• 제목/요약/키워드: maximum photosynthesis rate

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생육 초기의 저온·저일조가 고추의 수량과 품질에 미치는 영향 (Effects of Low Air Temperature and Low Radiation Conditions on Yield and Quality of Hot Pepper at the Early Growth Stage)

  • 위승환;이희주;유인호;장윤아;여경환;안세웅;이진형;김성겸
    • 한국환경과학회지
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    • 제29권10호
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    • pp.989-996
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    • 2020
  • This study was conducted to determine the effect of low temperature and low radiation conditions on the yield and quality of hot pepper at an early growth stage in Korea. In plastic greenhouses, low temperature, low temperature with covered shading treatments were set 17 to 42 days after transplanting. The pepper growing degree days decreased by 5.5% due to the low temperature during the treatment period. Radiation decreased by 74.7% due to the covered shading. After commencing treatments, pepper plant growth decreased with low temperature and low radiation. Analysis of the yield showed that the first harvest was delayed by low radiation. The cumulative yields of 119 days after transplanting were 1,956, 2,171, and 2,018 g/㎡ for control, low temperature, and low temperature with low radiation respectively. Capsaicin and dihydrocapsaicin concentrations in pepper fruit decreased with low temperature and low radiation. To investigate the photosynthetic characteristics according to the treatment, the carbon dioxide reaction curve was analyzed using the biochemical model of photosynthesis. Results showed that the maximum photosynthetic rate, Vcmax (maximum carboxylation rate), J (electric transportation rate), and TPU (triose phosphate utilization) decreased at low temperatures; the maximum photosynthetic rate, J, and gm (dark respiration rate) were reduced by shading. These results indicate that low temperature and low radiation can retard early growth, yield, and quality, but these can also be recovered 119 days after planting. Based on the results, the yield and quality of pepper can recover from abiotic stresses with proper cultivation.

Effects of strong shading on growth and yield in sweet potato (Ipomoea batatas L. LAMK.)

  • Shin, Jong Moo;Song, Seon Hwa;Park, Chan Young;Lee, Hyeon Young;Shim, Sang In
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.241-241
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    • 2017
  • Sweet potatoes (Ipomoea batatas (L.) LAMK.,) have been cultivated in Central and South America for about 2000 years and are now grown mainly in Asia and South America. Sweet potatoes are annual in the temperate region, but are classified as perennial in the tropical region. In 2000, the cultivation area of sweet potatoes decreased to about 16,000 ha in 2000, but the cultivation area increased slightly in recent 20,000 ha in Korea. Sweet potatoes do not show higher maximum dry matter production of 120 ~ 150g per plant, and the leaf area index (LAI), which maximizes dry matter production, is known as 3.0 ~ 4.0. As the leaf area increase, the penetration of light into the canopy becomes poor, and sufficient photosynthesis cannot be achieved in the lower leaves, on the other hand the respiration increase, which results in poor dry matter production. This study was conducted to know the responses of sweet potatoes to intensive shading treatment of 80% shading. This experiment was conducted for about 42 days from September 6, 2016 to October 18, 2016 at Gyeongsang National University Experimental Farm, Jinju, Korea. The plant canopy was shaded with black nylon 80% shade cloth suspended 1.2 m above the ground. The photosynthetic rate, stomatal conductance, chlorophyll fluorescence, SPAD and NDVI were measured in 3 replicates every 7 days after shading initiation. After the fresh weight was measured, the samples were dried at $80^{\circ}C$ in a dry oven and measured. By the 80% shading treatment, chlorophyll fluorescence of the treated plants was slightly higher than that of the control, the SPAD value was higher by 3.4 and NDVI value was higher by 0.01. However, photosynthetic rate and stomatal conductance were lower than those of the control. The stomatal conductance of the control were two times higher than those of the control and the photosynthetic rate of the control was four times higher than that of the control. In control, plant showed a tendency to steadily increase in fresh weight and dry weight. However, in the case of shading treatment, the tendency to increase in the fresh and dry weight of tuberous roots was not clear. The fresh weight of shoot showed a tendency to increase steadily while the difference between treatment and control was not large, but tended to decrease after frost.

