• Title/Summary/Keyword: 식물흡수도

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Precision Measurement of Soil Moisture Content using Dual Radio Frequency Changes (고주파의 2개 주파수 변화를 이용한 토양수분 정밀측정)

  • 김기복;이승석;주대성
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2003.02a
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    • pp.470-477
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    • 2003
  • 토양에 함유된 수분은 식물의 생육뿐만 아니라 식물뿌리의 호흡, 미생물 활성 및 토양의 화학적 상태에 큰 영향을 미친다. 즉, 토양수분은 물에 용해된 무기물과 토양 내의 양분을 녹여 식물 뿌리로 흡수될 수 있도록 이동시키며, 토양 속의 온도를 조절하여 뿌리의 영양분 흡수 능력을 향상시키는 기능을 한다. 또한 토양 속으로 수분이 이동하면서 고갈된 산소를 공급하는 등의 중요한 기능을 하고 있다 (Hillel, 1980). 따라서 토양 내 수분이 과다하거나 부족한 경우 인위적으로 최적 상태의 함수비로 조절하는 물 관리 기술의 중요성이 대두되고 있으며 물 관리 기술의 개발에서 가장 중요한 기술 중의 하나는 토양의 수분 함량을 온라인으로 계측하는 것으로서 관개배구 자동화 기술의 핵심부분이라고 할 수 있다. (중략)

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Effect of Phosphate Solubilizing Fungi on P Uptake and Growth of Tabacco in Rock Phosphate Applied Soil (인광석 처리 토양에서 담배의 인산 흡수와 생육에 미치는 인산 가용화균의 효과)

  • Park, Myung-Su;Singvilay, Olayvahn;Seok, Yeong-Seon;Chung, Jong-Bae;Ahn, Ki-Sup;Sa, Tong-Min
    • Korean Journal of Soil Science and Fertilizer
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    • v.36 no.4
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    • pp.233-238
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    • 2003
  • The effect of phosphate solubilizing microbes (PSM) on plant P uptake and growth in rock phosphate applied soil was tested under a greenhouse condition. Tobacco plants were grown in nonsterilized soil inoculated with Penicillium oxalicum CBPS-3F-Tsa with or without rock phosphate application as P fertilizer. Phosphorus concentration in tobacco plants was increased by the application of rock phosphate, while inoculation of soil with fungi further significantly increased P concentration in tobacco plants compared with the noninoculated treatments. Phosphorus uptake by tobacco plants was also increased by the application of rock phosphate and PSM inoculation, and the significant comparison has been made with single rock phosphate treatment. Growth of tobacco plant was also significantly increased in the treatments receiving rock phosphate, while the combined application of rock phosphate and PSM further increased plant growth. It was concluded that the positive effect of PSM inoculation on plant growth was closely related in plant P content and uptake. These results suggest that Penicillium oxalicum CBPS-3F-Tsa could solubilize insoluble soil phosphates and rock phosphate which can promote growth and P uptake of tobacco plants.

The Analysis of Instantaneous $CO_2$ Uptake and Evapotranspiration of Herbaceous Plants for Artificial Roof Greening (옥상녹화용 초본식물의 순간 $CO_2$ 흡수 및 증발산량 분석)

  • Ahn, Geun-Young;Han, Seung-Won;Lee, Eun-Heui
    • Korean Journal of Environment and Ecology
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    • v.25 no.1
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    • pp.91-101
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    • 2011
  • The purpose of this study is to demonstrate the positive effects of artificial ground greening on the reduction of carbon dioxide ($CO_2$) which can help improve ecological functions in cities and mitigation of climate change, through quantifying $CO_2$ uptake and evapotranspiration by the process of photosynthesis of some plants. Experiment of $CO_2$ uptake and evapotranspiration was conducted by measurement of $CO_2$ exchange rate using the infrared gas analyzer, for 7 month, growing season from May to November 2009, 2 times a month. The result was as follows; The $CO_2$ uptake quantity per $cm^2$ of Chrysanthemum zawadskii was the highest rate at $21.47{\times}10^{-6}g/cm^2/s$ and Poa pratensis was $16.20g{\times}10^{-6}g/cm^2/s$. The stronger was light of intensity, the higher were $CO_2$ uptake rate of most plants. In quantity of evapotranspiration, Poa pratensis was the highest rate at $8.75{\times}10^{-5}g/cm^2/s$ and Aquilegia buergariana was $8.66{\times}10^{-5}g/cm^2/s$. From this study, it is confirmed that artificial ground greening has capacity of absorption $CO_2$ and effects on improving urban microclimate.

