• 제목/요약/키워드: Excessive soil water stress

검색결과 35건 처리시간 0.033초

토양 건조 및 침수처리가 박태기나무의 광계 II 활성에 미치는 영향 (Effects of Soil Drought and Waterlogging on Photosystem II Activities in Cercis Bunge)

  • 이경철;이의열;윤경규;권영휴;한상균
    • 현장농수산연구지
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    • 제22권1호
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    • pp.35-42
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    • 2020
  • This study was conducted to investigate the photosystem II activities of Cercis chinensis by soil water condition. Drought stress was induced by withholding water and waterlogging treatments was immerging the pots for 15 days. Results showed that the relative activities per reaction center such as ABS/RC, TRo/RC and Dio/RC were significantly increased compared with the control group after 12 days in waterlogging treatments. Particularly, Dio/RC increased substantially under waterlogging stress, indicating that excessive energy was consumed by heat dissipation. Furthermore, the performance index on absorption basis(PIabs) and responses to structural and functional PS II(SFIabs) were dramatically decreased after 15 days in both the drought and waterlogging treatments, which reflects the relative reduction state of the photosystem II. These results of chlorophyll a fluorescence by OKJIP analysis show that the sensitive changes photosystem II activity. Thus, on the basis of our results that Cercis chinensis was exhibited a strong reduction of photosynthetic activity to waterlogging stress, and OKJIP parameters such as ABS/RC, DIo/RC, PIabs and SFIabs could be useful indicator to monitor the physiological states of Cercis chinensis under soil water condition.

파랑-구조물-지반 상호작용에 의한 혼성제 주변 해저지반의 3차원 동적응답 특성 (3-D Dynamic Response Characteristics of Seabed around Composite Breakwater in Relation to Wave-Structure-Soil Interaction)

  • 허동수;박종률;이우동
    • 한국해양공학회지
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    • 제30권6호
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    • pp.505-519
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    • 2016
  • If the seabed is exposed to high waves for a long period, the pore water pressure may be excessive, making the seabed subject to liquefaction. As the water pressure change due to wave action is transmitted to the pore water pressure of the seabed, a phase difference will occur because of the fluid resistance from water permeability. Thus, the effective stress of the seabed will be decreased. If a composite breakwater or other structure with large wave reflection is installed over the seabed, a partial standing wave field is formed, and thus larger wave loading is directly transmitted to the seabed, which considerably influences its stability. To analyze the 3-D dynamic response characteristics of the seabed around a composite breakwater, this study performed a numerical simulation by applying LES-WASS-3D to directly analyze the wave-structure-soil interaction. First, the waveform around the composite breakwater and the pore water pressure in the seabed and rubble mound were compared and verified using the results of existing experiments. In addition, the characteristics of the wave field were analyzed around the composite breakwater, where there was an opening under different incident wave conditions. To analyze the effect of the changed wave field on the 3-D dynamic response of the seabed, the correlation between the wave height distribution and pore water pressure distribution of the seabed was investigated. Finally, the numerical results for the perpendicular phase difference of the pore water pressure were aggregated to understand the characteristics of the 3-D dynamic response of the seabed around the composite breakwater in relation to the water-structure-soil interaction.

수분스트레스가 땃두릅나무의 광합성 능력 및 광계 II의 활성에 미치는 영향 (Effects of Drought Stress on Photosynthetic Capacity and Photosystem II Activity in Oplopanax elatus)

  • 이경철;김선희;박완근;김영설
    • 한국약용작물학회지
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    • 제22권1호
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    • pp.38-45
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    • 2014
  • This study was performed to investigate the physiological responses of Oplopanax elatus by water condition. Drought stress was induced by withholding water for 26 days. The results show that $P_{N\;max}$, SPAD, gs, E and Ci were significantly decreased with decreasing of soil moisture contents. However, AQY and WUE were decreased slightly only at 26 day. This implies that photosynthetic rate is reduced due to an inability to regulate water and $CO_2$ exchange through the stomatal. According to JIP analysis, ${\Phi}_{PO}$, ${\Psi}_O$, ${\Phi}_{EO}$ and $PI_{ABS}$ were dramatically decreased at 21 day and 26 day, which reflects the relative reduction state of the photosystem II. On the other hand, the relative activities per reaction center such as ABS/RC, TRo/RC were significantly increased at 26 day. Particularly, Dio/RC and DIo/CS increased substantially under drought stress, indicating that excessive energy was consumed by heat dissipation. These results of chlorophyll a fluorescence show that the sensitivity changes photosystem II activity. Thus, according to the results, O. elatus was exhibited a strong reduction of photosynthetic activity to approximately 10% soil moisture contents, and JIP parameters could be useful indicator to monitor the physiological states of O. elatus under drought stress.

