• 제목/요약/키워드: transpiration rate.

검색결과 204건 처리시간 0.029초

Post Infection Physiobiochemical Alteration at Various Intensities of Leaf spot (Myrothecium roridum) in Mulberry

  • Kumar, P.M.Pratheesh;Qadri, S.M.H.;Pal, S.C.;Mishra, A.K.;Urs, S.Raje
    • International Journal of Industrial Entomology and Biomaterials
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    • 제7권2호
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    • pp.175-180
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    • 2003
  • Changes in biochemical constituents and physiological alteration were studied in various intensities (1-5%, 6-15%, 16-30%, 31-50% and > 50%) of leaf spot (Myrothecium roridum) on mulberry leaves and compared with healthy leaves. Chlorophyll, total soluble sugar and total protein were decreased (P < 0.01), but total phenol increased due to pathogen infection. Changes in biochemical constituents showed significant correlation with intensity of disease. Chlorophyll ($r^2$= 0.92), and protein (($r^2$= 0.83) possessed negative while phenol (($r^2$= 0.61) possessed positive correlation. Photosynthetic rate, transpiration rate, stomatal conductance, moisture content (%) and physiological water use efficiency (pWUE) were decreased, but stomatal resistance increased in the infected leaves. Physiological parameters also possessed significant (P < 0.01) correlation with disease intensity. Photosynthetic rate (($r^2$= 0.96), transpiration rate ($r^2$=0.88), stomatal conductance (($r^2$= = 0.65), physiological water use efficiency (($r^2$= 0.88) and moisture content (r = 0.85) were negatively but stomatal resistance (($r^2$= 0.75) was positively correlated to disease intensities.

인삼(人蔘)잎의 위조(萎凋)와 증산특성(蒸散特性) (Characteristics in wilting and transpiration of Panax ginseng leaves)

  • 박훈;윤태헌;배효원
    • 한국토양비료학회지
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    • 제12권2호
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    • pp.77-82
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    • 1979
  • 대두엽(大豆葉)과 비교(比較)하여 인삼절제엽(人蔘切除葉)의 위조(萎凋) 증산(蒸散) 특성(特性)을 온도별로 그리고 엽절편(葉切片)의 water potential 및 흡수특성(吸水特性)을 조사(調査)하였다. 1. 인삼엽(人蔘葉)은 대두엽(大豆葉)에 비(比)하여 얇고 초기수분함량(初期水分含量)이 크지만 탈수속도(脫水速度)는 적으면서도 영구위조점(永久萎凋点)의 수분함량(水分含量)이 높아서 (초기수분함량(初期水分含量)의 약(約) 80%, 대두(大豆)는 50%) 영구위조점(永久萎凋点)에 이르는 시간(時間)이 대두(大豆)의 반(半)에 불과(不過)하며 고온에서 더욱 단축(短縮)되었다. 2. 인삼엽(人蔘葉)은 대두엽(大豆葉)보다 증산량(蒸散量)이 적었으며 (약(約)1/4) $23^{\circ}C$보다 $33^{\circ}C$의 증산량(蒸散量)이 적어 고온에 대한 내성(耐性)이 적은 것으로 나타났다. 3. 인삼엽(人蔘葉)은 water free space가 적으나 흡수속도(吸水速度)는 (시간당 단위생중당 흡수량(吸水量)) 큰 차이(差異)가 없었고 수분결차(水分缺差)가 컸다. 4. 액침법(液浸法)에 의한 water potential은 대두엽(大豆葉)보다 컸다. 5. 이상(以上)의 결과(結果)는 인삼(人蔘)이 대두(大豆)에 비하여 수분부족(水分不足)에 약(弱)한 것을 나타내며 여름 고온에 의한 위조피해(萎凋被害)가 클 것으로 보였으며 전엽기간(展葉期間)에 수광량(受光量)을 높이고 비교적(比較的) 온도를 높게 경과하여 기공수를 증대시키어 증발산기능을 증대시켜 고온 내성(耐性)으로 키워야 하며 근권(根圈)엔 산소(酸素)가 부족(不足)되지 않는 한 수분(水分)을 충분(充分)히 공급(供給)하는 것이 좋을 것으로 보였다.

