• 제목/요약/키워드: Glass-Greenhouse

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농식품-ICT 융·복합 기술 개발 및 표준화 추진방향 (A study on standardization and R&D strategies of agrifood-ICT convergence technology)

  • 민재홍;허미영;박주영
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2015년도 춘계학술대회
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    • pp.777-780
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    • 2015
  • 현재 우리나라 농업은 농식품 산업과 ICT 융합화로 새로운 가치를 창출하고, 농촌 지역 정보화 확충, 농정 시스템 효율성 제고 등을 통해 성장동력을 확충함으로써 지속가능한 성장을 도모하고 있다. 한편 국내 농업 ICT 융합 기술은 생산 분야 위주로 초기단계 수준에 머물러 있어, 생산 유통 소비단계를 아우르는 체계적인 기술개발과 표준화를 통한 성공 모델의 확산이 필요하다. 또한, 대형 유리 온실의 관제 및 제어 시스템은 외산 제품이 대부분이고, 농식품 ICT 융복합 기술에 관한 표준화 미흡 및 관련 기업의 영세성 등으로 민간 주도의 농식품 ICT 융복합 활성화에 한계가 있다. 그리고 기존의 농업기술에 정보화기술, 자동제어 기술 등 ICT 고유의 기술을 융합시켜 농업의 생산 유통 소비 전 과정에 걸쳐 생산성향상, 효율성 증대, 품질향상 등과 같은 고부가가치를 창출 방안 모색이 필요하다. 따라서 본 논문에서는 국내 농업-ICT 융합 기술 개발 현황, 표준화 동향 및 정책 동향 등을 분석하여 우리나라가 선도할 농업 ICT-융합 기술 분야를 도출하고 향후 표준화 방안을 제시하고자 한다.

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난황유를 이용한 가지과 작물의 흰가루병 방제 (Control of Powdery Mildew on Solanaceous Crops by Using COY (Cooking Oil and Yolk Mixture) in the Greenhouse)

  • 권진혁;심창기;지형진;박창석
    • 식물병연구
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    • 제15권1호
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    • pp.23-29
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    • 2009
  • 2005년부터 2007년까지 3년 동안 경상남도농업기술원 시설하우스와 유리온실에 재배중인 가지, 파프리카, 토마토에 발생하는 흰가루병을 방제하기 위하여 친환경 농자재인 난황유를 살포한 것과 난황유에 칼슘과 님오일을 혼합한 제제를 살포한 후 병 방제효과와 식물체 상에서 병원균의 형태적 변화를 관찰하였다. 채종유로 만든 난황유를 5일 간격으로 3회 지상부에 골고루 살포하고 최종약제 살포 후 5일째 병 진전을 조사한 경우 가지 흰가루병이 94.6% 방제가 되었고, 파프리카 흰가루병은 난황유만을 살포한 경우에는 91.6%의 방제가를 나타내었으며, 난황유에 칼슘과 님오일을 혼합하여 살포할 경우 96.2%의 더 높은 방제가를 나타내었다. 시설하우스내 토마토(방울, 완숙) 철가루병 방제를 위해 채종유로 만든 난황유를 살포할 경우 91.1$\sim$91.7% 정도 방제 되었으며, 난황유와 칼슘과 님오일을 혼합하여 살포할 경우 100% 방제가 되었다. 난황유를 처리하지 않은 식물체 표면에서는 건강하고 왕성한 균사, 분생포자경, 분생포자들을 전자현미경으로 관찰할 수 있었으나, 난황유를 처리한 이후에 관찰된 흰가루병균은 기주식물과 병원균의 종류에 관계없이 모두 세포벽이 파괴되어 원형질이 빠져나가 균사가 모두 쭈그러들었으며 분생포자가 생성되지 않았다.

지구온난화와 환경요소인 광, 토양수분, 영양소가 상수리나무와 굴참나무의 생태 지위에 미치는 영향 (Effects of Global Warming and Environmental Factors of Light, Soil Moisture, and Nutrient Level on Ecological Niche of Quercus acutissima and Quercus variabilis)