Nitrogen Uptake and Growth of Soybean Seedlings under Flooding Stress

  • Won Jun-Yeon;Ji Hee-Chung;Cho Jin-Woong
    • 한국작물학회지
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    • 제51권2호
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    • pp.118-122
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    • 2006
  • This experiment was carried out on plastic pots ($40cm{\times}25cm{\times}30cm$) filled with sand soil at greenhouse using two soybean cultivars with small seed; one was Pungsannamulkong (PSNK) recognized as a tolerant cultivar against excessive water stress and the other one was Sobaeknamulkong (SBNK) recognized as a susceptible cultivar. Seed was sown with 30 plants of 2 hills, and the amount of applied fertilizer was N; 3.0 g, P; 3.0 g, and K; 3.4 g per $m^2$ with all basal fertilizations. Plants were grown under photoperiod of natural light with day temperature of $31{\pm}5^{\circ}C$ and night temperature of $22{\pm}1^{\circ}C$. The flooding treatment was done for 3, 5, 7 and 10 days by filling pots with tap water up to 1 cm above the level of the soil surface when plants were 2 days after emerging. Nitrogen uptake by leaves of soybeans decreased significantly by the flooding after 6 days. This significant reduction of N uptake by flooding was evidently recognized from the chlorosis of leaves. The dry matter of flooded soybean seedlings significantly decreased compared to non-flooded soybean seedlings at 10 days. The dry matter of roots also showed similar result of the shoot. Shoots had more N reduction than roots under the flooding. This N reduction was more pronounce in SBNK than in PSNK. Chlorophyll content of flooded soybeans showed decreasing or non-increasing tendency, and the reduction of chlorophyll content was more in SBNK than in PSNK from the flooding stress. Nitrate content of soybean seedlings with flooding stress showed decreasing tendency in shoot and root parts. Ammonium content, however, was higher in flooding stress compared to the non-flooding. Flooding caused a remarkable change in the AA (amino acid) composition and TAA (total amino acid) concentration in the leaves of soybean seedlings.

토양(土壤) 수분(水分)의 상태(狀態)가 대두(大豆)의 생육(生育) 및 근계발달(根系發達) 특성(特性)과 P, K 흡수(吸收)에 미치는 영향(影響) (Growth and Root Characteristics and P, K Uptake by Soybean under Different Soil Water Conditions)

