• 제목/요약/키워드: Canopy9

검색결과 195건 처리시간 0.033초

Estimation of the relationship between below-ground root and above-ground canopy development by measuring dynamic change of soil ammonium-N concentration in rice

  • Fushimi, Erina;Yoshida, Hiroe;Tokida, Takeshi;Nakagawa, Hiroshi
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.183-183
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    • 2017
  • In the early part of rice growth, root volume primarily limits the amount of plant-accessible nitrogen (N). Therefore, knowledge of the root development is important for modeling N uptake of rice. The timing when the volume of rhizosphere cover the whole soil is also important to carry out timely top dressing. However, information about initial root expansion and associated N uptake is limited due to intrinsic technical difficulties in assessing below-ground processes. Some studies, however, showed a close relationship between below-ground root and above-ground leaf development, suggesting a possibility that above-ground attributes could serve as surrogates for the root processes. In this study, we investigated the relationship between below-ground and above-ground development of rice. Field experiments were conducted where we cultivated Koshihikari (a leading cultivar in Japan) for four different cropping schedules in 2012. In 2016, Gimbozu (HEG4) and three flowering time mutant lines of Gimbozu (X61 (se13), HS276 (ef7), DMG9 (se13, ef7)) were examined for a single season. Experiments were performed with three replications in a completely randomized design. We monitored ammonium-N concentration ([NH4+-N]) in soil solution by repeatedly taking samples from a porous tubing (10-cm long) vertically inserted at the most distant point from surrounding rice hills. Samples were taken in triplicate (= triplicate tubes) and every three days from transplanting in each experimental unit. For above-ground attributes, leaf area index (LAI) was measured in 2012, whereas soil coverage ratio was estimated by image processing in 2016. Results showed that [NH4+-N] increased gradually after transplanting and then rapidly decreased from a certain day. This distinct drop in [NH4+-N] informed us the timing at which the rice root system reached the point of porous tubing and thus essentially covered the whole soil volume. The LAI at the dropping point was about 0.43 regardless of the cropping schedules in 2012 experiment. In 2016, the coverage ratio at the N dropping point was within the range of 0.12 to 0.19 for four genotypes having different growth durations. In addition, the coverage ratios at seven weeks after the transplanting showed a good correspondence to LAI across the four genotypes. We therefore conclude that both LAI and coverage ratio may serve as robust indicators for root development and might be useful to estimate the timing when the root system fully cover the soil volume. Results obtained here will also contribute to develop models that can predict not only above-ground canopy development but also associated below-ground processes.

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Characteristics of accumulated soil carbon and soil respiration in temperate deciduous forest and alpine pastureland