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온도구배터널 내 상승온도에 의한 난지형 마늘(Allium sativum L.)의 광합성 및 생육 특성의 변화 (Photosynthesis and Growth of Southern-type Garlic (Allium sativum L.) in Response to Elevated Temperatures in a Temperature Gradient Tunnel)

  • 오서영;문경환;송은영;신민지;고석찬
    • 한국농림기상학회지
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    • 제21권4호
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    • pp.250-260
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    • 2019
  • 본 연구는 마늘을 온도구배터널에서 재배하면서 생육기간 동안 인편의 발아, 지상부 생육과 광합성 특성, 인경 발달 등을 조사함으로써 기후변화에 대응하여 마늘 생육 전반에 미치는 기온상승의 영향을 살펴보고 이를 최소화 할 수 있는 방안을 모색하고자 하였다. 터널 중앙부 온도(Tamb+3℃)와 후미부 온도(Tamb+6℃)는 입구의 대기온도(Tamb)를 기준으로 각각 3.2℃, 5.8℃가 높게 유지되었다. 인편의 발아는 터널 입구보다 중앙부와 후미부에서 더 늦었다. 그러나 추대기간과 개체당 최대 엽수에 도달하는 기간이 터널 입구에서 보다 중앙부와 후미부에서 짧게 나타났다. 지상부의 생장은 터널 입구에서 생육하였을 때 전반적으로 높고 중앙부와 후미부에서 감소하는 양상을 보였으며, 인경은 터널 내부의 온도 간에 큰 차이를 보이지는 않았으나 생육후기에 인경 생체량과 건체량은 터널 입구와 중앙부에서 생육하였을 때 다소 높았다. 광합성률(A), 기공전도도(gs), 증산률(E)은 터널 입구에서 보다 중앙부에서 재배하였을 때 증가하였다. 또한 최대 광합성률(Amax)은 중앙부에서 생육하였을 때 높았으며, 호흡률(Rd)은 낮았다. 터널 입구 및 중앙부에서 인경발달이 더 왕성하여 크기가 크고 상품성이 높은 인경을 수확할 수 있었으나 터널 후미부인 대기온도 +6℃에서는 인경의 크기가 작아지고 소인편들이 생겨서 상품성이 낮았다. 따라서 대기온도보다 기온이 상승하였을 때에는 파종 전에 인편 발아에 필요한 저온요구도를 미리 충족시키거나 파종시기를 늦춘다면 인편 발아율을 높이면서 생산량도 증가시킬 수 있을 것으로 보인다. 그리고 인경 발달 단계에서 고온에 의한 상품성 하락을 최소화하기 위하여 수확시기를 앞당겨 수확하는 것도 고려할 필요가 있다.

Photosynthesis-Irradiance Relationship and Primary Production of Phytoplankton in Lake Gocheonam

  • Jung, Min-Kyung;Lee, Ok-Hee;Cho, Kyung-Je
    • 환경생물
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    • 제22권4호
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    • pp.524-531
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    • 2004
  • Photosynthetic activities and primary production of phytoplankton were investigated in Lake Gocheonam from October 1999 to August 2000. As an estuary lake with a barrage in the Southwestern coast of the Korean peninsula, the lake has received more attention after it became known as the habitat of large population of rare and endangered bird- Baikal Teal. As the lake had high algal biomass ranging from $20\mu{g}\;chl-aL^{-1}\;to\;125\mu{g}\;chl-aL^{-1}$ in average values and rich eutrophication indicator species, the freshwaters were in a very productive or hypertrophic state. In the results obtained from the phytoplankton incubation in the laboratory, the maximum photosynthetic rate $(P_{max})$ varied according to seasons and sampling stations. Photo- synthetic activities were higher during the warm season than the cold seasons and the serial order of $P_{max}$ was August dominated with Microcystis, April with Chlamydomonas and Nitzschia, October with Chlamydomonas and January with Stephanodiscus. The water of the lake was persistently turbid throughout the year due to strong winds from the adjacent sea. Despite the water turbidity, the phytoplankton productions estimated from a mathematical model had very broad range from 18mg C $m^{-2}day^{-1}\;to\;10,300mg\;C\;m^{-2}day^{-1}$.

