저온기 엽채류 생산시 저온, 저광 등으로 인해 생육 저하 및 수량 감소가 발생한다. 저온기 근권부 가온을 통해 지상부 저 온 스트레스를 경감하고 생육 및 수량을 개선할 수 있다. 최근 루꼴라, 고수, 바질, 공심채 등 향신채소의 국내 수요가 증가하 면서, 연중 생산의 필요성이 증가하고 있다. 본 연구에서는 양 액 가온을 통한 근권부 온도 제어 효과와 지상부 생육 및 수량 에 미치는 영향을 구명하고자 수행하였다. 저온기 경남 함안 에 위치한 유리 온실에서 실험을 실시하였으며, 루꼴라, 고수, 바질, 공심채를 분무경베드에 정식하여 무처리 대조구와 양 액 가온 설정온도별 처리구(NSH20, NSH25, NSH30)를 설 정하였다. 양액 조성은 PBG 엽채류 조성을 따랐으며 재배기 간 동안 폐기 없이 표준 양액(EC 1.8, pH 5.5)으로 보충하여 사용하였다. 양액의 특성 및 이온 농도는 약 3일 간격으로 분 석하였으며, 작물의 생육 및 수확 조사는 각각 정식후 2주와 4 주차에 수행하였다. 재배 기간 동안 온실 내부의 일일 최저, 평균, 최고 온도는 각각 13.75℃, 18.66℃, 30.08℃였으며, 재 배 기간 중 온실 내 최저 온도는 9.97℃였다. 대조구의 근권부 온도는 최저 13.35℃, 평균 17.17℃로 근권부 저온으로 인한 뿌리 생육 저하, 지상부 생육 감소를 유발할 수 있다. 설정 온 도별 가온 양액을 공급한 경우 근권부 평균 온도는 NSH30는 24.61℃, NSH25는 21.41℃, NSH20는 18.62℃였다. 호냉 성 작목인 루꼴라와 고수는 근권부 온도에 따른 생육 및 수량 변화가 확인되지 않았다. 반면 호온성 작목인 바질과 공심채 는 양액 가온을 통한 근권부 온도 제어시 생육 및 수량 개선이 확인되었다. 바질은 NSH25와 NSH30 처리구에서 유사한 생 육 및 수량 개선 효과가 확인되었으며, 에너지 효율성을 고려 했을 때 양액 가온 온도를 25℃로 설정하는 것이 더 경제적인 근권부 온도 관리 방안이 될 것으로 생각된다. 반면 공심채는 NSH30에서 수량이 대조구 대비 107%, NSH25 대비 60% 증 가한 것으로 보아 양액 가온 설정 온도를 높게 유지하는 것이 적합할 것으로 생각된다.
This study investigated the anti-obesity effects of Coriandrum sativum L. ethanol extracts in a high fat diet-induced obesity model (DIO). We confirmed the anti-obesity effects by analysing the expression of the related proteins, weight gain, dietary intake, dietary efficiency, blood biochemistry, histological analysis and western blot analysis. After oral administration of Coriandrum sativum L. ethanol extracts at concentrations of 250 and 500 mg/kg, a significant improvement in dietary efficiency, reduction in weight gain, triglycerides, total cholesterol and LDL-cholesterol in blood lipid was observed for 8 weeks. In addition, improvement in blood glucose and metabolism confirmed through glucose tolerance test was observed. Further, the concentration of alanine transaminase (ALT) in blood was significantly decreased, which improved the fatty liver caused by high-fat diet intake as confirmed by liver tissue analysis. This phenomenon was confirmed to decrease the expression of fat accumulation-related PPARγ and FAS protein in the liver tissue. Especially, it is believed that FAS, a liposynthetic enzyme, has a stronger inhibitory effect than PPARγ. Therefore, Coriandrum sativum L. ethanol extract is thought to improve obesity by reducing blood lipids levels, improving glucose metabolism and inhibiting synthesis of the fat that accumulates in the liver in high-fat diet-induced obesity animal models.
Coriandrum sativum L., an annual herbaceous plant of Apiaceae family. The present study evaluated the anti-oxidant activities and anti-inflammatory effects of ethanol extracts of C. sativum. The anti-oxidant activities of C. sativum were measured by total contents of polyphenol, flavonoid, DPPH and ABTS radical scavenging and reducing power activity. And anti-inflammatory effects of C. sativum were measured by LPS-induced RAW 264.7 cells. The results showed that the contents of total polyphenol and flavonoid were 76.03 ± 1.36 mg of gallic acid equivalents/g and 182.23 ± 4.32 mg of rutin equivalents/g at concentration 1 mg/ mL of C. sativum. The DPPH radical scavenging activity was found to be 52.8% at 500 μg/mL. The ABTS radical scavenging activity was shown in 58.3% after exposure to 1,000 μg/mL. Reducing power activity was found to be 66.8% at 2,000 μg/mL. The inhibitory effect of NO production was found to be 65% concentration 500 μg/mL. In the generation quantity of inflammatory cytokines such as TNF-α and IL-1β in cell culture medium, the expression levels of inflammatory proteins in cells were showed decrease with the increase of concentration. Therefore, we suggest that the C. sativum should be a potential source of alternative anti-inflammatory drug with good anti-inflammatory effects.
This study was conducted to obtain the basic data related to seed characteristics and germination conditions of the Coriandrum sativum L. at different storage condition and temperature. The shape of fruit was oval with light brown color. Fruit was mericarp, biloculate, with one ovule in each locus. The length and width of seed were 1.37 ± 0.067㎜ and 0.52 ± 0.039㎜, respectively. Weight of 1,000 seeds was 6.55 ± 0.15 g. Seeds which were stored at room (15℃) and cold temperature (4℃) in vinyl container showed the highest germination rate (93.3%) under the room temperature germination condition. Percentage of germination in cold and freeze temperature was 20% and 0%, respectively. Germination rate of room storage seeds with paper container increased to about 91.3%, however, decreased in cold (4℃) and freeze storage (−20℃) with paper container (76.7% and 78.0%, respectively). Germination rate of seed in vinyl stock container was better than that of paper stock container. Germination rate of seeds stored at room temperature for 4 years (2010 - 2013) ranged from 80.0% to 91.3%. Therefore, coriander seeds are expected to be stored at room temperature for increasing the germination rate and keeping a long term.