  • Jeong, Seok-Hee;Eom, Ji-Young;Park, Ju-Yeon;Lee, Jae-Ho;Lee, Jae-Seok
    • Journal of Ecology and Environment
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    • 제42권1호
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    • pp.20-29
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    • 2018
  • Background: For various reasons such as agricultural and economical purposes, land-use changes are rapidly increasing not only in Korea but also in the world, leading to shifts in the characteristics of local carbon cycle. Therefore, in order to understand the large-scale ecosystem carbon cycle, it is necessary first to understand vegetation on this local scale. As a result, it is essential to comprehend change of the carbon balance attributed by the land-use changes. In this study, we attempt to understand accumulated soil carbon (ASC) and soil respiration (Rs) related to carbon cycle in two ecosystems, artificially turned forest into pastureland from forest and a native deciduous temperate forest, resulted from different land-use in the same area. Results: Rs were shown typical seasonal changes in the alpine pastureland (AP) and temperate deciduous forest (TDF). The annual average Rs was $160.5mg\;CO_2\;m^{-2}h^{-1}$ in the AP, but it was $405.1mg\;CO_2\;m^{-2}h^{-1}$ in the TDF, indicating that the Rs in the AP was lower about 54% than that in the TDF. Also, ASC in the AP was $124.49Mg\;C\;ha^{-1}$ from litter layer to 30-cm soil depth. The ASC was about $88.9Mg\;C\;ha^{-1}$, and it was 71.5% of that of the AP. The temperature factors in the AP was high about $4^{\circ}C$ on average compared to the TDF. In AP, it was observed high amount of sunlight entering near the soil surface which is related to high soil temperature is due to low canopy structure. This tendency is due to the smaller emission of organic carbon that is accumulated in the soil, which means a higher ASC in the AP compared to the TDF. Conclusions: The artificial transformation of natural ecosystems into different ecosystems is proceeding widely in the world as well as Korea. The change in land-use type is caused to make the different characteristics of carbon cycle and storage in same region. For evaluating and predicting the carbon cycle in the vegetation modified by the human activity, it is necessary to understand the carbon cycle and storage characteristics of natural ecosystems and converted ecosystems. In this study, we studied the characteristics of ecosystem carbon cycle using different forms in the same region. The land-use changes from a TDF to AP leads to changes in dominant vegetation. Removal of canopy increased light and temperature conditions and slightly decreased SMC during the growing season. Also, land-use change led to an increase of ASC and decrease of Rs in AP. In terms of ecosystem carbon sequestration, AP showed a greater amount of carbon stored in the soil due to sustained supply of above-ground liters and lower degradation rate (soil respiration) than TDF in the high mountains. This shows that TDF and AP do not have much difference in terms of storage and circulation of carbon because the amount of carbon in the forest biomass is stored in the soil in the AP.

대산.군산공단지역의 대기오염이 삼림식물군집에 미치는 영향 (The Effect on the Forest Plant Community by the Air Pollution around Daesan and Kunsan Industrial Complex Areas)

  • 이경재;조우;한봉호
    • 한국환경생태학회지
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    • 제9권1호
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    • pp.1-14
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    • 1995
  • 대산공단과 군산공단의 대기오염에 의한 삼림피해현상을 연구하기 위하여 조사구를 각각 5개, 3개씩 설치하였다(1개 조사구 당 면적 500$m^2$). 대산공단 삼림의 교목층 아교목층의 우점종은 소나무와 곰솔이었고 관목층에서는 진달래와 참나무류가 우점종이었다. 종다양도는 0.4859~0.9202 이었으며, 조사구간의 차이가 심하게 나타났다. 토양 pH는 4.67~5.12로 약산성이었다. 대산공단지역에서는 아직 대기오염에 의한 삼림의 피해가 심각하지 않은 것으로 나타났다. 군산공단삼림의 교목층 및 아교목층의 우점종은 곰솔과 소나무이었다. 종다양도는 0.8115~l.0983이었고 오염원과 가까운 조사구가 가장 낮게 나타났다. 토양 pH는 4.32~4.76으로 강산성이었다. 군산공단의 오염원 인근삼림은 울산공단과 유사한 피해양상으로 심각한 피해를 받고 있었다.

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Inorganic Nutrient Inputs from Precipitation, Throughfall, and Stemflow in Pinus densiflora and Quercus mongolica Stands in an Urban Forest Ecosystem

