Antioxidant content and growth at the initial ontogenesis stages of Passiflora incarnata plants under the influence of biostimulant Albit
- Autores: Gins M.S.1,2, Gins V.K.1, Baikov A.A.1, Kononkov P.F.1, Pivovarov V.F.1, Sidelnikov N.I.3, Rabinovich A.M.3, Zagumennikova T.N.3, Kotsubinskiy A.V.3, Zlotnikov A.K.4, Zlotnikov K.M.4, Goncharova O.I.5
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Afiliações:
- All-Russia Research Institute of Selection and Seed Growing of Vegetable Crops
- Peoples’ Friendship University of Russia
- All-Russia Research Institute of Medicinal and Aromatic Plants
- Skryabin Institute of Biochemistry and Physiology of Microorganisms
- Order of the Red Banner of Labor Nikitsky Botanical Garden, National Science Center
- Edição: Volume 43, Nº 5 (2017)
- Páginas: 384-389
- Seção: Crop Production
- URL: https://bakhtiniada.ru/1068-3674/article/view/230128
- DOI: https://doi.org/10.3103/S1068367417050068
- ID: 230128
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Resumo
The aim of this study was to determine the accumulation of antioxidants at аn early stage of development of organs of P. incarnata L. plants grown in greenhouses (medicinal aromatic plants were used for comparison), as well as to evaluate the effect of biostimulant Albit. The use of amperometric and biochemical methods made it possible to measure and evaluate the total antioxidant content in aqueous extracts of leaves of aromatic plants with sedative effects compared to aqueous extracts of P. incarnata L. leaves. The latter are characterized by a lower level of antioxidant accumulation. Seed treatment with biostimulant Albit and foliar treatment of aerial parts of the P. incarnata L. plant increased the total antioxidant content and the content of carotenoids, chlorophylls a and b, and the yield of aerial parts of the plant by 10–15%. The findings suggest that the P. incarnata L. plants grown in greenhouses can be used to create antioxidant herbal remedies.
Sobre autores
M. Gins
All-Russia Research Institute of Selection and Seed Growing of Vegetable Crops; Peoples’ Friendship University of Russia
Autor responsável pela correspondência
Email: anirr@bk.ru
Rússia, Moscow oblast, 143072; Moscow, 117198
V. Gins
All-Russia Research Institute of Selection and Seed Growing of Vegetable Crops
Email: anirr@bk.ru
Rússia, Moscow oblast, 143072
A. Baikov
All-Russia Research Institute of Selection and Seed Growing of Vegetable Crops
Email: anirr@bk.ru
Rússia, Moscow oblast, 143072
P. Kononkov
All-Russia Research Institute of Selection and Seed Growing of Vegetable Crops
Email: anirr@bk.ru
Rússia, Moscow oblast, 143072
V. Pivovarov
All-Russia Research Institute of Selection and Seed Growing of Vegetable Crops
Email: anirr@bk.ru
Rússia, Moscow oblast, 143072
N. Sidelnikov
All-Russia Research Institute of Medicinal and Aromatic Plants
Email: anirr@bk.ru
Rússia, Moscow, 117216
A. Rabinovich
All-Russia Research Institute of Medicinal and Aromatic Plants
Email: anirr@bk.ru
Rússia, Moscow, 117216
T. Zagumennikova
All-Russia Research Institute of Medicinal and Aromatic Plants
Email: anirr@bk.ru
Rússia, Moscow, 117216
A. Kotsubinskiy
All-Russia Research Institute of Medicinal and Aromatic Plants
Email: anirr@bk.ru
Rússia, Moscow, 117216
A. Zlotnikov
Skryabin Institute of Biochemistry and Physiology of Microorganisms
Email: anirr@bk.ru
Rússia, Moscow oblast, 142290
K. Zlotnikov
Skryabin Institute of Biochemistry and Physiology of Microorganisms
Email: anirr@bk.ru
Rússia, Moscow oblast, 142290
O. Goncharova
Order of the Red Banner of Labor Nikitsky Botanical Garden, National Science Center
Email: anirr@bk.ru
Rússia, Yalta, Republic of Crimea, 298648
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