Optimization of biomass accumulation and production of phenolic compounds in callus cultures of Rhodiola Rosea L. Using design of experiments

Rhodiola rosea L. is a valuable medicinal plant with adaptogenic, neuroprotective, antitumor, cardioprotective, and antidepressant effects. In this study, design of experiments methodology was employed to analyze and optimize the interacting effects of mineral compounds (concentration of NO3- and th...

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Published in:Plants Vol. 11, № 1. P. 124 (1-17)
Other Authors: Erst, Anna A., Petruk, Anastasia A., Erst, Andrey S., Krivenko, Denis A., Filinova, Nadezhda V., Maltseva, Svetlana Yu, Kulikovskiy, Maxim S., Banaev, Evgeny V.
Format: Article
Language:English
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Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:001004096
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245 1 0 |a Optimization of biomass accumulation and production of phenolic compounds in callus cultures of Rhodiola Rosea L. Using design of experiments  |c A. A. Erst, A. A. Petruk, A. S. Erst [et al.] 
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520 3 |a Rhodiola rosea L. is a valuable medicinal plant with adaptogenic, neuroprotective, antitumor, cardioprotective, and antidepressant effects. In this study, design of experiments methodology was employed to analyze and optimize the interacting effects of mineral compounds (concentration of NO3- and the ratio of NH4+ to K+) and two plant growth regulators [total 6-benzylaminopurine (BAP) and alpha-naphthylacetic acid (NAA) concentration and the ratio of BAP to NAA] on the growth and the production of total phenolic compounds (TPCs) in R. rosea calluses. The overall effect of the model was highly significant (p < 0.0001), indicating that NH4+, K+, NO3-, BAP, and NAA significantly affected growth. The best callus growth (703%) and the highest production of TPCs (75.17 mg/g) were achieved at an NH4+/K+ ratio of 0.33 and BAP/NAA of 0.33, provided that the concentration of plant growth regulators was 30 mu M and that of NO3- was <= 40 mM. According to high-performance liquid chromatography analyses of aerial parts (leaves and stems), in vitro seedlings and callus cultures of R. rosea contain no detectable rosarin, rosavin, rosin, and cinnamyl alcohol. This is the first report on the creation of an experiment for the significant improvement of biomass accumulation and TPC production in callus cultures of R. rosea. 
653 |a источник азота 
653 |a регулятор роста растений 
653 |a гистохимия 
653 |a фенольные соединения 
653 |a метилжасмонат 
653 |a высокоэффективная жидкостная хроматография 
653 |a родиола розовая 
653 |a каллусные культуры 
655 4 |a статьи в журналах  |9 890016 
700 1 |a Erst, Anna A.  |9 491900 
700 1 |a Petruk, Anastasia A.  |9 817063 
700 1 |a Erst, Andrey S.  |9 248121 
700 1 |a Krivenko, Denis A.  |9 890017 
700 1 |a Filinova, Nadezhda V.  |9 890018 
700 1 |a Maltseva, Svetlana Yu.  |9 855571 
700 1 |a Kulikovskiy, Maxim S.  |9 855570 
700 1 |a Banaev, Evgeny V.  |9 817067 
773 0 |t Plants  |d 2022  |g Vol. 11, № 1. P. 124 (1-17)  |x 2223-7747 
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