  • 조규태;장래하;이승혁;한영섭;유영한
    • 생태와환경
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    • 제46권3호
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    • pp.429-439
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    • 2013
  • 한반도의 참나무 중 수분과 유기물이 많은 입지에 분포하는 상수리나무와 수분이나 양분이 적은 척박한 건조지에 분포하는 굴참나무를 대상으로 대기 중의 $CO_2$ 농도와 기온이 상승하고 환경요소인 광, 토양수분, 영양소가 변화할 때 두 종의 생태 지위폭과 생태 지위 중복역에 가장 많은 영향을 미치는 요소가 어떤 것인지 알아보고자 하였다. 유리온실 내에서 대기 중의 $CO_2$ 농도를 그대로 반영한 대조구와 이보다 $CO_2$ 농도는 약 1.6배와 온도는 $2.2^{\circ}C$ 상승시킨 온난화처리구에서 유식물에 주요 환경요인 중 광, 토양수분과 영양소를 각각 4구배로 처리하여 두 종의 생태 지위폭과 생태 지위 중복역을 계산하였다. 그 결과, 상수리나무의 생태 지위폭은 대조구와 온난화처리구간에 통계적인 차이는 없었고, 굴참나무의 생태지위폭은 대조구에 비해 온난화처리구의 영양소 처리구에서 감소하였다. 상수리나무와 굴참나무의 생태 지위 중 복역은 대조구에 비해 온난화처리구의 토양수분과 영양소 처리구에서 감소하였다. 이러한 결과는 유식물을 대상으로 실험한 결과로 성측목에 적용하는 것은 한계가 있으나, 지구온난화가 진행됨에 따라 상수리나무와 굴참나무는 토양수분과 영양소 환경에 의한 경쟁이 약해질 것으로 유추할 수 있다. Cluster 분석과 PCA 분석 결과, 두 종은 $CO_2$ 농도 및 온도 증가에 의한 반응보다 광 환경에 따라 민감하게 반응하는 것으로 나타났다.

High frequency direct plant regeneration from leaf, internode, and root segments of Eastern Cottonwood (Populus deltoides)

  • Yadav, Rakesh;Arora, Pooja;Kumar, Dharmendar;Katyal, Dinesh;Dilbaghi, Neeraj;Chaudhury, Ashok
    • Plant Biotechnology Reports
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    • 제3권3호
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    • pp.175-182
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    • 2009
  • Simple, reproducible, high frequency, improved plant regeneration protocol in Eastern Cottonwood (Populus deltoides) clones, WIMCO199 and L34, has been reported. Initially, aseptic cultures established from axillary buds of nodal segments from mature plus trees on MS liquid medium supplemented with $0.25mg\;1^{-1}$ KIN and $0.25mg\;1^{-1}$ IAA. Nodal and internodal segments were found to be extra-prolific over shoot apices during course of aseptic culture establishment, while $0.25mg\;1^{-1}$ KIN concentration played a stimulatory role in high frequency plant regeneration. Diverse explants, such as various leaf segments, internodes, and roots from in vitro raised cultures, were employed. Direct plant regeneration was at high frequency of 92% in internodes, 88% in leaf segments, and 43% in root segments. This led to the formation of multiple shoot clusters on established culture media with rapid proliferation rates. Many-fold enhanced shoot elongation and growth of the clusters could be achieved on liquid MS medium supplemented with borosilicate glass beads, which offer physical support for proliferating shoots leading to faster growth in comparison to semi-solid agar or direct liquid medium. SEM examination of initial cultures confirmed direct plant regeneration events without intervening calli. In vitro regenerated plants induced roots on half-strength MS medium with $0.15mg\;1^{-1}$ IAA. Rooted 5- to 6-week-old in vitro regenerated plants were transferred into a transgenic greenhouse in pots containing 1:1 mixture of vermicompost and soil at $27{\pm}2^{\circ}C$ for hardening and acclimatization. 14- to 15-week-old well-established hardened plants were transplanted to the field and grown to maturity. The mature in vitro raised poplar trees exhibited a high survival rate of 85%; 4-year-old healthy trees attained an average height of 8 m and an average trunk diameter of 25 cm and have performed well under field conditions. The regeneration protocol presented here will be very useful for undertaking genetic manipulation, providing a value addition to Eastern Cottonwood propagation in future.

Studies on the changes in phenological, growth and physiological responses of Silene capitata Kom., an endangered plant in Korea, under climate change treatment