  • Kim, Kee Dae
    • 한국환경과학회지
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    • 제28권10호
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    • pp.813-829
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    • 2019
  • We measured the amount of precipitation, stemflow, and throughfall and concentrations of nine major inorganic nutrients ($H^+$, ${NH_4}^+$, $Ca^{2+}$, $Mg^{2+}$, $K^+$, $Na^+$, $Cl^-$, ${NO_3}^-$, and ${SO_4}^{2-}$) to investigate the nutrient inputs into soil from precipitation in Pinus densiflora and Quercus mongolica stands from September 2015 to August 2016. The precipitation inputs of $H^+$, ${NH_4}^+$, $Ca^{2+}$, $Mg^{2+}$, $K^+$, $Na^+$, $Cl^-$, ${NO_3}^-$, and ${SO_4}^{2-}$ into soil were 0.170, 15.124, 42.227, 19.218, 14.050, 15.887, 22.391, 5.431, and $129.440kg{\cdot}ha^{-1}{\cdot}yr^{-1}$, respectively. The P. densiflora stemflow inputs were 0.008, 0.784, 1.652, 1.044, 0.476, 0.651, 1.509, 0.278, and $9.098kg{\cdot}ha^{-1}{\cdot}yr^{-1}$, and those for Q. mongolica were 0.008, 0.684, 2.429, 2.417, 2.941, 1.398, 2.407, 0.436, and $13.504kg{\cdot}ha^{-1}{\cdot}yr^{-1}$, respectively. The P. densiflora throughfall inputs were 0.042, 21.518, 52.207 27.694, 20.060, 24.049, 37.229, 10.241, and $153.790kg{\cdot}ha^{-1}{\cdot}yr^{-1}$, and those for Q. mongolica were 0.032, 15.068, 42.834, 21.219, 20.294, 20.237, 24.288, 5.647, and $119.134kg{\cdot}ha^{-1}{\cdot}yr^{-1}$, respectively. Of the total throughfall flux (i.e., stemflow + throughfall flux) of the nine ions for the two species, ${SO_4}^{2-}$ had the greatest total throughfall flux and $H^+$ had the lowest. The net throughfall fluxes of the ions for the two species had various correlations with the precedent dry period, rainfall intensity, rainfall amount, and pH of precipitation. The soil pH under the Q. mongolica canopy (4.88) was higher than that under the P. densiflora canopy (4.34). The difference in the soil pH between the two stands was significant (P < 0.01), but the difference in soil pH by the distance from the stems of the two species was not (P > 0.01). This study shows the enrichments of inorganic nutrients by two representative urban forests in temperate regions and the roles of urban forests during rainfall events in a year.

항공 LiDAR 기반 Local Maxima를 이용한 산림지역 수목정보 추출 자동화 (Automatic Extraction of Tree Information in Forest Areas Using Local Maxima Based on Aerial LiDAR)

  • 최인하;남상관;김승엽;이동국
    • 대한원격탐사학회지
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    • 제39권5_4호
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    • pp.1155-1164
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    • 2023
  • 현재 국가산림자원조사(National Forest Inventory, NFI)는 인력에 의한 수목정보를 수집하고 있어 조사 범위와 시간의 한계가 따른다. 항공 Light Detection And Ranging (LiDAR) 및 항공 사진 등을 이용하여 넓은 지역의 수목 정보를 추출하기 위한 연구가 활발하게 진행되고 있으나 수목의 간격이 넓은 지역이거나 수목의 간격이 일정하게 배치된 지역을 대상으로 이루어지고 있어 우리나라 산림지역 특성을 반영하지 못하고 있다. 이에 본 연구에서는 항공 LiDAR를 이용하여 수치표면모델(Digital Surface Model, DSM), 수치표고모델(Digital Elevation Model, DEM), 수목높이모델(Canopy Height Model, CHM) 영상을 생성한 후 local maxima 기법을 통해 수고를 추출하고 산정식을 통해 흉고직경(Diameter at Breast Height, DBH)을 산정하는 방법론을 제안하였다. 제안한 방법론을 통해 추출한 수목의 검출 정확도는 매목지구별 각 88.46%, 86.14%, 84.31%로 나타났으며, 수고 값을 기반으로 산정한 DBH의 평균제곱근오차(Root Mean Squared Error, RMSE)가 5 cm 내외로 나타나 제안한 방법론의 활용 가능성을 확인하였다. 향후 다양한 유형의 산림에 대한 표준화 연구를 진행한다면 수작업으로 이루어지는 국가산림자원조사의 자동화 적용 범위를 확대할 수 있을 것으로 사료된다.