  • 정영상;임형식;하상건;한성
    • 한국토양비료학회지
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    • 제25권1호
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    • pp.8-15
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    • 1992
  • 토양수분(土壤水分)의 상태(狀態)가 콩의 지하부(地上部) 및 뿌리의 생육(生育)과 P, K흡수(吸收)에 미치는 영향(影響)을 알아보기 위하여 강수(降水)가 차단(遮斷)된 비닐하우스 내(內)에서 지하수위(地下水位)를 20cm, 40cm 그리고 60cm로 조절(調節)된 상태(狀態)의 mini-rhyzotron에서 팔달콩을 재배(栽培)하였다. 이와 비교(比較)하기 위하여 1/2000a Wagner 포트에서 단장용수량(團場容水量)으로 유지(維持)된 적습상태(適濕狀態)와 유효수분(有效水分)의 80%가 소모(消耗)되어 토양수분(土壤水分)이 부족(不足)한 상태(狀態)를 비교(比較)하였다. 각 포트에 발아(發芽)된 콩을 심어 세 개씩의 개체(個體)를 재배(栽培)하여 재배(栽培) 37일(日) 째와 수확기(收穫期)에 식물체(植物體)의 지상부(地上部) 및 뿌리를 채취(採取)하여 분석(分析)하였다. 지상부(地上部) 및 뿌리의 생육(生育)은 토양수분(土壤水分)이 부족(不足)한 처리(處理)와 지하수위(地下水位)가 20cm로 높아 과습상태(過濕狀態)가 유지(維持)된 처리(處理)에서 제한(制限)되었다. 적습유지(適濕維持) 처리(處理)와 지하수위(地下水位) 및 60cm 유지(維持) 처리(處理) 간(間)에는 큰 차이(差異)가 없었다. 생육초기(生育初期)에 식물체(植物體) 지상부(地上部)의 P 및 K의 함량(含量)은 토양수분(土壤水分)이 부족(不足)한 처리(處理)에서 적습유지(適濕維持) 처리(處理)에서보다 높았으며, 후기(後期)에는 적습유지(適濕維持) 처리(處理)에서 높았다. 전체(全體) 흡수량(吸水量)은 건물중(乾物重)이 많은 적습유지(適濕維持) 처리(處理)에서 많았다. 뿌리의 건물중(乾物重)과 길이는 지상부(地上部)보다 더 크게 영향(影響)을 받았다. 토양수분(土壤水分)의 상태(狀態)의 차이(差異)에 의하여 뿌리의 형태해부학적(形態解副學的) 차이(差異)가 있음이 관찰(觀察)되었다. 적습유지(適濕維持) 처리(處理)에서는 정상적(正常的)인 치밀(緻密)한 cortex조직(組織)이 발달(發達)되었으나, 지하수위(地下水位)가 높아 토양수분(土壤水分)이 과다(過多)한 상태(狀態)에서 생육(生育)한 뿌리에서는 비정상적(非正常的)인 cortex조직(組織)에 aerenchyma가 형성(形成)되었다. Aerenchma는 내초(內梢)의 분열조직(分裂組織) 부근을 중심(中心)으로 형성(形成)되었다. 이 시험조건(試驗條件)에서 발견(發見)된 콩의 뿌리에서 aerenchyuma의 형성(形成)은 과다(過多)한 토양수분(土壤水分) 조건(條件)에 대한 콩 식물체(植物體)의 적응성(適應性)의 하나로 판단(判斷)되며, 우리나라에서 논뚝과 같이 토양수분(土壤水分)이 과다(過多)한 조건(條件)에서 콩의 재배(栽培)가 가능(可能)한 이유(理由) 중(中)의 하나로 보아진다.

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Sustainable Management of Irrigation Water Withdrawal in Major River Basins by Implementing the Irrigation Module of Community Land Model

  • Manas Ranjan Panda;Yeonjoo Kim
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.185-185
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    • 2023
  • Agricultural water demand is considered as the major sector of water withdrawal due to irrigation. The majority part of the global agricultural field depends on various irrigation techniques. Therefore, a timely and sufficient supply of water is the most important requirement for agriculture. Irrigation is implemented in different ways in various land surface models, it can be modeled empirically based on observed irrigation rates or by calculating water supply and demand. Certain models can also calculate the irrigation demand as per the soil water deficit. In these implementations, irrigation is typically applied uniformly over the irrigated land regardless of crop types or irrigation techniques. Whereas, the latest version of Community Land Model (CLM) in the Community Terrestrial Systems Model (CTSM) uses a global distribution map of irrigation with 64 crop functional types (CFTs) to simulate the irrigation water demand. It can estimate irrigation water withdrawal from different sources and the amount or the areas irrigated with different irrigation techniques. Hence, we set up the model for the simulation period of 16 years from 2000 to 2015 to analyze the global irrigation demand at a spatial resolution of 1.9° × 2.5°. The simulated irrigation water demand is evaluated with the available observation data from FAO AQUASTAT database at the country scale. With the evaluated model, this study aims to suggest new sustainable scenarios for the ratios of irrigation water withdrawal, high depending on the withdrawal sources e.g. surface water and groundwater. With such scenarios, the CFT maps are considered as the determining factor for selecting the areas where the crop pattern can be altered for a sustainable irrigation water management depending on the available withdrawal sources. Overall, our study demonstrate that the scenarios for the future sustainable water resources management in terms of irrigation water withdrawal from the both the surface water and groundwater sources may overcome the excessive stress on exploiting the groundwater in major river basins globally.

