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Comparison of Phytochemical and Antioxidant Activities in Micropropagated and Seed-derived Salvia miltiorrhiza Plants

机译:微丙碎土植物和种子衍生丹参植物中植物化学和抗氧化活性的比较

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摘要

Salvia miltiorrhiza (commonly known in China as Danshen) is widely used in traditional Chinese medicine, and it is applied in the treatment of many diseases, particularly cardiovascular disease. Commercial propagation of Danshen is carried out either through seed germination or in vitro regeneration (micropropagation). However, it is not clear if the different propagation methods affect the chemical properties of the derived plants. In the present study, we first established a highly efficient tissue culture system for Danshen propagation. The addition of 1.0 mg.L-1 6-benzyladenine (BA) and 0.1 mg.L-1 alpha-naphthalene acetic acid (NAA) to Murashige and Skoog (MS) medium was optimal for inducing adventitious shoots; the highest rate of rooting was recorded on MS medium with 0.2 mg.L-1 NAA, on which the survival rate of transplanted plantlets was 95%. Next, we assessed antioxidant properties in the different tissues of plants of the same age, derived from micropropagation or seed germination, and measured tanshinone, total phenol, and total flavonoid contents. Our results showed that tissues of micropropagated plantlets had higher antioxidant activities than tissues of seed-derived plantlets; the micropropagated plantlets also had higher tanshinone contents in their roots. Thus, a rapid and efficient micropropagation system was established for Danshen, and it can be used for cultivating this plant to obtain therapeutic compounds.
机译:Salvia Miltiorrhiza(作为Danshen的俗称)广泛用于中药,它适用于治疗许多疾病,特别是心血管疾病。 Danshen的商业繁殖是通过种子萌发或体外再生(微扑静)进行的。然而,如果不同的传播方法影响衍生植物的化学性质,则不清楚。在本研究中,我们首先为Danshen繁殖建立了一种高效的组织培养系统。添加1.0mg.L-1 6-苄基腺嘌呤(BA)和0.1mg.L-1α-萘乙酸(NAA),对Murashige和Skoog(MS)培养基是诱导不定枝条的最佳选择;在具有0.2mg.L-1 NAA的MS培养基上记录最高生根率,移植植株的存活率为95%。接下来,我们评估来自相同年龄的植物的不同组织中的抗氧化性质,得到源自微扑静脉或种子萌发,并测量丹参酮,总苯酚和总类黄酮含量。我们的研究结果表明,微扑发的植物组织具有比种子衍生的植物组织更高的抗氧化活性;微扑发的植物在根系中也有更高的丹参酮含量。因此,为丹参建立了快速高效的微鼠系统,可用于培养该植物以获得治疗化合物。

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