scholarly journals The Evaluation of Drought Resistance of Hippophae rhamnoides l. in the Right-Bank of Forest-Steppe of Ukraine

2017 ◽  
Vol 27 (1) ◽  
pp. 57-60
Author(s):  
I.I. Mykolaiko
2018 ◽  
Vol 11 ◽  
pp. 00051
Author(s):  
Anna Zemtsova ◽  
Yury Zubarev

Estimation of tocopherol isomers composition in seed oil of seabuckthorn (H. rhamnoides ssp. mongolica) varieties is represented. It has been established that α-tocopherol is the dominant tocopherol in the lipids of the seabuckthorn seeds, the mean content of which for two years has been ranged from 2.1 (Dar Katuni) to 4.8 mg/100 g (Yantarnaya). In general within the evaluated group of subspecies, the mean content of α- tocopherol was determined at 3.5±0.3 mg/100 g. β-, γ- and δ-tocopherols were characterized by low content, accumulating an average for two years at 0.5±0.1, 1.3±0.1 and 0.7±0.3 mg/100 g, respectively.


Author(s):  
О. М. Бедарева ◽  
В. Г. Сильвандер ◽  
Любовь Семёновна Мурачёва ◽  
А. В. Матюха

В статье рассмотрены наиболее крупные площади популяций облепихи (Hippophae rhamnoides L.) на территории районов Калининградской области. Отмечена уникальность облепиховых фитоценозов для региона. Рекомендованы природоохранные мероприятия, направленные на сохранение вида.


Plants ◽  
2021 ◽  
Vol 10 (5) ◽  
pp. 847
Author(s):  
Anita Zapałowska ◽  
Natalia Matłok ◽  
Miłosz Zardzewiały ◽  
Tomasz Piechowiak ◽  
Maciej Balawejder

The aim of this research was to show the effect of the ozonation process on the quality of sea buckthorn (Hippophae rhamnoides L.). The quality of the ozonated berries of sea buckthorn was assessed. Prior to and after the ozone treatment, a number of parameters, including the mechanical properties, moisture content, microbial load, content of bioactive compounds, and composition of volatile compounds, were determined. The influence of the ozonation process on the composition of volatile compounds and mechanical properties was demonstrated. The ozonation had negligible impact on the weight and moisture of the samples immediately following the treatment. Significant differences in water content were recorded after 7 days of storage. It was shown that the highest dose of ozone (concentration and process time) amounting to 100 ppm for 30 min significantly reduced the water loss. The microbiological analyses showed the effect of ozone on the total count of aerobic bacteria, yeast, and mold. The applied process conditions resulted in the reduction of the number of aerobic bacteria colonies by 3 log cfu g−1 compared to the control (non-ozonated) sample, whereas the number of yeast and mold colonies decreased by 1 log cfu g−1 after the application of 100 ppm ozone gas for 30 min. As a consequence, ozone treatment enhanced the plant quality and extended plant’s storage life.


2018 ◽  
Vol 66 (3) ◽  
pp. 613-620 ◽  
Author(s):  
Jussi Suvanto ◽  
Petri Tähtinen ◽  
Saku Valkamaa ◽  
Marica T. Engström ◽  
Maarit Karonen ◽  
...  

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