Comparison of Lambertian Model on Multi-Channel Algorithm for Estimating Land Surface Temperature Based on Remote Sensing Imagery

  • A Sediyo Adi Nugraha;Muhammad Kamal;Sigit Heru Murti;Wirastuti Widyatmanti
    • 대한원격탐사학회지
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    • 제40권4호
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    • pp.397-418
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    • 2024
  • The Land Surface Temperature (LST) is a crucial parameter in identifying drought. It is essential to identify how LST can increase its accuracy, particularly in mountainous and hill areas. Increasing the LST accuracy can be achieved by applying early data processing in the correction phase, specifically in the context of topographic correction on the Lambertian model. Empirical evidence has demonstrated that this particular stage effectively enhances the process of identifying objects, especially within areas that lack direct illumination. Therefore, this research aims to examine the application of the Lambertian model in estimating LST using the Multi-Channel Method (MCM) across various physiographic regions. Lambertian model is a method that utilizes Lambertian reflectance and specifically addresses the radiance value obtained from Sun-Canopy-Sensor(SCS) and Cosine Correction measurements. Applying topographical adjustment to the LST outcome results in a notable augmentation in the dispersion of LST values. Nevertheless, the area physiography is also significant as the plains terrain tends to have an extreme LST value of ≥ 350 K. In mountainous and hilly terrains, the LST value often falls within the range of 310-325 K. The absence of topographic correction in LST results in varying values: 22 K for the plains area, 12-21 K for hilly and mountainous terrain, and 7-9 K for both plains and mountainous terrains. Furthermore, validation results indicate that employing the Lambertian model with SCS and Cosine Correction methods yields superior outcomes compared to processing without the Lambertian model, particularly in hilly and mountainous terrain. Conversely, in plain areas, the Lambertian model's application proves suboptimal. Additionally, the relationship between physiography and LST derived using the Lambertian model shows a high average R2 value of 0.99. The lowest errors(K) and root mean square error values, approximately ±2 K and 0.54, respectively, were achieved using the Lambertian model with the SCS method. Based on the findings, this research concluded that the Lambertian model could increase LST values. These corrected values are often higher than the LST values obtained without the Lambertian model.

소양강댐 건설에 따른 주변 식생의 변화 (Change of the Vegetation Due to Soyanggang Dam Construction)

  • 최호;박필선;김재근;서심은
    • 한국습지학회지
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    • 제12권3호
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    • pp.1-13
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    • 2010
  • 댐 건설이 주변 환경에 미치는 영향에 대해서는 주로 기후와 농산물에 초점이 맞추어져 연구되어왔다. 본 연구는 댐 건설에 따른 주변 식생의 변화를 알아보기 위하여 조사 장소를 준공 후 33년이 지났으며, 저수용량이 우리나라에서 가장 큰 소양강댐으로 선택하였다. 소양호의 범람지, 범람지보다 고도가 5m 높은 범람지 위쪽, 그리고 호수로부터 능선을 사이에 두고 3km이상 떨어져 있는 대조구에서 방형구법을 통한 식생과 토양함수량 조사가 이루어졌다. 관목층~교목층의 평균상대우점치는 범람지는 버드나무(87.9%)가, 범람지 위쪽과 대조구는 신갈나무(38.9%, 40.4%)가 가장 높았으며, 초본층의 상대우점치는 범람지에서는 사철쑥(34.2%)이, 범람지 위쪽과 대조구에서는 주름조개풀(19.4%, 24.6%)이 가장 높았다. Shannon-Wiener 종다양도 지수는 관목층~교목층에서 범람지(0.26)가 범람지 위쪽(2.34)과 대조구(2.23)보다 낮았으며(p<.01), 초본층에서는 3 모둠간에 유의한 차이가 없었다. S${\o}$rensen의 군집유사도 지수는 범람지와 범람지 위쪽, 범람지와 대조구에서 낮았으며, 범람지 위쪽과 대조구는 비교적 높았다. 교목과 아교목의 흉고직경별 개체수는 범람지에서 5~10cm인 버드나무(240/ha)가, 범람지 위쪽과 대조구는 모두 15~20cm인 참나무속 식물(400/ha, 466/ha)이 가장 높은 밀도를 보였다. 치수는 범람지에서 소나무(7,040/ha)가, 범람지 위쪽과 대조구는 모두 참나무속 식물(720/ha, 400/ha)이 가장 높은 밀도로 출현하였다. 토양함수량은 범람지(6.28%)가 범람지 위쪽(11.13%)과 대조구(10.14%)에 비하여 낮았다(p<.01). 조사 결과, 소양강 댐 건설로 인해 범람지는 식생이 변하였지만, 그 바로 위쪽에서는 식생의 변화가 나타나지 않았다.

