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Kim, Don-Kyu,Gang, Gil-Tae,Ryu, Dongryeol,Koh, Minseob,Kim, Yo-Na,Kim, Su Sung,Park, Jinyoung,Kim, Yong-Hoon,Sim, Taebo,Lee, In-Kyu,Choi, Cheol Soo,Park, Seung Bum,Lee, Chul-Ho,Koo, Seung-Hoi,Choi, Hu American Diabetes Association 2013 Diabetes Vol.62 No.9
<P>Type 2 diabetes mellitus (T2DM) is a progressive metabolic disorder with diverse pathological manifestations and is often associated with abnormal regulation of hepatic glucose production. Many nuclear receptors known to control the hepatic gluconeogenic program are potential targets for the treatment of T2DM and its complications. Nevertheless, the therapeutic potential of the estrogen-related receptor γ (ERRγ) in T2DM remains unknown. In this study, we show that the nuclear receptor ERRγ is a major contributor to hyperglycemia under diabetic conditions by controlling hepatic glucose production. Hepatic ERRγ expression induced by fasting and diabetic conditions resulted in elevated levels of gluconeogenic gene expression and blood glucose in wild-type mice. Conversely, ablation of hepatic ERRγ gene expression reduced the expression of gluconeogenic genes and normalized blood glucose levels in mouse models of T2DM: <I>db</I>/<I>db</I> and diet-induced obesity (DIO) mice. In addition, a hyperinsulinemic-euglycemic clamp study and long-term studies of the antidiabetic effects of GSK5182, the ERRγ-specific inverse agonist, in <I>db</I>/<I>db</I> and DIO mice demonstrated that GSK5182 normalizes hyperglycemia mainly through inhibition of hepatic glucose production. Our findings suggest that the ability of GSK5182 to control hepatic glucose production can be used as a novel therapeutic approach for the treatment of T2DM.</P>
김성은(Sung Eun Kim),이상돈(Sang Don Lee),심상연(Sang Youn Sim),김영식(Young Shik Kim) (사)한국생물환경조절학회 2012 생물환경조절학회지 Vol.21 No.2
토마토 시설재배에서 고온기에 온습도를 조절할 목적으로 사용되는 이류체 포그시스템이 가루이 방제에 미치는 효과를 알아보고, 이를 활용한 효과적이고 친환경적인 가루이 예방 및 방제 방법을 모색하기 위해 총 2회에 걸쳐 실험을 수행하였다. 1차실험에서는 포그처리의 가루이 방제 효과를 구명하였고, 구역별가루이 분포를 조사하였다. 2차실험에서는 이류체 포그시스템이가루이의 수직분포와 운동성에 미치는 영향 및 방제효과를 검증하는 실험을 수행하였다. 1, 2차 실험에서 이류체포그시스템이 가루이의 개체수와 운동성을 감소시키는 효과가 인정되었다. 시설 내에서 가루이는 출구에서 먼쪽의 구역에 높은 밀도로 분포하며, 이류체 포그시스템을 작동하였을 때 가루이의 수직분포가 달라지는 것이 조사되었다. 따라서 이류체 포그시스템을 가루이의 예방및방제에 사용하되, 밀도가 높은 구역의 기주식물 중상부에 황색점착트랩을 설치하여 가루이를 더욱 효과적으로 방제할 수 있을 것으로 사료된다. Two experiments were designed and executed to measure the effectiveness of the two-fluid fogging system in controlling whiteflies in tomato cultivation. The two-fluid fogging system that lowers temperature and raises humidity in greenhouses provides an eco-friendly method of preventing damages from whiteflies. The first experiment elucidated the effect of fogging treatment on the elimination of whiteflies and investigated the sectional distribution of whiteflies. The second experiment analyzed the vertical distribution, the motility of whiteflies and reduction of the number of whiteflies under the fogging system. The result of the experiments showed that the fogging system lowered the number of whiteflies and decreased their motility significantly. It affected the vertical distribution of whiteflies as well. Based on these experiments, we strongly recommend using the fogging system to prevent and control whiteflies in greenhouses, in addition to installing yellow sticky traps in the areas that have the highest density of whiteflies.
김성은(Sung Eun Kim),이상돈(Sang Don Lee),심상연(Sang Youn Sim),김영식(Young Shik Kim) (사)한국생물환경조절학회 2011 생물환경조절학회지 Vol.20 No.4
토마토 시설재배에서 고온기에 온습도를 조절할 목적으로 사용되는 이류체 포그시스템을 이용한 온습도 조절이 가루이 방제에 미치는 영향을 알아보고자 연구를 수행하였다. 분무를 시작한 지 일주일 이내에 가루이의 개체수가 무처리구에 비해 약 87% 감소하였다. 온실의 일일평균기온은 이류체 포그시스템을 설치한 분무구에서 2℃ 정도 낮았다. 일일평균습도는 분무구에서 약 3~4% 높았다. 단, 온도나 습도의 차이로 분무구에서의 효과를 설명하기에는 어려움이 있었다. 저압분무 노즐에서 발생한 음향의 효과를 검증하기 위해 물을 제외하고 공기만 분사한 결과, 가루이의 생육에는 아무 영향이 없는 것으로 나타났다. 따라서 분무구의 효과는 노즐에서 뿜어져 나오는 미세수분입자가 가루이와 접촉하여 가루이의 생육을 억제한 것으로 판단된다. The effect of two-fluid fogging system on the control of Bemisia tabaci in tomato cultivation was evaluated in a greenhouse. The number of Bemisia tabaci was decreased by 87% from the fog treatment for 7 days. During the fog treatment, the mean daily temperature was decreased by 2℃ and the mean daily relative humidity was increased by 3~4% as compared to the non-treatment. The reduction of Bemisia tabaci in the treatment might not be resulted from the differences in temperature and humidity in the greenhouse. The sound coming from the two-fluid fogging system did not affect when it was operated without water inside. Therefore it was concluded that water droplets coming out the nozzle reduced the growth and the movement of whiteflies because the suspension of tiny water droplets were attached on the skin of whiteflies.
