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An efficient plant regeneration system with in vitro flavonoid accumulation for Hylotelephium tatarinowii (Maxim.) H. Ohba

机译:一种高效的植物再生系统,具有体外类黄酮累积量,可用于塔氏梭菌(H. Ohba)

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摘要

An efficient micropropagation system for Hylotelephium tatarinowii (Maxim.) H. Ohba, a rare medicinal plant, has been developed. Callus induced from leaf explants placed onto Murashige and Skoog (MS) medium with supplementation of plant growth regulators. When the concentration of 2,4-dicholorophenoxy acetic acid was as high as 2.0 mg l−1 in combination with 0.5 mg l−1 6-benzylaminopurine (6-BAP), the callus induction rate reached 92.1%. Adventitious shoots were observed on callus exposed to 1.0 mg l−1 6-BAP, with 81.5% frequency of shoot regeneration after 30 d. Flower buds appeared after subculture. Regenerated shoots could flower normally in vitro. Up to 100% of the regenerated shoots formed complete plantlets on half-strength MS medium without any growth regulator, with an average of 5.9 roots per shoot explant. Quantitative analysis of flavonoids and rutin showed that the phytochemical profile of callus and regenerated plants was similar to that of wild plants.
机译:已经开发了一种有效的微繁殖系统,用于稀有药用植物他氏梭菌(Hylotelephium tatarinowii)。从植于Murashige和Skoog(MS)培养基上的叶片外植体诱导的愈伤组织,并补充了植物生长调节剂。当2,4-二氯苯氧乙酸的浓度高达2.0 mg lss-1时与0.5 mg ls-1 6-6-氨基氨基嘌呤(6-BAP)结合使用时,愈伤组织诱导率达到92.1%。暴露于1.0 mg l -1 6-BAP的愈伤组织上观察到不定芽,30 d后芽再生频率为81.5%。继代培养后出现花蕾。再生的芽可以在体外正常开花。高达100%的再生芽在没有任何生长调节剂的半强度MS培养基上形成完整的幼苗,每个芽外植体平均有5.9根。黄酮和芦丁的定量分析表明,愈伤组织和再生植物的植物化学特征与野生植物相似。

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