• 제목/요약/키워드: Photosynthesis Capacity

검색결과 88건 처리시간 0.033초

토양함수량이 인삼의 광합성 및 생육에 미치는 영향 (Effects of Soil Water Regimes on Photosynthesis, Growth and Development of Ginseng Plant (Panax ginseng C. A. Meyer))

  • 이성식;양덕조;김요태
    • 한국작물학회지
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    • 제27권2호
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    • pp.175-181
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    • 1982
  • 사양토에서 인삼생육의 최적 토양 함수량 구명키 위해 토양함수량별 지상하부, 생식생장, 광합성 등을 조사한 바 그 결과는 다음과 같다. 1. 근건물중 및 동직경은 62%(절대수분 13.9%)가 가장 양호하였다. 2. 엽면적, 엽건물중은 62%(절대수분 13.9%)가 가장 양호하였으며 개체당 개화수, 결실율, 종자생산량도 같은 경향이었다. 3. 단위 면적당 광합성량은 토양 함수량이 많을수록 증가하였으나 개체당 광합성량은 62%가 가장 양호하였다. 4. 증산량은 토양함수량과 비례하였으나 기공의 밀도는 반비례하였다.

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Alteration of Gas Exchange in Rice Leaves Infected with Magnaporthe grisea

  • Yun, Sung-Chul;Kim, Pan-Gi;Park, Eun-Woo
    • The Plant Pathology Journal
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    • 제16권5호
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    • pp.257-263
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    • 2000
  • Infection with rice blast fungus (Magnaporthe grisea) significantly reduced foliar net photosynthesis (A) of rice cultivars: Ilpoom, Hwasung, and Choochung in greenhouse experiments. By measuring the amount of diseased leaf area with a computer image analysis system, the relation between disease severity (DS) and net photosynthetic rate was curvilinearly correlated (r=0.679). Diseased leaves with 35% blast symptom can be predicted to have a 50% reduction of photosynthesis. The disease severity was linearly correlated (r=0.478) with total chlorophyll (chlorophyll a and chlorophyll b) per unit leaf area(TC). Light use efficiency was reduced by the fungal infection according to the light response curves. However, dark respiration (Rd) did not change after the fungal infection (p=0.526). Since the percent of reduction in photosynthesis greatly exceeded the percent of leaf area covered by blast lesions, loss of photosynthetic tissue on an area basis could not by itself account for the reduced photosynthesis. Quantitative photosynthetic reduction can be partially explained by decreasing TC, but cannot be explained by decreasing Rd. By photosynthesis (A)-internal CO$_2$ concentration (C$_i$ curve analysis, it was suggested that the fungal infection reduced ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activity, ribulose-1,5-bisphosphate (RuBP) regeneration, and inorganic phosphate regeneration. Thus, the reduction of photosynthesis by blast infection was associated with decreased TC and biochemical capacity, which comprises all carbon metabolism after CO$_2$ enters through the stomata.

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토양수분이 수수류의 광합성 , 증산량 및 기공저항에 미치는 영향 II. 광합성과 증산량의 일중변화 (Effects of Soil Moisture on Photosynthesis , Transpiration and Stomatal Resistance in sotghums II.Ondiurnal changes)

