Effect of low temperature cultivation on the phytochemical profile and bioactivity of arctic plants: A case of Dracocephalum palmatum : научное издание

Описание

Тип публикации: статья из журнала

Год издания: 2017

Идентификатор DOI: 10.3390/ijms18122579

Ключевые слова: Antioxidant activity, Carbohydrates, Dracocephalum palmatum, Essential oil, Fatty acids, Gas chromatography-mass spectrometry (GC-MS), High performance liquid chromatography with diode array detection and electrospray ionization mass-spectrometric detection (HPLC-DAD-ESI-MS), Low-temperature cultivation, Phenolic compoundschlorophyll a, 479-61-8, chlorophyll b, 519-62-0, linoleic acid, 1509-85-9, 2197-37-7, 60-33-3, 822-17-3, linolenic acid, 1955-33-5, 463-40-1, oleic acid, 112-80-1, 115-06-0, palmitic acid, 57-10-3

Аннотация: The influence of climatic factors, e.g., low temperature, on the phytochemical composition and bioactivity of the arctic plant Dracocephalum palmatum Steph. ax Willd. (palmate dragonhead), a traditional food and medical herb of Northern Siberia, was investigated. D. palmatum seedlings were grown in a greenhouse experiment at normalПоказать полностью(20 °C, NT) and low (1 °C, LT) temperature levels and five groups of components that were lipophilic and hydrophilic in nature were characterized. The analyses indicated that D. palmatum under NT demonstrates high content of photosynthetic pigments, specific fatty acid (FA) profile with domination of saturated FA (53.3%) and the essential oil with trans-pinocamphone as a main component (37.9%). Phenolic compounds were identified using a combination of high performance liquid chromatography with diode array detection and electrospray ionization mass-spectrometric detection (HPLC-DAD-ESI-MS) techniques, as well as free carbohydrates and water soluble polysaccharides. For the first time, it was established that the cold acclimation of D. palmatum seedlings resulted in various changes in physiological and biochemical parameters such as membrane permeability, photosynthetic potential, membrane fluidity, leaf surface secretory function, reactive oxygen species–antioxidant balance, osmoregulator content and cell wall polymers. In brief, results showed that the adaptive strategy of D. palmatum under LT was realized on the accumulation of membrane or surface components with more fluid properties (unsaturated FA and essential oils), antioxidants (phenolic compounds and enzymes), osmoprotectants (free sugars) and cell wall components (polysaccharides). In addition, the occurrence of unusual flavonoids including two new isomeric malonyl esters of eriodictyol-7-O-glucoside was found in LT samples. Data thus obtained allow improving our understanding of ecophysiological mechanisms of cold adaptation of arctic plants. © 2017 by the authors. Licensee MDPI, Basel, Switzerland.

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Издание

Журнал: International Journal of Molecular Sciences

Выпуск журнала: Vol. 18, Is. 12

Номера страниц: 2579

ISSN журнала: 16616596

Издатель: MDPI AG

Персоны

  • Olennikov D.N. (Institute of General and Experimental Biology, Siberian Division, Russian Academy of Science, Sakh’yanovoy Street 6, Ulan-Ude, Russian Federation, Department of Biochemistry and Biotechnology, North-Eastern Federal University, 58 Belinsky Street, Yakutsk, Russian Federation)
  • Chirikova N.K. (Department of Biochemistry and Biotechnology, North-Eastern Federal University, 58 Belinsky Street, Yakutsk, Russian Federation)
  • Kashchenko N.I. (Institute of General and Experimental Biology, Siberian Division, Russian Academy of Science, Sakh’yanovoy Street 6, Ulan-Ude, Russian Federation)
  • Gornostai T.G. (Siberian Institute of Plant Physiology and Biochemistry, Siberian Division, Russian Academy of Science, Lermontova Street 132, Irkutsk, Russian Federation)
  • Selyutina I.Y. (Central Siberian Botanical Garden, Siberian Division, Russian Academy of Science, Zolotodolinskaya Street 1, Novosibirsk, Russian Federation)
  • Zilfikarov I.N. (All-Russian Institute of Medical and Aromatic Plants, Greena Street 7/1, Moscow, Russian Federation)

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