하절기의 높은 일사량은 작물의 과도한 호흡을 유발하여 광 합성을 감소시킨다. 또한 주로 하절기에 발생하는 장마는 온실 내부에 저일조 환경을 유발한다. 저일조 환경은 작물의 생 육과 생산량을 감소시키는 원인이 될 수 있다. 본 연구는 하절 기 차광과 보광이 오이의 생육과 생산량에 미치는 영향에 대 해서 조사하기 위해 수행되었다. 오이 접목묘는 2022년 8월 30일에 플라스틱 온실 2동에 정식하였다. 온실 내부의 광량을 감소시키기 위해 온실 1동에 차광 스크린을 설치하였다. 보광 처리는 2022년 9월 7일부터 2022년 10월 20일까지 수행되 었다. 고압나트륨등(high-pressure sodium lamp), 백색 LED (white LED, red:green:blue = 5:3:2), RB LED(combined red and blue LED, red:blue = 7:3)를 보광 광원으로 사용하였 고, 무처리를 대조구로 설정하였다. 보광 처리는 일출 전과 일 몰 후 2시간씩 수행하였고, 보광 광도는 150±20 μmol·m-2·s-1 로 설정하였다. 식물 초장, 엽장, 엽폭, SPAD는 차광 처리에 의해 증가하는 경향을 보였다. RB LED에서는 차광 처리와 관계없이 경경이 유의성 있게 증가되었다. 과실의 생체중과 건물중은 차광과 보광 처리에서 유의미한 차이가 없었다. 과실의 평균 과중은 수확일이 지날수록 보광처리 간의 유의한 차이는 없었다. 결론적으로, 본 연구에서 하절기 오이 재배 시 50% 수준의 차광 처리는 오이의 생육을 유의하게 향상시켰 다. 또한, 보광 대조구에서 생육과 과실 특성이 좋았다. 본 연 구는 오이 재배 시 보광 기술을 적용하기 위한 기초 연구 자료 로 활용될 수 있다.
Deutzia paniculata Nakai(Hydrangeaceae) is a Korean endemic species with very restricted distribution in Gyeongsang-do, Korea. The plants with limited range of distribution are highly affected by various natural and artificial environmental disturbances resulting habitat loss and decline in population. The purpose of this study was to investigate the growth characteristics of D. paniculata based on the degree of germination in different soil types and shading under green house condition in Korea National Arboretum in the preparation to conserve from future extinction. Altogether seven soil types: native(control), forest soil, bed soil, peat moss, peat moss + perlite(2:1), peat moss + perlite + vermiculite(2:1:1), peat moss + perlite(3:1) with three replica each were used for the experiment. In each soil types the germination rate, survival rate, growth amount, leaf area, LMA(Leaf Mass per Area), SPAD value, and the amount of chlorophyll with the shading conditions(non-shading, 25% shading, and 50% shading) were measured. The result indicated that the highest germination(88%) was found in the bed soil. The survival rate was more than 90% in the non-shading and 25% shading conditions; however, it lowered to 10% in the 50% shading condition. The observation of plant height, leaf number, leaf length and width of seedling in bed soil showed the highest growth was in non-shading treatment, and the lowest growth was in soil 50% shading treatment. The chlorophyll content of each treatment in bed soil with non-shading treatment was 1.64(a=0.77, b=0.87) whereas it was 1.54(a=0.69, b=0.84) in 25% shading treatment. The average LMA for each treatment was 0.45(mg/cm2). We found the strong negative correlation between the shading levels and the number of leaves, leaf width, leaf length, leaf area, plant height and SPAD. Overall result indicated that D. paniculata greatly favored bed soil and non-shading condition in the greenhouse. Through this study we have established a series of processes regarding the appropriate degree of soil and shading conditions for growth and germination of D. paniculata. Thus, these processes can be applied in various research fields for preservation and proliferation of the species.
