Biologically active compounds of species, hybrids, and cultivars of peony introduced in the M. M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine

N. Dzhurenko, O. Palamarchuk, T. Shcherbakova, V. Gorobets, V. I. Todorova
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Abstract

Purpose. To reveal the raw material potential of the representatives of the genus Paeonia L. introduced in the M. M. Gryshko National Botanical Garden of the National Academy of Sciences of Ukraine (NBG) in terms of the content of biologically active compounds. Methods. Introduced plants of the genus Paeonia: P. lactiflora Pall., P. officinalis L. and its hybrid forms: P. officinalis ‘Rubra Plena’, F1 (P. officinalis ‘Rub­ra Plena’ ´ P. peregrina Mill.), cultivar NBG ‘Kvazimodo’ (P. lactiflora ‘M-lle Jeanne Riviere’ ´ F1 [P. officinalis ‘Rubra Plena’ ´ P. peregrina)], P. anomala L. were the object of the research. The content of polyphenolic compounds, homopolysaccharides, ascorbic acid and other substances was determined by spectrophotometry, titrimetry and colorimetry. The analysis of biologically active compounds was carried out by the method of high performance liquid chromatography (HPLC). Results. Species and varietal differences in the amount of polyphenols in plants of various species and forms were determined. It was found that the roots of the studied F1 plants (P. officinalis ‘Rubra Plena’ ´ P. peregrina), cultivar NBG ‘Kvazimodo’, P. lactiflora contain a much higher amount of polysaccharides compared to the roots of P. anomala. In peony plants, the average share of vitamin C is 37.65% and varies among representatives of the genus in the range from 22.10 ± 2.18 [F1 (P. officinalis ‘Rubra Plena’ ´ P. peregrina)] to 47.60 ± 3.69 (P. anomala) and 49.30 ± 5.50% (P. lactiflora). The maximum content of carotenoids was found in the roots of P. officinalis ‘Rubra Plena’ (2.10 ± 0.21 mg%) and F1 (P. officinalis ‘Rubra Plena’ ´ P. peregrina) (2.20 ± 0.13 mg%). A significant amount of free gallic acid was observed in the roots of P. anomala, and halotannins in P. lactiflora. Conclusions. The results of phytochemical studies of plants of species, hybrids and cultivars of the genus Paeonia introduced in the  M. Gryshko National Botanical Garden of the NAS of Ukraine showed that they accumulate a significant level of basic biologically active compounds: flavonoids, tannins, mono- and polysaccharides, pigments roots of P. lactiflora and P. officinalis are promising in terms of the complex of active ingredients, since they contain them in greater quantities than those of P. anomala. Hybrid forms of P. officinalis ‘Rubra Plena’, F1 (P. officinalis ‘Rubra Plena’ ´ P. peregrina), cultivar ‘Kvazimodo’, created on the basis of these species, are not inferior to the parent species in terms of the content of phenolic compounds, sugars, pigments and ascorbic acid. In the roots, the share of peoniflorin is for P. lactiflora (1.95%),  anomala (1.09%), P. officinalis ‘Rubra Plena’ (0.95%), P. officinalis (0.78%). The studied species, hybrids and cultivars are offered for cultivation in the purpose of harvesting medicinal raw materials as a source of biologically active compounds with the possibility of supplementing or even repla­cing the official species of anomalous peony (P. anomala).
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乌克兰国家科学院格里什科国家植物园引进的牡丹品种、杂交种和栽培品种的生物活性化合物
意图揭示乌克兰国家科学院(NBG)格里什科国家植物园引进的芍药属代表植物在生物活性化合物含量方面的原料潜力。方法。介绍了芍药属植物:P.lactiflora Pall。,P.officinalis L.及其杂交种:P.officials‘Rubra Plena’、F1(P.officiinas‘Rub­ra Plena‘´P.peregrina Mill.)、栽培品种NBG‘Kvazimodo’(P.lactiflora‘M-lle Jeanne Riviere’´F1[P.P.officiinals‘Rubra Plena’´P.peregrina)]、P.anomala L.是研究对象。采用分光光度法、滴定法和比色法测定了多酚类化合物、同多糖、抗坏血酸等物质的含量。采用高效液相色谱法对生物活性化合物进行了分析。后果测定了不同种类和形态植物中多酚含量的种类和品种差异。研究发现,所研究的F1植物(P.officinalis‘Rubra Plena’´P.peregrina)、栽培品种NBG‘Kvazimodo’、乳双歧杆菌的根含有比异头乳双歧杆菌根高得多的多糖。在牡丹属植物中,维生素C的平均含量为37.65%,在22.10±2.18[F1(P.officinalis‘Rubra Plena’´P.peregrina)]至47.60±3.69(P.anomala)和49.30±5.50%(P.lactiflora)之间变化。类胡萝卜素含量最高的是P.officinalis‘Rubra Plena’(2.10±0.21 mg%)和P.officials‘Rubra Plena’´P.peregrina(2.20±0.13 mg%)。在P.anomala的根中观察到大量的游离没食子酸,在P.lactiflora中观察到卤单宁。结论。介绍了牡丹属植物引种的品种、杂交种和栽培品种的植物化学研究结果。乌克兰国家植物园的Gryshko国家植物园表明,它们积累了大量的基本生物活性化合物:黄酮类化合物、单宁、单糖和多糖、色素。就活性成分的复合物而言,乳双歧杆菌和厚朴的根是有希望的,因为它们比异头乳双歧杆菌含有更多的活性成分。在这些物种的基础上形成的P.officinalis‘Rubra Plena’、F1(P.officials‘Rubra Plena’´P.peregrina)和栽培品种‘Kvazimodo’的杂交形式,在酚类化合物、糖、色素和抗坏血酸的含量方面并不劣于亲本。在根中,芍药苷的份额为乳双歧杆菌(1.95%)、anomala(1.09%)、巴戟天‘Rubra Plena’(0.95%)和巴戟天(0.78%),提供杂交种和栽培品种进行栽培,以收获作为生物活性化合物来源的药用原料,并有可能补充甚至重新命名异常牡丹(P.anomala)的官方物种。
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