Microorganism lipid droplets and biofuel development

  • Liu, Yingmei;Zhang, Congyan;Shen, Xipeng;Zhang, Xuelin;Cichello, Simon;Guan, Hongbin;Liu, Pingsheng
    • BMB Reports
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    • 제46권12호
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    • pp.575-581
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    • 2013
  • Lipid droplet (LD) is a cellular organelle that stores neutral lipids as a source of energy and carbon. However, recent research has emerged that the organelle is involved in lipid synthesis, transportation, and metabolism, as well as mediating cellular protein storage and degradation. With the exception of multi-cellular organisms, some unicellular microorganisms have been observed to contain LDs. The organelle has been isolated and characterized from numerous organisms. Triacylglycerol (TAG) accumulation in LDs can be in excess of 50% of the dry weight in some microorganisms, and a maximum of 87% in some instances. These microorganisms include eukaryotes such as yeast and green algae as well as prokaryotes such as bacteria. Some organisms obtain carbon from $CO_2$ via photosynthesis, while the majority utilizes carbon from various types of biomass. Therefore, high TAG content generated by utilizing waste or cheap biomass, coupled with an efficient conversion rate, present these organisms as bio-tech 'factories' to produce biodiesel. This review summarizes LD research in these organisms and provides useful information for further LD biological research and microorganism biodiesel development.

NaCl 처리가 고들빼기의 생장과 생리적 특성에 미치는 영향 (Effects of NaCl on the Growth and Physiological Characteristics of Crepidiastrum sonchifolium (Maxim.) Pak & Kawano)

  • 이경철;한상균;윤경규;이학봉;송재모
    • 한국약용작물학회지
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    • 제28권1호
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    • pp.1-8
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    • 2020
  • Background: This study was conducted to investigate the effects of NaCl concentration on the photosynthetic parameters, chlorophyll fluorescence and growth characteristics of Crepidiastrum sonchifolium. Methods and Results: As treatments, we subjected C. sonchifolium plants to four different concentrations of NaCl (0, 50, 100 and 200 mM). We found that the photosynthetic parameters maximum photosynthesis rate (PN max), net apparent quantum yield (Φ), maximum carboxylation rate (Vcmax), and maximum electron transport rate (Jmax) were significantly reduced at an NaCl concentration greater than 100 mM. In contrast, there was an increase in water-use efficiency with increasing NaCl concentration, although in terms of growth performances, leaf dry weight, root dry weight, stem length, and total dry weight all decreased with increasing NaCl concentration. Furthermore, leakage of electrolytes, as a consequence of cell membrane damage, clearly increased in response to an increase in NaCl concentration. Analysis of the polyphasic elevation of chlorophyll a fluorescence transients (OKJIP) revealed marked decrease in flux ratios (ΦPO, ΨO and ΦEO) and the PIabs, performance index in response to treatment with 200 mM NaCl, thereby reflectings the relatively reduced state of photosystem II. This increase in fluorescence could be due to a reduction in electron transport beyond Q-A. We thus found that the photosynthetic parameters, chlorophyll fluorescence and growth characteristics of C. sonchifolium significantly increased in response to treatment with 200 mM NaCl. Conclusions: Collectively, the findings of this study indicate that C. sonchifolium shows relatively low sensitivity to NaCl stress, although photosynthetic activity was markedly reduced in plants exposed to 200 mM NaCl.