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배양액내 Ca : K 비율이 상추의 광합성, 증산, 생육 및 tipburn 발생에 미치는 영향 (Effects of Ca : K Ratios in Nutrient Solution on Photosynthesis, Transpiration, Growth and Incidence of Tipburn in Butterhead and Leaf Lettuce.)

  • 배종향;이용범;최기영
    • 생물환경조절학회지
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    • 제8권1호
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    • pp.42-48
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    • 1999
  • 반결구 상추 ‘Omega’와 잎상추 ‘Grand Rapids’의 m 재배에서 배양액내 Ca : K 비율이 광합성, 증산, 생육 및 tipburn 발생에 미치는 영향을 밝히고자 실험을 수행하였다. 반결구 상추와 잎상추 두 종 모두 광합성은 Ca : K 비율 3:6과 4.5:4.5에서 높았으며, 기공 저항은 잎상추가 반결구 상추보다 낮았다. 증산율은 3:6의 Ca : K 비율에서 두 종 모두 가장 높았으며, 잎상추의 증산율이 반결구 상추보다 높아 종간 차이를 보였다. 엽위에 따른 증산율은 완전 전개잎에 비해 미숙잎에서 낮았는데, 이것은 미숙잎에서 tipburn 발생이 많은 것과 깊은 관계가 있는 것으로 보였다. Ca 결핍구인 Ca : K 비율 0:9처리는 두 종 모두 극단적인 생육 저하와 함께 tipburn이 100% 발생하였으며, 반결구 상추는 Ca : K 1.5:7.5 처리에서도 tipburn이 25% 발생하였으나, 잎상추에서는 나타나지 않았다 작물 생육은 Ca 결핍구를 제외한 두 종 모두 Ca : K 3:6 처리에서 가장 높았다. 배양액의 Ca과 K의 불균형은 기공저항과 확산저항을 높여 광합성과 증산의 감소를 유도함으로써 Ca 이동에 영향을 미친 것으로 보였다.

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Uptake and Phytotoxicity of TNT in Onion Plant

  • Kim, Jaisoo;Yavuz Corapcioglu;Malcolm C. Drew
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.102-106
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    • 2003
  • The uptake of $^{14}C$-2, 4, 6-trinitrotoluene (TNT) in hydroponics was studied using onion plants. Of the total TNT mass (5 $\mu\textrm{M}$ concentration), 75% was in the roots, 4.4% in the leaves, and 21% in the external solution at 2 days, The percent distribution in roots was lower with higher concentration in the external solution, but in leaves it was comparable at all concentrations (5-500 $\mu\textrm{M}$). Root concentration factor (RCF) in hydroponics was more than 85 in constant hydroponic experiment (CHE) at 5 $\mu\textrm{M}$ and 150 in non-constant hydroponic experiment (NHE) at 5 $\mu\textrm{M}$. The maximum RCF values in the hydroponic system were greater with lower solution concentration. Transpiration stream concentration factor (TSCF) values in the present study (NHE only: 0.31-0.56) were relatively similar to the values with predicted values (0.43-0.78), increasing with higher external TNT concentration. For phytotoxicity tested in hydroponics and wet paper method, 500 $\mu\textrm{M}$ was toxic to onion plant, 50 $\mu\textrm{M}$ was non-toxic for plant growth but limited the transpiration rate, and 5 $\mu\textrm{M}$ was non-toxic as control.

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수목(樹木)의 수분특성(水分特性)에 관(關)한 생리(生理)·생태학적(生態學的) 해석(解析)(IX) - Heat pulse법(法)을 이용(利用)한 신갈나무임분(林分)의 증산속도(蒸散速度) 측정(測定) - (Ecophysiological Interpretations on the Water Relations Parameters of Trees(IX) - Measurement of the Transpiration Rate by the Heat Pulse Method in a Quercus mongolica Stand -)