  • 한흥전;류종원
    • 한국초지조사료학회지
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    • 제6권1호
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    • pp.60-64
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    • 1986
  • 생육후기(生育後期)의 환경조건(環境條件)에서 토양수분함량(土壤水分含量)이 수수류(類)의 광합성(光合成), 증산(蒸散), 기공저항(氣孔抵抗)의 일변화(日變化)에 미치는 영향(影響)을 비교(比較)할 일적(日的)으로 1985년도(年度) 축산시험장(畜産試驗場)의 포장(圃場)에서 대형(大型) 콘크리트 폿트에 토양수분(土壤水分)을 포장용수량(圃場容水量)의 100, 80, 60 및 40%가 유지되도록 조절(調節)하고 수수와 수수${\times}$수단그라스교잡종(交雜種)을 재배(栽培)한후(後) 쾌청한 날을 택(擇)하여 2시간(時間) 간격으로 광합성(光合成)을 측정(測定)하였다. 1. 광합성(光合成)과 증산량(蒸散量)은 환경(環境)의 영향을 받아 정오(亭午)와 오후 2시(時)에 가장 높았고 오후(午後) 4시(時)부터는 급격히 저하(低下)되었다. 2. 수수의 경우 광합성(光合成)과 증산량(蒸散量)은 60%수분구(水分區)가 높았고 다른 수분구(水分區) 사이에는 유의차(有意差)가 없었으나 수수${\times}$수단그라스교잡종(交雜種)의 경우에는 광합성(光合成)은 60>80>40>100%순(順)이었고 증산량(蒸散量)은 60>80>100>40%순(順)이었다. 3. 기공저항(氣孔抵抗)은 뚜렷한 일중변화(日中變化)를 나타내지 않았으며 60%수분구(水分區)가 기공(氣孔)의 저항(抵抗)을 가장 적게 받았다.

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임간재배지 내 부엽토 및 차광수준에 따른 갯기름나물의 광합성과 엽생장 특성 (Characteristics of Photosynthesis and Leaf Growth of Peucedanum japonicum by Leaf Mold and Shading Level in Forest Farming)

  • 송기선;전권석;최규성;김창환;박용배;김종진
    • 한국약용작물학회지
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    • 제23권1호
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    • pp.43-48
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    • 2015
  • This study was carried out in order to investigate the photosynthesis response and leaf characteristics of Peucedanum japonicum growing in forest farming. The experiment was performed by leaf mold (pine tree and chestnut tree) and shading levels (0%, 35%, 50% and 75% shading). Light relative intensity was 100% (full sunlight), 60.3% (35% shading), 35.1% (50% shading), and 17.4% (75% shading) respectively. Light response curves of pine-leaf mold and chestnut-leaf mold were the highest in control (full sunlight) and these were getting lower in the higher shading level. Photosynthesis capacity and light saturation point were indicated higher in chestnut-leaf mold within the same shading level. As the shading level increased, maximum photosynthesis rate decreased. And apparent quantum yield was not indicated statistically significant difference from all treatment. Leaf area, leaf length and leaf width were significant higher in 35% shading and control under chestnut-leaf mold in all treatment. As the shading level increased, LAR (leaf area ratio), SLA (specific leaf area) and SPAD value decreased in pine-leaf mold and chestnut-leaf mold. As a result of surveying the whole experiment, P. japonicum is judged better growth and higher yield by maintaining 35% shading (relative light intensity 60%) under chestnut-leaf mold in forest farming.

토양수분이 수수류의 광합성 , 증산량 및 기공저항에 미치는 영향 I. 광합성과 증산량의 계절간 변화 (Effedts soil moisture on Photosythess , Transpiration and Stomatal resistance in Sorghums I. On seasonal changes)