본 연구는 뿌리부추를 시설하우스에서 재배할 경우 여름철 고온기 하고현상(Summer depression)을 방지하기 위하여 차광막을 하우스 내부 또는 외부에 설치하여 차광정도를 달리하면서 생육 및 수량에 미치는 영향을 조사하기 위하여 수행되었다. 2015년 하우스 내부에 무차광, 35, 55, 75, 95% 차광막을 설치하여 정식 후 20일 째 되는 날에 최종 출현 정도를 조사한 결과, 무처리, 35 및 75% 차광에서 98% 출현하였고, 55 및 95% 차광에서 100% 출현하였다. 차광 정도와는 상관없이 모든 처리에서 최종 출현은 양호하였다. 하우스 내외부에 차광막을 설치했을 경우, 2년간 평균 생중량(Fresh weight) 은 75% 차광에서 6,323kg/10a으로, 무차광, 35%, 55%, 95% 차광보다 각각 5.0배, 1.8배, 1.1배, 1.7배 높았다. 하우스 외부에 차광막을 설치할 경우 생중량은 75% 차 광에서 684g으로, 55%, 95% 차광보다 1.1배, 1.8배 높았다. 건중량(Dry weight), 건물율(Percentage of dry matter), 엽수(No. of leaves), 분얼수(No. of branches), 초장(Plant height), 근장(Root length) 등 분석결과 75% 차광이 다른 차광 보다 통계적으로 유의하게 높거나 절대적 수치가 높게 측정되어 중부지역에서 뿌리부추를 재배 할 경우에는 75% 차광이 가장 적합한 것으로 판단 되었다.
본 연구는 나리 하계 고온기 고품질 절화생산 및 경 영비 절감을 위한 도입 소구의 비대증식에 유리한 환경 조건을 찾아내기 위해 수행하였다. 종구비 절감을 위해 소구를 도입하여 양구하는데 효과적인 환경조건을 찾 아내고자 재배형태를 비가림, 망실, 무피복으로 나누고 다시 절화 재배시 많이 사용하는 30% 차광처리와 무처 리로 구분하여 시험하였다. 모든 처리구에서 비가림 재배 가 우수하였고 차광의 효과도 다소 있었다. 특히 양구에 있어서는 대관령 등의 고랭지에서 주간과 야간온도의 차이가 커서 동화산물의 전류 및 축적이 많아 평지에 비해 구비대가 유리하여 시비 및 관수방법에 따라 보통 3년 정도인 양구 기간을 단축할 수도 있을 것으로 기 대된다.
Production of lettuce under indoor cultivation is highly affected by light intensity. In this study, we used shade cloth (commercial black net) to examine the effect of these condition on growth without an associated yield penalty of container-grown lettuce. Four levels of shading treatments (0%, 35%, 55%, and 75% referred to as Cont., S35, S55, and S75 with respect to Cont.) and two lettuce varieties (red and blue) were evaluated. Variety-specific growth responses were observed with respect to different levels of shading treatments. High growth of red lettuce was occurred in Cont. treatment despite plant height and leaf length being higher than Cont. However, under 35% shading treatment blue lettuce was higher than in control plants. The highest root length was observed 0% shading (Cont.) of both varieties. These results reinforce the idea that blue lettuce is the better leafy vegetable rather than red lettuce for indoor cultivation related to lower light intensity environment conditions.
Background : This study was conducted to develop sustainable and safe ginseng cultivation facilities to cope with climate change and to save labor due to the decrease of labor force in rural areas.