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몽골 반건조지에서 질소 시비가 백양나무와 비술나무 묘목의 생장 및 토양 특성에 미치는 영향 (Effects of Nitrogen Fertilization on Growth of Populus sibirica and Ulmus pumila Seedlings and Soil Properties in a Semi-Arid Area, Mongolia)

  • 장한나;한승현;김성준;박민지;안지애;강호덕;이명종;;손요환
    • 한국기후변화학회지
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    • 제6권3호
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    • pp.249-256
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    • 2015
  • This study was conducted to investigate the effects of different levels and types of nitrogen fertilizer on seedlings and soil chemical properties in a semi-arid area, Mongolia. 2-year-old Populus sibirica and 4-year-old Ulmus pumila seedlings were planted in May 2014. Six treatments with three levels of nitrogen (low-level: urea $5g\;tree^{-1}$; medium-level: urea $15g\;tree^{-1}$, ammonium sulfate $33g\;tree^{-1}$, urea $15g\;tree^{-1}$ with potassium phosphate $10g\;tree^{-1}$; high-level: urea $30g\;tree^{-1}$) were applied and for the medium-level of nitrogen, different types of fertilizer were treated. Survival rate, root collar diameter (RCD) growth rate, leaf nitrogen concentration of seedlings, and soil chemical properties were determined in August 2014. The seedling survival rate of both species decreased as the level of nitrogen increased. This result can be explained by water stress caused by nitrogen fertilization in arid regions. The RCD growth rate of P. sibirica was significantly decreased by the treatment of high-level of nitrogen due to excessive nitrogen fertilization, and was increased by the treatment of ammonium sulfate due to sulfur which might promote nitrogen uptake. The leaf nitrogen concentration of P. sibirica did not change by the treatment of low-level of nitrogen, and was increased by the treatment of medium-level of nitrogen. There were no significant differences in the RCD growth rate and the leaf nitrogen concentration of U. pumila among the six treatments. None of soil chemical properties was affected by nitrogen fertilization. Overall, the low-level of nitrogen showed no effect on seedlings and soil chemical properties, except on survival rate of U. pumila and the high-level of nitrogen was considered excessive fertilization. Continuous monitoring of medium-level nitrogen fertilization including the ammonium sulfate, which increased early growth of seedlings, would be needed to elucidate the effect of fertilization on seedling growth and soil properties in a semi-arid region.

대규모 지하굴착시 쐐기파괴로 인하여 발생하는 토압에 관한 연구 (A Study on the Rock Pressure Wedge Failure During Ground Excavation)

  • 이승호
    • 지질공학
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    • 제11권1호
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    • pp.1-11
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    • 2001
  • 우리나라 지질의 특성은 토층의 두께가 얇아서 보통 10m이상만 굴착해도 암반층이 나타나므로 대규모 지하굴착 공사시 암반층에서의 토압분포 산정방법이 절실하게 요구되고 있는 실정이다. 그러나, 암반층 암압산정시 기존의 경험식인 Terzaghi-Peck, Tschebotarioff식 등을 그대로 적용하는 것은 암반층의 점착력을 대부분 무시하게 되므로 실제 강도를 과소 평가하게 된다. 따라서 암반에서의 절리경사각, 절리면 전단강도, 지반 상재하중등을 고려한 쐐기형 블럭(Wedge Block)의 수평활동력을 산정하는것이 실제 암반층 토류구조물에 작용하는 암압과 근접할 것으로 판단된다. 본 연구에서는 뒷채움 흙이 점착력을 갖는 흙인 경우 쐐기형상으로 파괴가 일어난다고 가정하여 Coulomb 토압이론을 확장하여 힘의 평형 조건을 이용해 Prakash-Saran(1963)이론과 절리면의 전단강도 결정공식 $\tau$=c+$\sigma$tan $\Phi$를 적용해서 암반층에 작용하는 암압을 산정하였다. 산정된 이론식을 이용하여 절리면 충전물의 상태 변화에 따른 절리면 전단 강도와 절리경사각을 바꿔가면서 해석해 본 결과, 암반층은 자체의 점착력과 내부마찰각이 크므로 절리방향과 경사각이 굴착면을 향해 어떻게 정해지느냐에 따라서 토압이 작용하기도 하고 작용하지 않을 수도 있다. 본 연구에서 산정된 이론식은 향후 절리면 전단강도 산정시 필요한 강도정수, 절리면의 방위와 상태, 과잉측압, 동적하중, 지진을 비롯한 많은 지반정수(Parameter)들을 보다 엄밀히 산정하고, 특히 암반층에 작용하는 지하수위 효과등을 고려하여, 실제 현장에서 계측된 많은 자료와의 분석을 통해 그 적용성이 검토되어야 할 것으로 판단된다.