  • 한흥전;류종원
    • 한국초지조사료학회지
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    • 제6권1호
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    • pp.53-59
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    • 1986
  • 수수류의 광합성(光合成), 증산(蒸散), 기공저항(氣孔抵抗)과 건물수량(乾物收量)에미치는 토괴수분(土壞水分)의 영향(影響)을 구명(究明)하고자 수수(Pioneer 931), 수수$\times$수단그라스 교잡종(交雜種)(Pioneer 988)을 포장용수량(圃場容水量)의 100, 80, 60, 40%로 조절(調節)된 대형콘크리트 폿트(길이 14m, 폭 1m, 깊이 1m)에 생육(生育) 시킨후 쾌청한 날을 택(擇)하여 초여름인 6월(月)20일(日), 6월(月)28일(日)과 고온기인 8월(月)18(日), 생육말기(生育末期)인 9월(月)30일(日) 10월(月)4일(日)에 광합성(光合成)을 측정(測定)하였다. 1. 광합성(光合成), 증산(蒸散) 및 기공저항(氣孔抵抗)은 이절간(李節間)에 차이(差異)가 있어 광합성(光合成) 및 증산량(蒸散量)은 8월중순(月中旬) 의 고온기에 최대(最大)로 높았고 10월초(月初)에 가장 낮았다. 2. 전생육기(全生育期)에 걸쳐 포장용수량(圃場容水量)의 60%와 80% 수분구(水分區)가 100%나 40% 수분구(水分區)에 비하여 광합성(光合成) 증산량(蒸散量)이 많고 기공저항이 적었다. 3 환경요인(環境要因)에 의하여 이절간(李節間)에 수분요구도(水分要求度)의 차이(差異)를 보여 초여름과 가을에는 포장용수량의 60%, 고온기에는 $60%\sim80%$로 높게 유지해 주는 것이 식물생장(植物生長)에 좋은 것으로 나타났다. 4. 건조와 과습은 식물(植物)의 생리적대사(生理的代謝) 영향을 미쳐 최적수분조건에 비하여 포장용수량의 100%와 40%수분구에서는 최종건물수량이 70%이상(以上) 감수되었다.

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한발저항성 정도가 다른 보리 품종들의 한발처리에 따른 생리적 특성변화 (Changes in Physiological Characteristics of Barley Genotypes under Drought Stress)

  • 이변우;부금동;백남천;김정곤
    • 한국작물학회지
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    • 제48권6호
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    • pp.506-515
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    • 2003
  • 이 논문은 한발저항성이 다른 6개 보리 품종의 한발에 따른 생장, 잎의 수분포텐셜(leaf water potential, LWP), 상대함수량(leaf relative water content, RWC), 삼투압(leaf osmotic potential, OP), 삼투조정(osmotic adjustment, OA), 팽압(leaf turgor pressure, LTP), 순광합섬, 기공전도도, 엽육전도도, 엽록소형광 등의 변화를 조사하여 비교한 결과를 요약하면 다음과 같다. 1 한발 처리시 토양수분포텐셜은 -0.05㎫이었고. 종료시에는 -0.29㎫로 저하하였다. Dicktoo-S 동보리 1호, Dicktoo-L, Dicktoo-T, 수원쌀보리 365호, 탑골보리 품종의 한발처리구 건물중은 각각 대조구(처리기간종 -0.05㎫ 유지)에 비하여 68%, 69%, 70%, 86%, 55%, 37%를 나타내어 Dicktoo 계통과 동보리1호의 한발저항성이 강하였고, 수원쌀보리 365호와 탑골보리는 한발저항성이 약하였다. 2. 한발저항성이 강한 품종은 삼투조정능력이 커서 한발처리에 따른 RWC와 LWP의 저하가 작았고 팽압유지능력이 컸다. 3. 한발처리에 따라 순광합성이 저하하였고 그 저하정도는 한발저항성이 큰 품종이 작았는데, 이는 한발저항성이 큰 품종이 기공전도도, 엽육전도도 및 PSII 최대양자수율(Fv/Fm)의 저하가 적었기 때문이었다. 4. 결론적으로 저항성이 큰 품종은 삼투조정에 의한 수분유지능력이 크고 이에 따라 광합성저하가 적어 상대적으로 생장의 감소가 적은 것으로 판단되었다.

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.

Elucidation of the physiological basis related to high photosynthetic capacity of soybean local variety, 'Peking'.