Methods and Results : In 2017, we designed the wide-shading facility which was unmanned and labor saving to cope with climate warming and decreasing labor force in farming area for stable and sustainable production of ginseng. The developed model is called model Ⅰ(Slope-shading facility, Gyeongsangbuk-do ARES), model Ⅱ (Slope-shading facility, Gyeonggi-do ARES) and Model Ⅲ (Roof-type shading facility, RDA, NIHHS, Department of Herbal Crop Research). The tested varieties were stem-violet variant, and the transplanting was done by using the 2-years-old seedlings on April 3, 2017 and the planting density was 90 plant/1.62㎡. A thermometer, a light meter, and a rain gauge were installed in the center of the facility on April 13, 2017 to measure the micro-weather in the facility. Micro-weather observations were made from April 14 to October 10, measuring temperature, humidity, light intensity, soil moisture content, water leakage, and wind speed. Surveys were carried out on June 20 and September 29, respectively. The maximum temperature in the facility was 2 to 3℃ lower than the outside, but the relative humidity was 2 - 3% higher in the facility than in the outside. Soil moisture did not show a clear trend among the models. The light transmittance was 5 - 10% and it was the highest in model I, where the height of the shading facility was the highest. Rain leakage was 10 - 36%, the most in model Ⅱ. The amount of leaks increased with the amount of precipitation per hour. In all models, ginseng stem and leaf were damaged due to excessive water leakage. On July 10, stem and leaf were grown well only in wide-shading facility where leakage was adequately blocked with double-sided film. The average wind speed was less than 1.6 m/s during the survey period. The maximum wind speed was 8.8 m/s or less, which did not affect the deformation of the wide-shading facility. In all models, there was no difference in growth of aboveground part and root.
Conclusion : As a result, in order to grow ginseng continuously and stably using wide-shading facilities, it is considered that the amount of leakage should be minimized by using material that can prevent leakage in cope with rainfall or heavy rain rather than wind-resistance.
Background : This study was carried out to secure technology for stable production of ginseng by developing technology to reduce the high temperature in response to climate change.
Methods and Results : Polyethylene film (PE film), scattering film and blue-white double-sided film (85% shading rate) were tested for ginseng rain-shielding materials. The shading materials used were a black shading net (90% shading rate) in the first, and an aluminum screen (40% shading rate) in the second. The first shading materials were installed on April 10 with PE film + black light shielding net, and scattering film + black light shielding net. As the treatment for high temperature injury relief, an aluminum screen was installed under a scattering film + black light shielding net and a blue-white double-sided film at a high temperature. The amount of transmitted light was 12.9% at scattered film, 14.5% at double sided film, and 12.5% at PE film when the primary rain-shielding material was covered. In secondary shading, scattering film + aluminum screen and blue-white double-sided film + aluminum showed 8.6% and 7.6% of light transmitting, respectively. In the case of temperature, the average temperature was lower than the outside temperature at the scattering film + aluminum screen, clear double sided film + aluminum screen and PE film recovery. The differences among the cultivars were significant in plant height, stem height, stem diameter, leaf length, leaf width and leaf area. There were significant differences in the plant height, stem height, leaf length, and leaf width between treatments, but there was no interaction effect between varieties and treatments. The interactions between treatments were found only in the number of brach root.
Conclusion : High temperature damage was influenced by the amount of irradiation in the facility rather than the temperature, which was presumed to be due to the accelerated aging of the ginseng leaf as the light transmittance increased.