이류체 포그 시스템을 이용한 친환경적 가루이 방제시 올레산의 적정 농도
김성은(Sung Eun Kim),이상돈(Sang Don Lee),이문행(Moon Haeng Lee),심상연(Sang Youn Sim),김영식(Young Shik Kim) (사)한국생물환경조절학회 2012 생물환경조절학회지 Vol.21 No.3
본 연구는 친환경적이며 효과적인 시설내 가루이 예방 및 방제를 위해 이류체 포그시스템을 이용하여 올레산을 분무할 때, 올레산의 적정농도를 구명하고 3회 처리시 방제가를 조사하기 위해 수행되었다. 올레산의 적정농도 실험은 부여토마토시험장 단동형 플라스틱 온실에서 공시품종으로 도태랑골드를 사용하여 수행했고, 올레산의 3회 처리시 방제가에 대한 실험은 경기도농업기술원 벤로형 유리온실에서 공시품종으로 로쿠산마루를 사용하여 수행했다. 적정농도 실험은 무처리구를 대조구로 하고 올레산 2000ppm과 4000ppm을 각각 처리하고 가루이의 밀도를 조사했다. 3회 처리 실험은 화학살충제 처리와 동일하게 올레산 2000ppm을 2일 간격으로 3회 처리하고, 2일 후에 방제가를 조사했다. 이류체 포그시스템은 실험기간동안 올레산을 처리하지 않을 때에는 오전 8시부터 오후 5시까지 온도가 25℃ 이상이거나 습도가 75% 이하로 내려갈 때 180초 작동 후 30초 휴식을 반복하여 작동했고, 올레산을 처리했을 때에는 오전 11시부터 오후 5시까지 동일한 조건으로 작동했다. 올레산의 농도실험에서는 2000ppm에서 81.6%, 4000ppm에서 93.6%의 방제가를 나타냈다. 즉, 농도를 높게 처리할수록 가루이의 밀도는 크게 감소했다. 올레산 3회 처리 실험에서는 2000ppm을 3회 처리했을 때, 농약등록 기준보다 높은 85.8%의 방제가를 나타냈다. 따라서 올레산을 2000ppm 이상 3회 처리하는 것이 친환경적인 가루이의 예방 및 방제에 매우 효과적인 것으로 나타났다. In this work, we experimented with the two-fluid fogging system that eco-friendly prevents whiteflies in greenhouses in order to find the optimal concentration of oleic acid supplied through the system and to evaluate the control value of three consecutive treatments. The first experiment, which was to find the optimal concentration of oleic acid, used “Dotaerang Gold” tomatoes grown in stand-alone plastic greenhouse at Buyeo Tomato Experiment Station. We tested three levels of concentration of oleic acid, which were 0, 2000, and 4000 ppm. The second experiment, which was to evaluate the control value of three consecutive treatments of oleic acid, used “Rokusanmaru” tomatoes grown in Venlo type glasshouse at Gyeonggi-Do Agricultural Research & Extension Services. In this experiment, oleic acid of 2000 ppm was applied three times with two days intervals. The number of whiteflies was counted 2 two days after the last application of oleic acid. Even when oleic acid was not being applied, the two-fluid fogging system was run from 9:00 am to 5:00 pm whenever the temperature is higher than 25℃ or the humidity is lower than 75%. In the first experiment, the control value was 81.6% with 2000 ppm of oleic acid and 93.6% with 4000 ppm. It means that the higher the concentration is, the greater the control value. In the second experiment, 2000 ppm treatment resulted in 85.8% of the control value, which is higher than the required standard for insecticides. Hence, spraying oleic acid with the concentration of 2000 ppm three times with two days intervals turned out to be a very effective in the eco-friendly prevention of whitefly.
배액전극제어법을 이용한 토마토 펄라이트 자루재배시 일회급액량 구명
김성은(Sung Eun Kim),심상연(Sang Youn Sim),이상돈(Sang Don Lee),김영식(Young Shik Kim) 한국원예학회 2011 원예과학기술지 Vol.29 No.1
This research was conducted to investigate the effects of irrigation quantity in irrigation management system controlled by drainage level sensors for perlite bag culture on the growth and yields of tomatoes during different growth stages. Tomato plants were irrigated with four selected methods; supplying small quantity (~70 ㎖) during entire growth (S-S), large quantity (~145 ㎖) during entire growth (L-L), small quantity before harvesting the first cluster fruits and large quantity after harvesting (S-L), and large quantity until harvesting the first cluster fruits and small quantity after harvesting (L-S). The irrigation quantity supplied in each time was gradually adjusted along with the ratios as the tomato crop grew during different growth stages. The growth of the tomato plants was unstable and slow during the entire cropping period when the plant was irrigated by small or large quantities (S-S or L-L). In L-S treatment, the growth phase of the tomato was changed from vegetative to generative growth on the basis of the plant development index when each irrigation quantity was changed. The L-S treatment exhibited the largest root volume and yields with stable drainage ratios. Therefore, the optimum irrigation quantity was determined as 145 mL before harvesting the first cluster fruits and 70 ㎖ after harvesting.