여름철 공원 수림지 가장자리의 온열환경 기울기 변화 - 하동송림과 함양상림을 대상으로 - (The Gradient Variation of Thermal Environments on the Park Woodland Edge in Summer - A Study of Hadongsongrim and Hamyangsangrim -)

  • 류남형;이춘석
    • 한국조경학회지
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    • 제43권6호
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    • pp.73-85
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    • 2015
  • 본 연구는 공원 수림지 경계로부터 내부로의 거리에 따른 수림지 가장자리의 온열환경에 대한 효과를 규명하고자 하였다. 이를 위해 전형적인 여름 날씨를 나타낸 2015년 7월 31일부터 8월 5일까지 6일간 소도읍에 소재하고 있는 장령림인 하동송림의 소나무 순림(수령: $100{\pm}33$년, 울폐도: 75%, 수고: $12.8{\pm}2.7m$, 지하고: $9.8{\pm}2.7m$, N $35^{\circ}03^{\prime}34.7^{{\prime}{\prime}}$, E $127^{\circ}44^{\prime}43.3^{{\prime}{\prime}}$, 표고 7~10m) 남측 가장자리와 함양상림의 졸참나무-개서어나무 군락(수령: 졸참나무 58~123년, 개서어나무 102~125년, 울폐도: 96%, 수고: 교목층 $18.6{\pm}2.3m$, 아교목층 $5.9{\pm}3.2m$, 관목층 $0.5{\pm}0.5m$, 지하고는 교목층 $11.0{\pm}3.2m$, 아교목층 $3.1{\pm}1.7m$, 관목층 $0.2{\pm}0.3m$, 초본층의 피도 60%, N $35^{\circ}31^{\prime}28.1^{{\prime}{\prime}}$, E $127^{\circ}43^{\prime}09.8^{{\prime}{\prime}}$, 표고 170~180m) 동측 가장자리의 경계로부터 내부로의 거리별 기온, 상대습도, 풍속, MRT나 UTCI를 측정 및 분석하였다. 그리고 비선형 시그모이드 함수를 적용하여 수림지 가장자리가 가지는 경계로부터의 거리에 따른 기온, 상대습도, 풍속, MRT, UTCI의 저감효과를 구명하였다. 깊이의 결과 값이 -를 나타내는 것은 수림지의 바깥을 의미한다. 1) 최고 기온, 최저 상대습도, 최고 기온시 풍속에 대한 수림지 가장자리 효과가 미치는 깊이는 상록침엽수림인 하동송림의 경우는 수림지의 경계로부터 각각 $12.7{\pm}4.9m$, $15.8{\pm}9.8m$ 그리고 $23.8{\pm}26.2m$였으며, 낙엽활엽수림인 함양상림의 경우는 수림지의 경계로부터 각각 $3.7{\pm}2.2m$, $4.9{\pm}4.4m$ 그리고 $2.6{\pm}7.8m$였다. 2) 이용자가 체감하는 더위에 직접적인 영향을 주는 인체가 흡수한 온열환경에 근거한 최고 MRT와 최고 UTCI(체감더위지수)에 대한 수림지 가장자리 효과가 미치는 깊이는 하동송림의 경우는 수림지의 경계로부터 각각 $7.1{\pm}1.7m$$4.3{\pm}4.6m$였으며, 함양상림의 경우는 수림지의 경계로부터 각각 $5.8{\pm}4.9m$$3.5{\pm}4.1m$였다. 3) 미기후 즉 온열환경 요소인 기온, 상대습도, 풍속 그리고 인체가 흡수한 온열환경에 근거한 주간(10:00~17:00) MRT와 UTCI에 대한 수림지 가장자리의 효과는 식생밀도가 상대적으로 높고, 하층식생이 발달한 함양상림이 식생밀도가 낮고, 하층식생의 거의 없는 하동송림에 비해 높게 나타났다. 따라서 체감 더위지수인 UTCI의 10분 평균값이 최댓값을 나타낸 시점을 기준으로 하면, 수림지 경계로부터 내부로의 거리가 하동송림의 경우는 $4.3{\pm}4.6m$, 함양상림의 경우는 $3.5{\pm}4.1m$에서 온열환경 기울기의 변화가 비교적 완만해지므로, 수림지 계획시 이용객의 온열환경을 고려한 완충대의 적정 폭은 하동송림의 경우는 4.3~8.9m, 함양상림의 경우는 3.5~7.6m이다. 또한 온열환경에 대한 완충효과를 극대화하기 위해서, 수림지 완충대 식생의 수직구조는 다층 구조의 수관과 닫힌 가장자리로 하여야 한다.