Background : The use of the rain shelter facility gets more prevalent in the Ginseng cultivation area these days. This study is designed to establish a technique for the stable cultivation of Ginseng in the rain shelter facilities in high temperature (above 30 ℃) without the damage from high temperature Methods and Results : This study was carried out on 3-year Ginseng roots in 2016 in order to find out how to stably cultivate Ginseng in high temperature without suffering the high temperature damage during the cultivation of Ginseng under rain shelter facilities. The rain shading materials were coated with scattering film (scattering film + black shading net 90%), bluish white double-sided film (shading 85%) and PE film (PE film + black shading net 90%). The damage reduction by high temperature was made to the scattering film and bluish-white double-ended film only. An aluminum screen (shading rate: 40%) was installed when the high temperature (above 30℃) was reached while the isoprene (solution of 2000 times) was sprayed 4 times every 7 days from the full development stage. The light transmittance was 12.6 - 13.4% for the scattering film, 10.5 - 10.8% for the bluish-white double sided film and 7.1% for the PE film in the first coating while it was 7.3% for the scattering film and 7.1% for the bluish-white double-sided film when the aluminum screen was installed in high temperature. The high, average and low values in the relative humidity were higher inside the facility than in the outside during the survey period. The area of leaf was the largest under the scattering film. The area of leaf was the largest for the scattered film under the aluminum shade of 40% shading followed by that of spraying of isoprene 4 times, and that of the no-treatment. As for the growth under ground, the growth of underground shoots increased by 40% in aluminum screen, 53.7% in shading and 26.1% in the spraying of isoprene 4 times than non-shading while there was no difference among other rain shelter materials. Conclusion : The result of the research showed that when the scattering film is selected as the rain shelter material film for the cultivation of Ginseng, it is necessary to shade the sunlight as much as 40% by using the aluminum screen or the shading net to reduce the high temperature damage.
Background : This study was carried out to investigate the changes of the growth of ginseng in the house when the light intensity was increased. Three shading screens were used: shading materials 85%, 77%, and 55% net. Changes in the growth of ginseng and the quality of red ginseng were investigated in these shading materials. Methods and Results : The test site was a three house constructed in the Punggi Ginseng Research Institute, Gyeongsangbuk - do Agricultural Research and Extension Services. The entrance to the house is located east-west, and the structure is double steel frame. The inside of the house is covered with vinyl, and 85%, 75%, 55% shading net is installed for each shading treatment. From the end of June to the middle of August, a 55% shading net was double covered to reduce the high temperature damage. The test material was grafted on March 20, 2013. The management of the irrigation water was from 30 kPa to 10 kPa. The aM-21A data log of Wise Sensing Co., Ltd. was used to measure the cultivation environment in the house. Photosynthesis was measured using Lci Compact Photosyntheisi System, adc, UK. Surveys were carried out in accordance with the inspection standards of the Rural Development Administration. The data were analyzed statistically using SPSS. Conclusion : The summer temperature of shading method was more than 2℃ higher than other treatments in 55% shading treatment and more than 6℃ in autumn. The light intensity of 90 μmol/s/㎡ was lower than that of August, and the light intensity was higher than 400 μmol at the end of September. The 55% shading method showed twice as much light in summer and more than four times in autumn. The amount of photosynthesis increased due to the light intensity of 55% treatment, especially in the morning of May. In the light of shading method, 85% light shading method showed the best growth at 2 years, but 55% at 3 years and more, and 5 years at 5 years.
