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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Production of biomass and medicinal metabolites through adventitious roots in Ajuga bracteosa under different spectral lights
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Production of biomass and medicinal metabolites through adventitious roots in Ajuga bracteosa under different spectral lights

机译:通过在不同光谱灯下的Ajuga Bracteosa中的不定根生产生物质和药物代谢物

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Ajuga bracteosa an important medicinal herb, is getting endangered worldwide due to destructive harvesting by pharmaceutical industries in its different habitats. It is in dire need for protection and demands conservation and sustainable utilization. In the present study, effects of a-naphthalene acetic acid (NAA) under different spectral lights were estimated on the growth, secondary metabolism and biosynthesis of phenolic acids in adventitious roots (AR) cultures of A. bracteosa. Among the different spectral lights, highest AR induction frequency (88%) and formation of biomass (72 g/L FW and 22 g/L DW) were recorded in explants incubated in the presence of 1.5 mg/L NAA under yellow light. Maximum production of poly phenols (TPC;44.2 mg) and flavonoids (TFC;2.51 mg) were recorded in the AR cultures grown in the presence of blue light. Further, highest total protein content of (401.6 mu g) was detected in the AR in response to normal white light. Blue spectral light induced maximum superoxide dismutase (SOD; 2.5 nM) and peroxidase activity (POD;0.85 nM) respectively, in AR cultures. Compared with other monochromatic lights, red light significantly enhanced the antioxidant potential of the AR cultures. Analysis through High performance liquid chromatography (HPLC-DAD) revealed significant variations in the levels of important phenolic acids such as gallic acid, catechin, rutin, caffeic acid, myricetin and apigenin in the AR samples treated with the lights of different spectra.
机译:Ajuga Bracteosa是一个重要的药草,由于制药行业在其不同栖息地的破坏性收获,在全球范围内濒临灭绝。它是需要保护和需求保护和可持续利用的需求。在本研究中,估计不同光谱灯下的萘乙酸(NAA)的效果估计A.Bracteosa的不定根(AR)培养物中酚酸的生长,次生代谢和生物合成。在不同的光谱灯中,在黄光下在1.5mg / L Naa的存在下孵育的基础植物中,将最高的AR诱导频率(88%)(88%)和形成生物质(72g / L FW和22g / L DW)进行记录。在蓝光存在下生长的Ar培养物中,最大地产生聚苯酚(TPC; 44.2mg)和黄酮类化合物(TFC; 2.51mg)。此外,响应于正常白光在AR中检测到最高总蛋白质含量(401.6μg)。在Ar培养物中,蓝色光谱光引起最大超氧化物歧化酶(SOD; 2.5nm)和过氧化物酶活性(POD; 0.85nm)。与其他单色灯相比,红光显着提高了Ar培养物的抗氧化潜力。通过高效液相色谱(HPLC-DAD)分析揭示了在用不同光谱的灯光处理的AR样品中的重要酚醛酸等重要酚醛酸等重要酚醛酸等水平的显着变化。

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