Evaluation of Pheromone Trap Settings for Managing Brinjal Shoot and Fruit Borer (Leucinodes orbonalis) in Brinjal

  • Rahman, Mizanur;Ali, Razzab;Islam, Mohammad Saiful;Wang, Myeong-Hyeon
    • 한국자원식물학회지
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    • 제22권3호
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    • pp.220-226
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    • 2009
  • An experiment was conducted to find out among 9 trap settings the most appropriate site for trap placement in the Brinjal field based on Brinjal shoot and fruit borer trapping efficiency, shoot and fruit infestation, healthy and total fruit yield, and BCR. The efficiency of different trap setting positions varied significantly. Trapping efficiency observed the $T_{1}$ ensured the minimum shoot and fruit infestation 10.02% and 20.95%, respectively, minimum infested fruit yield (4.75 ton/ha), maximum healthy and total fruit yield (26.72 and 31.47 ton/ha) and the maximum BCR (1.70), which was followed by $T_{2}$ and $T_{4}$. The minimum trapping efficiency of $T_{9}$ treatment led the maximum shoot and fruit infestation 13.89 and 29.26%, respectively, maximum infested fruit yield (7.59 ton/ha), minimum healthy and total fruit yield (17.74 and 25.32 ton/ha) and the minimum BCR (1.00). A correlation between the number of BSFB adults trapped from the most efficient trap setting and the shoot and fruit infestation recorded and found a linear positive correlation between number of BSFB adults trapped and shoot infestation (r = 0.781) and fruit infestation (r = 0.810). The effect of pheromone trap positions observed in this study may be attributed to the easy accessibility of the lures and traps, when they are placed at the canopy.

콩 품종 교호재배가 광합성능력 및 수량에 미치는 영향 (Effects of Alternative Planting of Cultivars on Photosynthetic Ability and Yield in Soybean)

  • 김익제;손석용;유인모;이기열;윤태;이철희;박성규
    • 한국작물학회지
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    • 제50권6호
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    • pp.411-414
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    • 2005
  • 초관높이와 도복저항성 차이가 있는 콩 두 품종의 교호재배가 광합성능력과 수량에 미치는 영향을 분석한 결과는 다음과 같았다. 1. 초관의 높이는 황금콩 1열+태광콩 1열에서 가장 높았으며, 도복은 황금콩 1열+태광콩 1열 및 황금콩 1열+태광콩 2열에서 경감 효과가 가장 컸다. 2. 교호재배에서 정엽 및 제 9본엽의 광합성능력은 태광콩열이 단일재배에 비하여 높았으며, 황금콩 정엽의 광합성능력은 낮았다. 3.수량은 황금콩 1열+태광콩 1열이 황금콩 단일재배에 비하여 $17\%$, 태광콩 단일재배에 비하여는 $8\%$증수되었다.