  • Park, Jae-Hoon;Han, Young-Sub;Lee, Eung-Pil;Lee, Seung-Yeon;Jeong, Heon-Mo;You, Young-Han
    • Journal of Ecology and Environment
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    • 제43권3호
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    • pp.305-313
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    • 2019
  • Background: This research aims to study the effect of climate change on the phenology, growth, and physiological traits of Silene capitata Kom., a Korean endangered species II. This study increased $CO_2$ concentration in a closed glass greenhouse, with the daily mean temperature and $CO_2$ concentration respectively being $4.61^{\circ}C$ and 93.63 ppm higher than the outside temperature (ambient conditions, control). The seeds of S. capitata were sown in control and treatment environments in March 2013 while seedlings were transplanted into individual pots in May 2013. To research phenological changes, the first day of the flowering and ripening of the plants transplanted in 2013 and first day of leafing in 2014 were observed. The growth and physiological responses of mature leaves were also studied in 2013. Results: There was no difference in the first day of flowering, but the first day of ripening was earlier in the treatment group than the control group. There was no difference in the number of rosette leaves between the two groups, but leaf area was wider in the treatment group than the control group. Transpiration rate and stomatal conductance were higher in the treatment group than the control group, chlorophyll content decreased, and photosynthetic rate and water use efficiency were the same for both groups. As a result of simple regression analysis among the transpiration rate, stomatal conductance, photosynthetic rate, and water use efficiency, stomatal conductance increased when transpiration rate increased. Stomatal conductance increased with photosynthetic rate in the control unlike in the treatment group. The photosynthetic rate and water use efficiency increased with transpiration rate in the control group unlike in the treatment group. Furthermore, water use efficiency increased as photosynthetic rate increased in both groups. Conclusion: Due to high $CO_2$ concentration, the photosynthetic rate was no longer controlled by the stomata, which appeared to suppress the excessive production of photosynthetic products by reducing chlorophyll content. It is believed that the phenological responses of S. capitata under climate change conditions will advance and that stable growth will be difficult in regions lacking moisture due to the high transpiration rate.

질소비료의 심층시비에 의한 논과 밭 토양의 암모니아 배출 억제 효과 (Reducing the Effect of Ammonia Emissions from Paddy and Upland Soil with Deep Placement of Nitrogen Fertilizers)

  • 홍성창;김민욱;김진호
    • 한국환경농학회지
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    • 제41권4호
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    • pp.230-235
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    • 2022
  • BACKGROUND: Ammonia gas emitted from nitrogen fertilizers applied in agricultural land is an environmental pollutant that catalyzes the formation of fine particulate matter (PM2.5). A significant portion (12-18%) of nitrogen fertilizer input for crop cultivation is emitted to the atmosphere as ammonia gas, a loss form of nitrogen fertilizer in agricultural land. The widely practiced method for fertilizer use in agricultural fields involves spraying the fertilizers on the surface of farmlands and mixing those with the soils through such means as rotary work. To test the potential reduction of ammonia emission by nitrogen fertilizers from the soil surface, we have added N, P, and K at 2 g each to the glass greenhouse soil, and the ammonia emission was analyzed. METHODS AND RESULTS: The treatment consisted of non-fertilization, surface spray (conventional fertilization), and soil depth spray at 10, 15, 20, 25, and 30 cm. Ammonia was collected using a self-manufactured vertical wind tunnel chamber, and it was quantified by the indophenol-blue method. As a result of analyzing ammonia emission after fertilizer treatments by soil depth, ammonia was emitted by the surface spray treatment immediately after spraying the fertilizer in the paddy soil, with no ammonia emission occurring at a soil depth of 10 cm to 30 cm. In the upland soil, ammonia was emitted by the surface spray treatment after 2 days of treatment, and there was no ammonia emission at a soil depth of 15 cm to 30 cm. Lettuce and Chinese cabbage treated with fertilizer at depths of 20 cm and 30 cm showed increases of fresh weight and nutrient and potassium contents. CONCLUSION(S): In conclusion, rather than the current fertilization method of spraying and mixing the fertilizers on the soil surface, deep placement of the nitrogen fertilizer in the soil at 10 cm or more in paddy fields and 15 cm or more in upland fields was considered as a better fertilization method to reduce ammonia emission.

The Evaluation of Adaptability of Three Ever-green Perennial Herbaceous South Korea Native Plants under In-door Light Intensities

  • Sang Yeob Lee;Kyungtae Park;Bo Kook Jang;Cheol Hee Lee;Ju Sung Cho
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2020년도 춘계학술대회
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    • pp.67-67
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    • 2020
  • Though there is an on-going need for the diversity of ornamental plants for in-door environment, their growth and stress adaptability in comparatively low light intensity condition require further studies for implementation. Here investigates the growth and chlorophyll fluorescence parameters of Farfugium japonicum (L.) Kitam, Liriope muscari (Decne.) L.H.Bailey and Acorus gramineus Aiton under several light intensities which were based on common in-door environment. The growth measurement of the plants included the quantity, length, width and SPAD value of the leaves. Calculated values of Fm/Fo, Fv/Fm, Pi_Abs, ETo/RC and DIo/RC were used as the parameters of the chlorophyll fluorescence under 10, 50, 100 and 200 PPFD (μmol·m-2·s-1) light intensities. In-door plants group was put in a closed room allowing no other light sources for 10 weeks and the control group was put in glass-greenhouse for the same period. The overall in-door growth of L. muscari was not significantly different in all light intensities compared to the control group and even showed the higher SPAD values. Also, an increasing tendency of Pi_Abs value under 10 to 100 PPFD was observed implying that L.muscari could adapt well to in-door environment. Measurement of A. gramineus growth mostly showed the highest values in the control group especially in the number of the leaves. Nevertheless, chlorophyll fluorescence parameters showed no significant value difference between in-door and the control groups and thus, A. gramineus might have possibility of successful adaptation to in-door environment. F. japonicum showed deficient growth in plant height and leaf length compared to the control but, it seemed to be able to sustain ornamental value under in-door light intensities. Furthermore, Pi_Abs and DIo/RC values were increased under in-door light conditions suggesting potential adaptability of F. japonicum.

