培养物外,在所有组织中均观察到大量的胡椒碱含量。这些结果表明,反向光周期是一种有前景的愈伤组织诱导、植物化学物质和胡椒碱生产方法,可用于商业应用。