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Influence of plant growth regulators on shoot proliferation and secondary metabolite production in micropropagated Huernia hystrix

机译:植物生长调节剂对微繁殖藻的生长和增殖的影响

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Although the effectiveness of topolins in plant tissue culture systems has recently been highlighted, there is a dearth of information on their interactions with auxins in relation to shoot organogenesis and secondary metabolite production. The current study evaluated the role of topolins singly or in combination with an auxin in comparison to 6-benzyladenine (BA) on shoot proliferation and secondary metabolite production of Huernia hystrix, a medicinal and ornamental stem-succulent of the endemic flora of southern Africa. Meta-topolin (mT) was more effective in improving shoot proliferation and phenolic production compared to BA. In general, the exogenous addition of α-naphthalene acetic acid (NAA) significantly increased shoot proliferation. The highest number of regenerated shoots (12.2 ± 0.98 shoots per explant) was recorded with medium containing 20 μM mT supplemented with 10 μM NAA and was three-times higher when compared to the treatments with cytokinin only. This suggests a synergistic interaction of auxin with cytokinin. On the other hand, supplementation with low NAA concentrations resulted in reduced in vitro flavonoid production in most cases, when compared to treatments with cytokinin only. Moreover, differences in cytokinin concentrations (even when used in combination with NAA equimolar concentrations) significantly affected secondary metabolite production in some cases. The current findings highlighted the differential effects of auxin-cytokinin interactions on shoot proliferation and the production of secondary metabolites in H. hystrix.
机译:尽管最近已强调了Topolin在植物组织培养系统中的有效性,但缺乏有关其与生长素相互作用的有关芽器官发生和次生代谢产物的信息。当前的研究评估了与6-苄基腺嘌呤(BA)相比,拓扑林单独或与生长素结合对南方非洲地方病菌药用和观赏性多肉Huernia hystrix的芽增殖和次生代谢产物产生的作用。与BA相比,间位拓扑蛋白(mT)在改善芽增殖和酚类生产方面更有效。通常,外源添加α-萘乙酸(NAA)会显着增加芽的增殖。含有20μmmT并添加10μMNAA的培养基记录了再生芽的最高数量(每个外植体为12.2±0.98个芽),与仅使用细胞分裂素的处理相比,再生芽的数量高三倍。这表明生长素与细胞分裂素的协同相互作用。另一方面,与仅用细胞分裂素治疗相比,在大多数情况下,低NAA浓度的补充导致体外类黄酮生成减少。此外,在某些情况下,细胞分裂素浓度的差异(即使与NAA等摩尔浓度组合使用)也显着影响次生代谢产物的产生。目前的发现突出了生长素-细胞分裂素相互作用对H. hystrix中芽增殖和次级代谢产物产生的不同影响。

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