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파프리카 생장에 따른 줄기의 정부와 하부 간 광량, 엽온, 증산속도 및 수증기압포차 비교 분석 (Comparative Analysis of Lighting Intensity, Leaf Temperature, Transpiration Rate, and Vapor Pressure Deficit between the Top and Branching Point of Stem during Growing Period of Paprika Plant)

  • 우승미;김호철
    • 문화기술의 융합
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    • 제9권6호
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    • pp.1097-1101
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    • 2023
  • 2022년 11월부터 2023년 3월까지 유리온실에서 파프리카 식물체가 생육함에 따라 식물체 높이별 광량, 엽온, 증산속도, 수증기압포차를 측정하였다. 적산된 엽온은 식물체 정부에서 하부보다 높았다. 시간이 지남에 따라 오전 11-13시경 측정된 엽온은 하부(pL)에서 26.55→23.21→22.80→26.67℃로 변화하였고, 상부(pAs)에서는 26.52→24.48→24.55→27.78℃로 변화하였다. 그리고 VPD는 pL에서 1.45→0.94→0.74→1.46kPa, pAs에서는 1.11→0.86→0.71→1.28kPa로 변화하였다. 이에 따른 증산속도는 pL에서는 4.25→0.17→4.08→0.52mmol·m-2·s-1, pAs에서 7.61→2.45→1.94→4.39→0.52mmol·m-2·s-1로 변화하였고, pAs에서 pL보다 상당히 높았다. 하부와 상부 차이(pL-pAs)는 엽온, 광량, 증산속도에서는 pL보다 pAs에서 더 높았으나 수증기압포차는 pL에서 더 높았다. 이와 같이 파프리카는 재배기간 중 상부와 하부 간 환경과 이에 따른 광합성 요소가 차이를 나타내어 향후의 연구에서는 이에 대한 고려가 필요할 것으로 판단된다.

기후변화 조건에서 수분구배 및 영양소 구배에 따른 굴참나무와 상수리나무 잎 형태적 특성의 생태지위 변화 (Variations in Ecological Niche of Quercus variabilis and Quercus acutissima Leaf Morphological Characters in Response to Moisture and Nutrient Gradient Treatments under Climate Change Conditions)

  • 박여빈;김의주;박재훈;김윤서;박지원;이정민;유영한
    • 한국환경복원기술학회지
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    • 제27권2호
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    • pp.43-53
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    • 2024
  • This study attempted to elucidate the ecological niches and influencing environmental factors of Quercus variabilis and Quercus acutissima, which are representative deciduous broad-leaved trees in Korean forests, taxonomically close and genetically similar, under climate change conditions. Under climate change conditions induced by increased CO2 and temperature, soil moisture and nutrient environments were manipulated in four gradients. At the end of the growing, plants were harvested to measure growth responses, calculate ecological niches, and compare them with those of the control. Eperimental plants were grown for 180 days in a glass greenhouse designed with four gradients each for soil moisture and nutrient environments under climate change conditions induced by increased CO2 and temperature. After harvesting, growth responses of leaf traits were measured, ecological niches were calculated, and these were compared with those of the control groups. Furthermore, the responses of the two species' populations were interpreted using principal component analysis(PCA) based on leaf trait measurements. As a result, under climate change conditions, the ecological niche breadth for moisture environment was broader for Quercus variabilis than Quercus acutissima, whereas for the nutrient environment, Quercus acutissima exhibited a broader niche breadth than Quercus variabilis. And the rate of change in ecological niche breadth due to climate change decreased for Quercus variabilis in both moisture and nutrient environments, while for Quercus acutissima, it increased in the moisture environment but decreased in the nutrient environment. Additionally, in terms of group responses, both Quercus variabilis and Quercus acutissima expanded their ecological niches under climate change conditions in both soil moisture and nutrient conditions, with Quercus acutissima exhibiting a broader niche than Quercus variabilis under nutrient conditions. These results indicate that the changes in leaf morphological characteristics and the responses of individuals reflecting them vary not only under climate change conditions but also depending on environmental factors.