  • 한상섭;김선희
    • 한국산림과학회지
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    • 제85권2호
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    • pp.288-299
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    • 1996
  • 본 연구는 heat pulse법을 이용하여 신갈나무 장령림 임분(林分)의 증산량(蒸散量)을 알기 위한 기초연구로서, 신갈나무 입목에 있어서 일사량(日射量), 온도(溫度), 습도(濕度)(대기포차(大氣飽差)) 등의 변화(變化)에 따른 heat pulse 속도(速度)의 일변화와 계절변화, 방위별 heat pulse 속도(速度)의 차이, 변재부에 있어 깊이별 heat pulse 속도(速度)의 차이, 우세목(優勢木), 준우세목(準優勢木), 열세목(劣勢木)의 heat pulse 속도(速度)의 차이, 엽(葉)의 수분포텐셜과 heat pulse 속도(速度)와의 관계, 줄기에 있어 수분상승의 방향, 그리고, heat pulse법으로 측정한 단목(單木)과 임분(林分)의 일일(一日), 월별(月別), 년간(年間) 증산량(蒸散量) 등을 측정고찰하였다. 얻어진 결과를 요약하면 다음과 같다. 1. 신갈나무의 heat pulse 속도(速度)(V)와 수액유속(樹液流速)(SFR)과의 관계는 SFR=1.37V였다. 2. 우세목(優勢木), 준우세목(準優勢木), 열세목(劣勢木)의 heat pulse 속도(速度)를 비교하면, 수액유속(樹液流速)은 우세목(優勢木)이 가장 높고, 준우세목(準優勢木), 열세목(劣勢木) 순위였다. Heat pulse 속도(速度)는 일사량(日射量), 온도(溫度), 대기포차(大氣飽差) 등의 크기에 따라 일변화하였다. 3. Heat pulse 속도(速度)와 엽(葉)의 수분포텐셜은 거의 비슷한 일변화를 나타냈다. 4. Heat pulse 속도(速度)의 계절변화는 7월에 평균 2.9cm/hr로 가장 낮았고, 5월이 평균 4.0cm/hr로 가장 높게 나타났다. 5. 줄기에 있어서 heat pulse 속도(速度)의 차이는 북측이 가장 높았고, 서측이 그 다음 순이었으며, 남측과 동측은 큰 차이없이 가장 낮은 값을 나타냈다. 6. 변재부에 있어서 깊이별 heat pulse 속도(速度)의 차이는 수피로부터 0.5cm 깊이에서 가장 높고, 다음 1.0cm, 1.5cm 순으로 나타났다. 7. 줄기에 있어 수분이동방향(水分移動方向)은 4본 모두 부분적(部分的) 수직상승(垂直上昇)(sectorial straight ascent)을 나타내고 있었다. 8. 수액유량(樹液流量)(SF)은 SF=1.37AV식으로 나타났고, 이 식으로 구한 수액유량(樹液流量)은 우세목(優勢木)이 준우세목(準優勢木)과 열세목(劣勢木)보다 현저히 높았다. 9. 1ha의 임분(林分)에 대한 1일의 증산량(蒸散量)의 구성비율(構成比率)은 낮이 72%, 밤이 28%였고, 증산량(蒸散量)은 약 5.6ton/ha/day이었다. 10. 1ha의 월별(月別) 증산량(蒸散量)은 5월이 168ton/ha/month으로 가장 많았고, 7월이 125ton/ha/month로 가장 낮았다. 또 1 ha의 년간(年間) 증산량(蒸散量)은 839ton/ha/yr이었다.

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Effects of the ectomycorrhizal fungus Pisolithus tinctorius and Cd on physiological properties and Cd uptake by hybrid poplar Populus alba × glandulosa