Background : This experiment was carried out to improve the labor-intensive task to construct of the traditional ginseng shading system in Korea. In this experiment the selected shading materials was new 6 kinds that HDPE - knitted- monofilament and taped PE Net, with taking into account of the amount of light and the amount of leakage to screen the UV stabilized 0.3% - 0.6%. Compared with the traditional shading material, the black-shading material (wt. 200g/㎡) and the yellow shading material (wt. 300g/㎡) was suitable for the ginseng growing environments in Korea. Methods and Results : The installation of shading system was the 45 degree slope -2 meter height from the ground with the selected shading materials for the wide structure ginseng cultivation. Temperature and light intensity was measured with a week interval from the surface to a height of 30cm. The two kinds of the 1st selected materials and the traditional black + blue two layer shading materials, aluminum screen, Canada Gintec shading material, total 5 kinds of materials were installed in wide structure. The growing environmental analysis was measured using data logs (watchdog 1600series). Conclusion : In the first selection of shading materials for Ginseng wide structure, the levels of light intensity were higher in order of blue-shading> Aluminum- shading> black-shading order. The temperatures of the under wide structures were lower in order of the black-shading< aluminum-shading screen< blue-shading order, especially the temperature of the black shading material was lower than the outside temperature. For the second selection of shading material of the ginseng wide structure, the black and yellow shading material were superior to the other materials, in the amount of light shading material and growing conditions and the degree of leakage etc. The temperatures of mid-May in wide structures of ginseng cultivation were higher in order of aluminum-screen> Canada shading materials (Gintec Co.) 2 layer material> Yellow shading> black shading order, and also the amounts of light intensity also was shown to be with the same manner
자생산채류(自生山菜類)인 곤드레의 종자발아(種子發芽) 특성(特性)을 구명(究明)하고 나아가 생체생산에서 차광정도(遮光程度)가 3년째의 생존율(生存率), 생육(生育) 및 연차별(年次別) 수량(收量)을, 종자생산(種子生産)에서는 생존율(生存率), 개화기(開花期), 착과(着果) 및 연차별(年次別) 종자수량(種子收量)을 조사한 바 다음과 같은 결과(結果)를 얻었다. 1. 종자(種子)는 치상후(置上後) 3~4일이 지난후 부터 발아(發芽)하기 시작하였으며 저온저장일수(低溫貯藏日數)가 길수록 발아율(發芽率)이 높아 60일이상 저장시(貯藏時) 60~80% 이상의 발아율(發芽率)을 나타내었다. 광조건별로는 암상태(暗狀態)보다 명상태(明狀態)에서 발아율(發芽率)이 높은 경향이었다. 2. 곤드레의 재배기간중(栽培期間中) 50% 차광망처리구(遮光網處理區)는 무차광구(無遮光區)의 최고기온(最高氣溫) 24.1~27.5, 최저기온(最低氣溫) 8~18.6℃, 밝은날 조도(照度) 72,280Lux, 흐린날 26,380Lux에 비해 최고기온(最高氣溫) 약 4℃, 최저기온(最低氣溫) 1℃ 낮았으며 조도(照度)에 있어서 맑은 날 42%, 흐린 날은 47%의 낮은 수광률(受光率)을 나타내었다. 3. 경엽(莖葉)의 생육(生育) 및 엽녹소(葉綠素) 함량(含量)은 차광정도(遮光程度)가 클수록 많았으며 연화도(軟化度) 또한 높아 품질(品質)이 우수(優秀)하였으며 경엽(莖葉)의 수량(收量) 역시 무차광구(無遮光區)보다 차광강피복구(遮光綱被服區)에서 가장 많았으며, 특히 3년차까지의 평균수량은 30% 차광망처리(遮光網處理)에서 40,290kg/ha로 가장 많아 곤드레 재배시에는 30%이상의 차광망재배(遮光網栽培)가 유리할 것으로 판단되며 재배년차간(栽培年次間) 경엽수량(莖葉收量)에 있어서는 2년차재배시(年次栽培時)의 수량(收量)이 가장 많았으며 3년차재배시(年次栽培時)에는 생존율(生存率)이 떨어져 다소멸소(多少滅少)되는 것으로 나타나 결국 2년차(年次)까지 경엽(莖葉)을 수확(收穫)한 후 모주(母株)를 갱신(更新)하는 것이 경제적(經濟的)일 것으로 생각되었다. 4. 채종재배(採種栽培)에 있어서 개화시는 8월(月) 중일순(中一旬)으로 차광정도(遮光程度)가 클수록 점차 늦어졌으며 무차광에서 개화량(開花量) 및 결실률(結實率) 등(等)이 높았으며 3년간 평균 종자수량(種子收量)은 2,560l/ha로 가장 많아 고랭지(高冷地)에서 실생묘를 이용하여 곤드레의 채종재배(採種栽培)는 무차광재배(無遮光栽培)가 유리(有利)하고 재배년한(栽培年限)은 3년차(年次) 종자채종후(種子採種後) 모주(母株)를 갱신(更新)하는 것이 경제적(經濟的)일 것으로 판단되었다.