Water Purification by Inorganic Ion Absorption Character of Water Lettuce (Pistia stratiotes L.) (물상추의 무기이온 흡수 특성을 이용한 수질정화)

  • Lee, Sung Chun;Lee, Jeong Sik
    • FLOWER RESEARCH JOURNAL
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    • v.17 no.1
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    • pp.1-8
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    • 2009
  • This study was conducted to investigate the efficiency of water quality remediation and the inorganic ion removal characteristics by floating plant; water lettuce (Pistia stratiotes L.) in a batch reactor. Water lettuce can be used to remove N and P and other inorganic nutrients, by consuming them in the form of plant nutrient. The highest nutrient absorption of water lettuce was $112.5meL^{-1}\;N$ in Sonneveld-2S, $56.6meL^{-1}\;N$ in Sonneveld-1S, $31.8meL^{-1}\;N$ in sewage and P value was also the highest in Sonneveld-2S as $15.6meL^{-1}$ and in sewage as $5.0meL^{-1}$. These results indicated that using water lettuce held some promise in the context of purification of eutrophication. Also water lettuce had a preference for absorption N. Under Sonneveld-2S treatment, nitrogen percentage was the highest in plant tissue due to the highest concentration of nitrogen and removal by water lettuce. Under sewage, percentage of total N in both plant parts was high. Both above and underground parts, P percentage was less than N. It might be due to the fact that the absorption amount of P was less than N by water lettuce. It meaned that the ability of N removal by water lettuce was higher than that of P, relatively. In summary, these results show that the use of this plant was a viable option.

Salt Tolerance of Various Native Plants under Salt Stress (여러 자생식물의 내염성 정도 구명)

  • Shim, Myung Syun;Kim, Young Jae;Lee, Chung Hee;Shin, Chang Ho
    • Journal of Bio-Environment Control
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    • v.21 no.4
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    • pp.478-484
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    • 2012
  • This study was carried out to investigate the plant growth and ion absorbance balance of various native plants affected by the NaCl concentration (0, 100, 200, 300 mM). Carex blepharicarpa, Carex lenta, Carex matsumarae, Carex sendaica, Iris pseudacorus L., Sedum oryzifolium Makino, Sedum polytrichoides Hemsl., and Typha angustifolia L. were used in this experiment. Carex blepharicarpa, Carex lenta, Carex matsumarae, and Iris pseudacorus L. were tolerant of salinity at the NaCl concentration of 200 mM. The root growth of Carex sendaica and Typha angustifolia L. was suppressed at the NaCl concentration of 100 mM, expecially the root growth responded more sensitively than the upper growth to salinity. The K absorbance of Carex sendaica decreased according to the NaCl application, and the Na/K rate value was 3 at the NaCl concentration of 300 mM. The K, Ca, and Mg absorbance of Typha angustifolia L. decreased at the NaCl concentration of 200~300 mM, and the Na/K rate value was 0.8 at the NaCl concentration of 300 mM. The plant growth of Sedum oryzifolium Makino and Sedum polytrichoides Hemsl. was suppressed at the NaCl concentration of 100~200 mM. The K, Ca, and Mg absorbance of Sedum oryzifolium Makino decreased at the NaCl concentration of 200~300 mM, and Sedum polytrichoides Hemsl. was unaffected by the NaCl application. The Na/K value was 1 in both plants. Therefore, Carex blepharicarpa, Carex lenta, Carex matsumarae, and Iris pseudacorus L. were tolerant plants of salinity at the NaCl concentration of 200 mM considering the plant growth and ion absorbance balance. Especially, the Carex plants were expected to expanding use by the proven tolerance of salinity. The root growth of Carex sendaica, Sedum oryzifolium Makino, Sedum polytrichoides Hemsl., and Typha angustifolia L., was suppressed at the NaCl concentration of 100 mM, but there was no distinct tendency of ion absorbance in leaves according to the NaCl application.

Effects of the Limited Nutrient Supply at the Pollination Stage on the Growth and Nutrient Uptake of Muskmelon Grown in Rockwool (온실멜론의 암면재배에 있어서 수분기의 양분공급제한이 생육 및 양분흡수에 미치는 영향)

  • 장홍기;정순주
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1997.05a
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    • pp.5-10
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    • 1997
  • 본 실험은 온실멜론을 암면재배하여 수분전후 21일간 질소공급제한이 생육, 품질 및 양분흡수에 미치는 영향을 조사하였다 가을과 겨울재배에서는 상당히 고농도의 양분을 흡수하는 시기이기 때문에 시즈오카대 처방(NO$_3$-N = 8me/$\ell$)을 이용하여 재배하고 양분도 제한했기 때문에 식물체는 양분부족 현상을 야기하였다. 교배 후 양분흡수를 제한하는 경우 상위엽의 과잉비대를 방지하였으나 초장과 과실의 생체증은 양분공급을 제한하지 않는 경우에 크게 나타났다. 그 원인은 양분공급을 제한하는 기간 및 시기와 시용배양액 농도 차이에 따른 양분흡수량의 차이라고 생각되었다. 이상으로부터 수분기에는 양분흡수량이 많기 때문에 양분공급을 제한하지 않고 양분공급을 증가시키는 편이 과실의 외관, 품질향상 및 과실의 당도향상에 상당히 기여할 것으로 생각되었다.