  • Han, Sim-Hee;Kim, Du-Hyun;Lee, Jae-Cheon
    • Journal of Ecology and Environment
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    • 제34권4호
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    • pp.393-400
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    • 2011
  • The effects of the ectomycorrhizal fungus Pisolithus tinctorius and cadmium (Cd) on physiological properties and Cd uptake by Populus alba ${\times}$ glandulosa was investigated under greenhouse conditions. Cd treatment decreased the photosynthetic rate ($P_N$) of both non-mycorrhizal (NM) plants (16.3%) and ectomycorrhizal (ECM) plants (11.5%). In addition, the reduction in total dry weight by Cd treatment was greater in ECM plants (24.3%) than that in NM plants (17.6%). Mycorrhizal infection increased the $P_N$ and transpiration rate in both control and Cd-treated plants. Cd treatment increased superoxide dismutase (SOD) activity and decreased glutathione reductase activity, and the increase of SOD activity by Cd treatment was greater in NM plants (40.3%) than that in ECM plants (3.7%). Thiol content increased in both NM and ECM plants treated with Cd solution, and the increase in thiol content in NM plants (43.9%) was greater than that of ECM plants (15.6%). Cd uptake in the leaves, stems, and roots of ECM plants was 69.9%, 167.2% and 72.8%, respectively, higher than in the NM plants. However, the increase in Cd uptake ability of ECM plants resulted in a reduction in dry weight.

광도, 온도 및 $CO_2$의 농도가 야콘의 광합성에 미치는 영향 (Effect of Light Intensity, Temperature and $CO_2$ Concentration on Photosynthesis in Yacon(Polymnia sonchifolia Poepp.& Endl.))

  • 이강수;최선영
    • 한국약용작물학회지
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    • 제9권3호
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    • pp.232-237
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    • 2001
  • 본 연구는 야콘의 광합성 효율증진을 위한 기상환경 조건을 규명하여 재배적지의 선정과 재배관리에 대한 기초적 자료를 제공하고자 광도와 온도, 그리고 $CO_2$의 농도에 대한 광합성과 증산량을 조사하였다. 광 보상점은 ${58\;{\mu}mol\;m^{-2}\;s^{-1}}$이었고, 포화점은 ${1708\;{\mu}mol\;m^{-2}\;s^{-1}}$이었다, 증산량은 광도가 증가할수록 높아져 광도 ${2193\;{\mu}mol\;m^{-2}\;s^{-1}}$에서 약 4 mmol ${m^{-2}\;s^{-1}}$간에 이르렀다. 광합성의 최적온도는 ${24^{\circ}C}$였으며, 온도의 변화에 의하여 증산량이 4 mmol ${m^{-2}\;s^{-1}}$에서 8 mmol ${m^{-2}\;s^{-1}}$까지 증가하였을 때 광합성은 오히려 감소하는 경향이었다. 이산화탄소 보상점은 63 mol mol ${m^{-2}\;s^{-1}}$이었고, 포화점은 1155 vpm이었으며, 이산화탄소 농도가 350vpm에서 1300vpm까지 증가함에 따라 광포화점은 높아졌다.

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수도권 주변 소나무의 조직피해와 생장억제 (histological Damage and Growth Inhibition of Pinus densiflora around the Metropolitan Area of Seoul)

  • 이창석;길지현;유영한
    • The Korean Journal of Ecology
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    • 제21권2호
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    • pp.125-131
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    • 1998
  • Histological damage and growth inhibition of Pinus densiflora were analysed in different areas around the Metropolitan area of Seoul urban (heavily polluted), suburban (lightly polluted), and rural(unpolluted) areas. Soil properties of each area were also investigated. Contact angles of water droplet on needle leaves growing in polluted areas were lower than that in unpolluted area. Transpiration rates of needle leaves growing in polluted areas were more rapid than that in unpolluted area. These results represented that needle leaves growing in polluted areas were more susceptible to water deficit than that growing in unpolluted area was. Growths of annual ring of Pinus densiflora growing in polluted areas were lower than that in unpolluted area. On the other hand, soil pH in polluted areas was lower than that in unpolluted area. That is, the former was more acidified than that the latter was. Ca and Mg contents in polluted areas were lower than that in unpolluted area, while Al contents in polluted areas were higher than that in unpolluted area. These soil properties revealed that the effects of acid precipitates in urban and suburban areas were severer than that in rural area.