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S-Nitrosoglutathione (GSNO) Alleviates Lead Toxicity in Soybean by Modulating ROS, Antioxidants and Metal Related Transcripts

  • Methela Nusrat Jahan;Islam Mohammad Shafiqul;Da-Sol Lee;Youn-Ji Woo;Bong-Gyu Mun;Byung-Wook Yun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2023년도 춘계학술대회
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    • pp.105-105
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    • 2023
  • Heavy metals, including lead (Pb) toxicity, are increasing in soil and are considered toxic in small amounts. Pb contamination is mainly caused by industrialization - smelting, mining. Agricultural practices - sewage sludge, pests and urban practices - lead paint. It can seriously damage and threaten crop growth. Pb can adversely affect plant growth and development by affecting the photosystem, cell membrane integrity, and excessive production of reactive oxygen species (ROS) such as hydrogen peroxide (H2O2)andsuperoxide(O2.-). NO is produced via enzymatic and non-enzymatic antioxidants to scavenge ROS and lipid peroxidation substrates in terms of protecting cells from oxidative damage. Thus, NO improves ion homeostasis and confers resistance to metal stress. Our results here suggest that exogenous NO may aid in better growth under lead stress. These enhancements may be aided by NO's ability in sensing, signaling and stress tolerance in plants under heavy metal stress in combination with lead stress. Our results show that GSNO has a positive effect on soybean seedling growth in response to axillary pressure and that NO supplementation helps to reduce chlorophyll maturation and relative water content in leaves and roots following strong burst under lead stress. GSNO supplementation (200 µM and 100 µM) reduced compaction and approximated oxidative damage of MDA, proline and H2O2. Under plant tension, a distorted appearance was found in the relief of oxidative damage by ROS scavenging by GSNO application. In summary, modulation of these NO, PCS and prolongation of metal past reversing GSNO application confirms the detoxification of ROS induced by toxic metal rates in soybean. In summary, these NO, PCS and metal traditionally sustained rates of reverse GSNO application confirm the detoxification of ROS induced by toxic metal rates in soybean.

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반복삼축압축시험을 이용한 국내 모래지반의 액상화 거동 특성 비교 (Analysis of the Characteristics of Liquidization Behavior of Sand Ground in Korea Using Repeated Triaxial Compression Test)

  • 서혁;김대현
    • 지질공학
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    • 제31권4호
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    • pp.493-506
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    • 2021
  • 액상화 현상이란 지반이 포화된 느슨한 사질토 지반에 지진과 같은 동적하중이 급속히 작용할 때 과잉간극수압이 발생하고, 지반이 유효응력을 상실하고 액체화 되는 현상을 말한다. 액상화 평가를 위한 실내반복시험은 반복삼축압축시험과 반복전단시험을 통하여 확인이 가능하다. 이와 관련하여 본 연구에서는 반복삼축압축시험을 이용한 모래의 상대밀도와 입도분포에 따른 액상화 저항 강도를 확인하고자 하였고, 실험장비의 신뢰도 검증과 결과의 타당성을 확인하고자 기존의 선행연구와 대조하여 비교·분석하였다. 실험결과, 흙의 분류에 상관없이 상대밀도가 증가함에 따라 액상화 저항 강도가 높아짐을 확인하였고, 모래의 입도분포에 따른 액상화 저항강도는 SW에 가까운 SP시료의 액상화 저항강도가 상당히 높게 확인되었다. 또한 세립분 0% 대비 세립분 30%를 분석한 결과, 상대밀도 40~70%까지 증가함에 따라 액상화 저항강도가 5~20% 가까이 감소하였고, 국내 풍화토 지반이 주문진 표준사 대비 액상화 저항 강도가 세립분이 10%일 때는 30% 이상, 세립분이 30%일 때는 50% 이상 낮게 측정되었다.