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Adventitious shoot regeneration from stem internode explants of Verbena officinalis L., a medicinal plant

机译:马鞭草(药用植物马鞭草)茎间外植体的不定芽再生

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Verbena officinalis L. (vervain) is a medicinal plant that shows several biological activities, including antimicrobial, antiinflammatory, analgesic, neuroprotective, hypnotic/sedative, gastroprotective, hepatoprotective, anticancer, cicatrizant, and antioxidant. This report describes an efficient plant regeneration system for V. officinalis via adventitious shoot development from stem internode and petiole explants. Stem internode explants were more effective than petiole explants in terms of both the number of shoots per explant and the percentages of explants forming shoots. Increasing benzyladenine (BA) concentrations steadily increased shoot formation up to 13.32 μM, but 22.22 μM BA caused a sharp decrease. The highest number of shoots (17.1 shoots per explant at 100% frequency) was obtained when 13.32 μM BA was combined with 5.71 μM indole-3-acetic acid (IAA). Rooting of the regenerated shoots was readily achieved when multiple shoots were singled out and cultured on medium containing varying concentrations of different auxins [IAA, indole-3-butyric acid (IBA), 2,4-dichlorophenoxyacetic acid (2,4-D), or naphthalene acetic acid (NAA)]. IBA was more effective in terms of the number of roots developed, producing a mean of 7.1 roots per shoot at 4.92 μM, whereas IAA was more effective for the frequency of shoots developing roots: 100% of the shoots rooted at 5.71 μM IAA. More than 90% of the regenerants survived through the hardening off process, when they were transferred to foam cups and kept under growth room conditions for 2 weeks before finally being moved to room conditions at low humidity. Approximately 3 months after the transfer to room conditions, the flowering of the regenerated plants could be observed.
机译:马鞭草(vervain)是一种药用植物,具有多种生物活性,包括抗微生物,抗炎,镇痛,神经保护,催眠/镇静,保护胃,保护肝,抗癌,抗癌药和抗氧化剂。该报告描述了通过茎节间和叶柄外植体不定芽发育的有效的植物更新系统。就每个外植体的芽数和形成芽的外植体百分比而言,茎节间外植体比叶柄外植体更有效。苄基腺嘌呤(BA)浓度的增加稳定地增加了芽的形成,最高达到13.32μM,但是22.22μMBA导致了急剧的下降。当13.32μMBA与5.71μM吲哚-3-乙酸(IAA)结合使用时,可获得最高的芽数(每个外植体17.1个芽,频率为100%)。当将多个芽挑出并在含有不同浓度的不同生长素[IAA,吲哚-3-丁酸(IBA),2,4-二氯苯氧基乙酸(2,4-D)的培养基上培养时,很容易实现再生芽的生根。 ,或萘乙酸(NAA)]。 IBA就发育的根数而言更有效,在4.92μM的水平下,每枝平均产生7.1个根,而IAA对枝条发育的根的频率更有效:100%的枝条在5.71μM处生根。超过90%的再生剂通过硬化过程得以幸存,将它们转移到泡沫杯中并在生长室条件下保持2周,然后再移至低湿度的室温条件下。转移到室温后大约3个月,可以观察到再生植物的开花。

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