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제주도 자생 참나무과 식물의 대기 중 CO2 흡수 능력의 비교분석 (Analysis of CO2 Fixation Capacity in Leaves of Ten Species in the Family Fagaceae)

  • 오순자;신창훈;김철수;강희석;강경민;양윤희;고석찬
    • 한국환경과학회지
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    • 제21권1호
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    • pp.89-96
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    • 2012
  • The rate of photosynthesis (A) of leaves from 10 plant species (6 evergreen and 4 deciduous) of the family Fagaceae was measured using a portable photosynthesis analyzer, to examine which species take up $CO_2$ most efficiently. Of the evergreen species, the photosynthetic rate of Castanopsis cuspidata var. sieboldii was highest, and remained above 82.1~106.4 ${\mu}mol\;kg^{-1}s^{-1}$ from July to November. Of the deciduous species, the photosynthetic rate of Quercus acutissima was higher than that of the other three species, and remained high at 83.5~116.6 ${\mu}mol\;kg^{-1}s^{-1}$ from September to November. The photosynthetic rate of the 10 species was positively correlated with stomatal conductance (gs) and transpiration rate (E). However, there was no correlation between photosynthetic rate and intercellular $CO_2$ concentration ($C_i$), although there was a positive correlation just in three species (Q. gilva, Q. acutissima and Q. glauca). These results suggest that the $CO_2$ fixation capacity of C. cuspidata var. sieboldii, an evergreen species, and Q. acutissima, a deciduous species, is significantly higher than that of the other species examined, and that photosynthesis is regulated by both stomatal conductance and transpiration. Therefore, C. cuspidata var. sieboldii and Q. acutissima may be valuable for the evaluation of carbon uptake in urban green spaces as well as in afforested areas.

Paclobutrazol 처리가 Perennial Ryegrass의 생육 및 고온과 건조 Stress에 미치는 영향 (Effect of Paclobutrazol on Growth, and High Temperature and Drought Stress in Perennial Ryegrass)

  • 김태일;구자형;원동찬
    • 아시안잔디학회지
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    • 제3권1호
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    • pp.24-33
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    • 1989
  • This study was conducted to investigate the effect of paclobutrazol [(2 RS , 3 RS )1-(4- chlor-ophenyl )-4, 4- dimethyl -2- (1, 2, 4- triazol -1- yl )- pentan -3-01] on the tolerance of hi-gh temperature and drought stress as related to growth retardation , iranspiration rate , soil water content , nitrogen level and photosynthetic rate in perennial ryegrass ( Loliurn perenne L . ' Omega H , ). Plants were given a 30 ml soil drench of paclohutrazol at the concentrations of 0, 0.01, 0.1, 1.0, 10.. 0, mg / 6 .5cm- diameter pot . The rcsults were as follows : 1. Increasing concentrations of paclohutrazul reduced plant height , leaf area , fresh weight and dry weight , hut increased chlorophyll content per unit area . The number of tillers and leaf width were not affected hy the paclobutrazol concentrations . 2. The proper concentration of paclohatrazol on growth retardation in perennial ryegrass was about I mq /pot , hut leaf deformity and severe growth retardation were shown at high concentration of 10 mq / pot . 3. Perennial ryegrasses grown at 30˚C were shown significantly short plant height and low leaf nitrogen level compared with those grown at 20˚C. Increasing concentrations of paclohutrazol at 20˚C increased nitrogen level hut it could not increase nitrogen level at 30˚C . 4. During the drought stress , increasing temperatures significantly promoted transpiration rate and wilting time . It took about 5 days at 20˚C and 3 days at 30˚C to reach wilting time of leaves from water stress treatment . Soil water contents at wilting time of non-treated controls were averaged 6. 871% at 20˚C and 6. 17% at 30˚C 5. Paclohutrazol reduced transpiration rate at high temperature and drought stress . Wilting appeared at the lower water content of soil according to increasing concentrations of paclobutrazol at 30˚C hut there were no differences among concentrations of at 20˚C. 6.Paclohutrazol treatment at 1 rag /pot reduced injury rate of leaves from 67.1 % and 100 % in control plants to 15.7% and 80% at 20˚C and 3010, respectively. 7. Photosynthetic rate per unit area was significantly reduced at high temperature . Paclohutrazol stimulated photosynthetic rate with increase of concentrations at 20˚C but there was no increasing effect at 30˚C.

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