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알카로이드독을 이용한 약물

  • 박종희
    • Journal of Life Science
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    • v.3 no.1
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    • pp.18-24
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    • 1993
  • 毒에는 비소, 수은처럼 無機毒과 식물, 동물성의 有機毒이 있으며, 有機毒에는 알카로이드, 배당체, 단백毒 등이 있다. 식물의 알카로이드毒을 중심으로 이것이 어떻게 藥物로서 이용되어 왔는지에 관해 다루었다. Morphine의 발견을 계기로 여러 종류의 식물 알카로이드가 계속 분리되었으며, 藥의 탐구의 새로운 길을 열었다. Morphine은 우수한 진통의 효과를 가졌지만, 흡수억제 및 습관성의 결점을 가지고 있다. 또, Areca catechu L. 의 종자(빈낭자)에는arecoline, arecaidine 등의 piperidine系의 알카로이드를 함유하고 있다. Arecoline은 副交感神經 흥분작용이 있고, 침분비 촉진, 比瀉 등으로 사용되어 왔지만, 지금은 그 용도가 적어졌다. 그리고 화살독이 되는 毒을 약물로 사용한 것은 Acontium屬 식물이 유일한 것이다. 중국에서는 이를 身體四肢關節의 마비, 疼痛의 회복, 대사기능실조의 회복 등의 목적으로 사용해 왔다.

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식물줄기의 Sap Flow의 계측 및 활용 기술

  • 우영회
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1999.11a
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    • pp.1-12
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    • 1999
  • 식물생육에 필요한 모든 물질 가운데 가장 많이 요구되는 것이 물이다. 물은 가장 많이 흡수하는 물질인 동시에 가장 많이 소실되는 물질이기도하며 또한 가장 다양한 기능을 가진 물질이기도 하다. 모든 식물은 그들의 생장과 분화과정에서 물의 공급량에 대하여 매우 예민한 반응보인다. 이러한 민감한 반응은 고착생활을 하는 식물이 주어진 생육환경의 조건을 감수하면서 수분 결핍이나 건조로부터 스스로 보호하려는 필수적인 현상이다. (중략)

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Effects of Photosynthetic rate of Hydroponically Grown Cucumber Plants as Affected by Light Intensity, Temperature, Carbon Dioxide and Leaf Nitrogen Content (일사량, 온도, 탄산가스 농도 및 엽중 질소농도가 양액재배 오이엽의 광합성율에 미치는 영향)

  • 임준택;김학진;정순주;이범선
    • Proceedings of the Korean Society for Bio-Environment Control Conference
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    • 1999.11a
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    • pp.187-191
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    • 1999
  • 식물의 호흡에 영향하는 환경요인은 총 광합성율에 영향하는 모든 요인을 들 수 있으며 뿌리의 호흡에는 근권환경요인 및 질소 흡수량과 같은 영양요인도 들 수 있다. 환경요인의 변화에 따른 식물의 생장 및 수량을 예측하는 식물생장모형의 개발은 식물의 생장이 광합성과 호흡에 의해 좌우되므로 환경요화의 변이에 따른 생육모형개발이 우선적이라 할 수 있다. (중략)

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Monitoring of plant induced electrical signal of broccoli (Brassica oleracea var. italica) under changing light and CO2 conditions (광 및 CO2 변화 조건에서 브로콜리(Brassica oleracea var. italica)의 전기적 신호 모니터링)

  • Park, Jin Hee;Kim, Han-Na
    • Journal of Applied Biological Chemistry
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    • v.64 no.4
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    • pp.351-356
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    • 2021
  • Changing environmental conditions can affect plant growth by influencing water and nutrient transport and photosynthesis. Plant physiological responses under changing environmental conditions can be non-destructively monitored using electrodes as plant induced electrical signal (PIES). Objective of the study was to monitor PIES in response to increased CO2 and decreased photosynthetic photon flux density (PPFD). The PIES increased during day time when transpiration and photosynthesis occurs and monitored CO2 concentration was negatively correlated to the PIES. Enhanced CO2 concentration slightly reduced PIES, but the effect of increased CO2 was limited by light intensity. The effect of reduced PPFD was not appeared immediately because water and nutrient transport was not promptly affected by the light. The study was conducted to evaluate short-term effect of increasing CO2 and decreasing PPFD, hence proline content and chlorophyll fluorescence was not significantly affected by the conditions.