반밀폐형 온실 내에서 탄산가스 시비에 따른 광강도와 엽온에 반응한 토마토 잎의 최대 카복실화율, 전자전달율 및 광합성율 실측값과 모델링 방정식에 의한 예측값의 비교 (Comparison of Measured and Calculated Carboxylation Rate, Electron Transfer Rate and Photosynthesis Rate Response to Different Light Intensity and Leaf Temperature in Semi-closed Greenhouse with Carbon Dioxide Fertilization for Tomato Cultivation)

  • 최은영;정영애;안승현;장동철;김대현;이동수;권진경;우영회
    • 생물환경조절학회지
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    • 제30권4호
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    • pp.401-409
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    • 2021
  • 본 연구는 반밀폐형 토마토 재배 온실에서 광합성율 극대화를 위한 적정 탄산가스 시비 농도를 구명하고자 광합성 모델을 이용하여 잎의 최대 카복실화율(Vcmax), 최대 전자전달속도(Jmax), 열파괴, 잎 호흡 등을 계산하고 실제 측정값과 비교하였다. 다양한 광도(PAR 200µmol·m-2·s-1 to 1500µmol·m-2·s-1)와 온도(20℃ to 35℃) 조건에서 CO2 농도에 대한 A-Ci curve는 광합성 측정 기기를 사용하여 측정하였고, 모델링 방정식으로 아레니우스 함수값(Arrhenius function), 순광합성율(net CO2 assimilation, An), 열파괴(thermal breakdown), Rd(주간의 잎호흡)를 계산하였다. 엽온이 30℃ 이상으로 상승하였을 때 Jmax, An 및 thermal breakdown 예측치가 모두 감소하였고, 예측 Jmax의 가장 최고점은 엽온 30℃였으며 그 이상의 온도에서는 감소하였다. 생장점 아래 5번째 잎의 광합성율은 PAR 200-400µmol·m-2·s-1 수준에서는 CO2 600ppm, PAR 600-800µmol·m-2·s-1 수준에서는 CO2 800ppm, PAR 1000µmol·m-2·s-1 수준에서는 CO2 1000ppm, PAR 1200-1500µmol·m-2·s-1 수준에서는 CO2 1500ppm을 공급했을 때 포화점에 도달하였다. 앞으로 광합성 모델식을 활용하여 과채류 온실 재배 시 광합성을 높일 수 있는 탄산시비 농도를 추정할 수 있을 것으로 판단된다.

인삼생육의 최적광량에 관한 연구 제1보. 광도가 인삼의 지상부생육 및 근수량에 미치는 영향 (Studies on the Optimum Light Intensity for Growth of Punux ginseng ( I ) Effects of Light Intensity on Growth of Shoots and Roots of Ginseng Plants)

  • 이종화;이종철
    • Journal of Ginseng Research
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    • 제6권1호
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    • pp.38-45
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    • 1982
  • To determine the optimum light intensity for growth of ginseng plants, change of temperature, moisture content in son, occurrence alternaria blight, defoliation rate, chlorophyll contents, and growth of shoots and roots were investigated under different light intensity such as 5%, 10%, 20% and 30% light transmittance rare(L.T.R.). The results obtained were as follows. 1. Maximum temperature under the shading was increased as the increase of light intensity, whereas soil moisture content decreased 2. As the increase of light intensity, stem and Peduncle length, leaf area, and chlorophyll contents decreased significantly but length and width of the leaf was not significant, while stem diameter, special leaf weight and chlorophyll a/chl. b ratio increased 3. Stem color was shown dark purp!e as the increase of light intensity. 4. Photosynthesis during the day was highest at 9 A.M. and decreased as time passed in all plots. The means of photouynthesis during the day showed in the order of 20%, 10%, 30%, 5% L.T.R., and optimum light intensity for highest photosxthesis was 18.4% L.T.R. by theoritical equation. 5. It was showed a tendency that alternaria leaf blight of ginseng plants was increased as the increase of light intensity. 6. Defoliation rate of ginseng plants was increased as the increase of light intensity, especially all plants were defoliated by late June without shading. 7. Yield percentage of the rear line was increased as the increase of light intensity. Root weight per plant showed in the order of 20%, 10%, 30%, 5% L.T.R., and optimum light intensity for the best yield was 18.5% L.T.R. by theeritical equation.

