Cnidium officinale M. is an important crop that is widely used as a raw material for health functional foods. However, it is experiencing cultivation difficulties due to climate change and abnormally high temperatures. In response to this problem, the characteristics and main causes of the high-temperature damage occurring in C. officinale M. cultivation fields were analyzed. A survey of five farmhouse fields in Jecheon and Bonghwa, major C. officinale M. cultivation areas in Korea in 2018, indicated that about 5% to 37% of the cultivation fields in Jecheon and 5% to 15% of the fields in Bonghwa died from wilting. The high-temperature damage of the C. officinale M. fields is divided into two categories: upper leaves drying due to solar radiation and temperature, and lower leaves dying serially to the radiant heat of the vinyl mulch. Damage caused by radiant heat was typically greater. This is due to the greenhouse effect that occurs in the small space between the black vinyl mulching and the soil. The heat radiated to the surface of the ridge creating an environmental condition that greatly exceeded the atmospheric temperature especially on hot days. As a result, short plants with underground parts, such as C. officinale M., can suffer more high-temperature damage than other plants, so it is considered that it is necessary to develop related technologies such as mulching materials that can reduce pavement temperature in the future.
The purpose of this study was to evaluate the antioxidative activities of jeolpyun containing Cnidium officinale M extract (2%, 4%, 6%, 8%) by total polyphenol contents, electron donating ability on 2,2-diphenyl-1-picrylhydrazyl (DPPH), scavenging ability of superoxide anion radical and decomposing ability of hydrogen peroxide. In chromaticity analysis, the brightness significantly decreased with increasing Cnidium officinale M extract content. Jeolpyun containing 8% Cnidium officinale M extract revealing the highest value for the redness and the yellowness, 1.07, 12.70, respectively. The total polyphenol contents of jeolpyun containing 8% Cnidium officinale M extract were the highest content of 4,213 μg gallic acid equivalent (GAE)/mL. The total polyphenol contents revealed significant difference (p<0.05). Jeolpyun containing 8% Cnidium officinale M extract revealing the highest electron donating ability (83.55%). The electron donating abilities were significantly related at p<0.05. The scavenging abilities of superoxide anion radical for jeolpyun containing 4% Cnidium officinale M extract revealed the highest ability (0.01676). There was no significant difference. The hydrogen peroxide decomposing ability for jeolpyun containing 8% Cnidium officinale M extract revealed the most hydrogen peroxide decomposing ability (-0.193) and the hydrogen peroxide decomposing ability revealed a significant difference (p<0.05).
Currently, the storage temperature of the production factory of medicinal herbs (hGMP) is about 5~ 12℃. This temperature is possible to suppress pest but can not kill the pests. For this reason, we need to lower the temperature during lethal time because the pest has often occurred inside the packaging of medicinal herbs in the distribution process in summer. In order to solve this problem, we have investigated the lethal time of the storage insect(Tribolium castaneum Herbst) After we froze medicinal herbs(Cnidium officinale Makino and Angelica gigas N. ) at approx. –70℃ and –15℃ respectively. We then investigated the change of bioactive components and exterior characteristics of medicinal herbs in order to determine whether there is a change of quality. The results were as follows. The lethal time of Tribolium castaneum Herbst is about 2 minutes if processed at approx. –70℃, while the other time is about 16 minutes at approx. –15℃. We investigated the change of quality after the treatment of the two medicinal herbs in the similar way but could not confirm the difference of color and brightness and the bioactive components on statistics. Through this research, it has been verified that the process of quick freezing for pest control can not affect the main quality of the medicinal herbs. Therefore this technology can be introduced in the manufacturing process of medicinal herbs through additional research.
Background : Cnidium officinale M. is a medicinal plant used a lot of herbal and functional food ingredients. Recently, the area of cultivation has been increased due to the increase in domestic demand. By the way, this plant is very vulnerable to high temperature, and recently it is difficult to cultivate due to abnormal high temperature and so on. Therefore, in this study, in order to effectively reduce the high temperature of the field, we investigated the degree of temperature reduction and the growth condition of the plant after installed mulching, irrigation and the fog facilities.
Methods and Results : In order to reduce the temperature of C. officinale M. cultivation field, the black and white double vinyl mulching, drip irrigation and fog spray treatment were applied and the results were as follows. The survey was conducted at about 2:00 pm on a clear day in August, and the temperature was about 33℃ at the time of measurement. In the case of only black vinyl mulching without watering, the soil temperature was 43.5℃, the surface temperature was 61.4℃, and the mortality rate of the C. officinale M. was 98.0%. The temperature of soil and surface were lowered to 33.1℃ and 38.6℃, respectively, when treated with black vinyl mulching and drip irrigation and fog spraying. In the case of black and white double vinyl mulching, the effect of temperature reduction was better. The soil surface temperature of the non-irrigation treatment was 37.9℃, the surface temperature was 48.5℃ and the mortality rate was decreased to 6.7%. In case of combined drip irrigation and fog spraying, soil temperature was reduced to 31.5℃, surface temperature was 35.8℃, and mortality rate was 0%.
Conclusion : As a result of this study, the temperature of soil and surface dropped by up to 12. 0℃ and 25.6℃, respectively, when combined with black and white double vinyl mulching and drip irrigation and fog spray treatment. The mortality rate declined from 89.0% to 0%. Therefore, Therefore, if the results of this study are applied to the cultivation of C. officinale M., it is expected that the production stability will be improved.