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참깨의 단경, 분지형에 있어서 인산함량이 함유율과 지상부 생육에 미치는 영향 (The Effects of Phosphate to the Growth and Oil Contents in Sesame(Sesamum indicum L.))

  • 서관석;김준기;김소연;이주열;최창열
    • 한국작물학회지
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    • 제29권4호
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    • pp.314-320
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    • 1984
  • 참깨의 현장려 품종중 단경형과 분지형 두 품종에 대한 인산의 시비수준에 따른 생육시기별 지상부 생육 및 함유량을 조사한 결과 가. 광합성량은 초기(파종후 6주까지)에는 풍년깨가 후기에는 광산깨가 높았으며, 두 품종 모두 인산10a당4 시용구에서 광합성이 가강 높았다. 나. 인산의 시비수준에 따라 식물체의 무기성분 함량간에는 큰 차이는 없었으나, 시기별 인산함량은 파종후 3주가, 질소와 가리는 파종후 6주가 가장 높았고, 엽분석결과 인산함량과 지방과는 0.48*, 가리함량과 탄수화물과는 0.57**로서 모두 유의성이 인정되었다. 다. 개화최성기(7월 15일)의 광합성능력과 상대생장율(RGR) 및 순동화율(NAR)간에는 품종별로는분지형인 광산깨가 인산시용량간에는 10a당 4kg시용구에서 가장 높았다. 라. 참깨의 품종별 종실중은 풍년깨는 10a당 4kg시용구가, 광산깨는 10a당8kg시용구가 가장 많았으나, 동일종실중에 대한 함유량은 두 품종 모두 인산의 시비량이 많을수록 증대되었다.

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월동무의 생장, 무기성분 조성과 광합성에 미치는 온도 상승의 영향 (Impact of Rising Global Temperatures on Growth, Mineral Composition, and Photosynthesis in Radish in a Winter Cropping System)

  • 오순자;문경환;송은영;손인창;위승환;고석찬
    • 원예과학기술지
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    • 제35권1호
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    • pp.38-45
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    • 2017
  • 본 연구에서는 온도구배터널을 이용하여 기온상승이 우리나라 주요 노지 채소인 월동무의 광합성, 무기성분 조성, 생장에 미치는 영향을 조사하여 겨울철 기온상승이 월동무의 생육에 미치는 영향을 예측하였다. 월동무의 생육(지상부와 뿌리의 생체중과 건물중, 초장, 뿌리의 길이와 직경)은 겨울철 대기온도에서 보다 대기온도 $+4^{\circ}C$와 대기온도 $+7^{\circ}C$ 조건에서 재배하였을 때 증가하였다. 그리고, 겨울철 온도가 높아졌을 때 월동무 뿌리에서는 Cu 함량이 감소하지만 K, Ca, Mg, Fe 함량은 증가하였으며, 지상부에서는 N, P, Ca, Mg, Fe의 함량이 증가하였다. 최대광합성률은 겨울철 대기온도에서 $9.7{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$로 낮은데 반하여 대기온도 $+4^{\circ}C$와 대기온도 $+7^{\circ}C$ 조건에서는 각각 $22.1{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$$22.9{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$로 대기온도에서보다 2배 이상 높았다. 반면에 수분이용효율은 대기온도 $+4^{\circ}C$와 대기온도 $+7^{\circ}C$ 조건에서 재배하였을 때 대기온도에서보다 감소하였다. 이러한 결과는 미래의 겨울철 온도 상승이 무기염류의 흡수와 광합성의 증가를 유도하여 월동무의 생육에 우호적으로 작용하여 생산성을 높이지만 수분 요구도가 높아질 수 있음을 나타내 주고 있다.