  • Sakoda, Kazuma;Suzuki, Seita;Tanaka, Yu;Shiraiwa, Tatsuhiko
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.239-239
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    • 2017
  • The enhancement of leaf photosynthetic capacity can have the potential to improve the seed yield of soybean. Key targets for the increase of leaf photosynthetic capacity remains unclear in soybean. Peking, Chinese local variety, has been the useful material for soybean breeding since it shows various resistances against biotic and abiotic stress. Sakoda et al., 2017 reported that Peking had the higher capacity of leaf photosynthesis than Enrei, Japanese elite cultivar. They identified the genetic factors related to high photosynthetic capacity of Peking. The objective of this study is to elucidate the physiological basis underlying high photosynthetic capacity of Peking. Peking and Enrei were cultivated at the experimental field of the Graduate School of Agriculture, Kyoto University, Kyoto, Japan. The sowing date was July 4, 2016. Gas exchange parameters were evaluated at the uppermost fully expanded leaves on 43, 49, and 59 days after planting (DAP) with a portable gas exchange system, LI-6400. The leaf hydraulic conductance, $K_{leaf}$, was determined based on the water potential and transpiration rate of the uppermost fully expanded leaves on 60 DAP. The morphological traits related to leaf photosynthesis were analyzed at the same leaves with the gas exchange measurements. The light-saturated $CO_2$ assimilation rate ($A_{sat}$) of Peking was significantly higher than that of Enrei at 43 and 59 DAP while the stomatal conductance ($g_s$) of Peking was significantly higher at all the measurements (p < 0.05). It suggested that high $A_{sat}$ was mainly attributed to high $g_s$ in Peking. $g_s$ is reported to be affected by the morphological traits and water status inside the leaf, represented by $K_{leaf}$, in crop plants. The tendency of the variation of the stomatal density between two cultivars was not consistent throughout the measurements. On the other hand, $K_{leaf}$ of Peking was 59.0% higher than that of Enrei on 60 DAP. These results imply that high $g_s$ might be attributed to high $K_{leaf}$ in Peking. Further research is needed to reveal the mechanism to archive high $g_s$ on the basis of water physiology in Peking. The knowledge combining the genetic and physiological basis underlying high photosynthetic capacity of Peking can be useful to improve the biomass productivity of soybean.

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Eco-physiological Responses of Two Populus deltoides Clones to Ozone

  • Yun, Sung-Chul;Kim, Pan-Ki;Hur, Jae-Seoun;Lee, Jae-Cheon;Park, Eun-Woo
    • The Korean Journal of Ecology
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    • 제24권2호
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    • pp.93-100
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    • 2001
  • One-year-old cottonwood (Populus deltoides Bartr.) clones, which were classified as sensitive or tolerant, were exposed to 150 n1/1 ozone (O$_3$) over 8 days for 8 hours each day under glass chamber conditions with natural sunlight. The leaves of the sensitive clone had black stipple and bifacial necrosis after $O_3$ treatment. Photosynthesis and stomatal conductance were measured before, during, and after the $O_3$ treatment. The photosynthetic rates due to $O_3$ treatment were decreased 51 percent and 34 percent on the sensitive and tolerant clone, respectively. The stomatal conductance of the sensitive clone was more than 40 percent higher than that of the tolerant clone regardless of the $O_3$ treatment. As light intensity increased, the $O_3$ effect on photosynthesis was clear. Compared to the previous growth chamber studies, our natural light exposure system was able to maintain a stable photosynthetic responses of the control treatment throughout the fumigation period. In addition, changes in assimilation versus intercellular $CO_2$ concentration (A/C curves) showed that $O_3$ decreased the slope and asymptote of the curves for the sensitive clone. This indicates that $O_3$ decreases the biochemical capacity of photosynthesis on the sensitive clone. Chlorophyll contents and fluorescence of the two clones were analyzed to examine the $O_3$ effects on photosystem 11, but $O_3$ did not impact these variables on either clone. Although the tolerant clone did not show any foliar injury, we could not find any ecophysiological defensive responses to $O_3$ treated. Stomatal conductance of the tolerant clone was originally much lower than that of the sensitive one. Thus, the mechanisms of the tolerant clone in this system are to narrowly open stomata and efficiently maintain photosynthesis with a more durable biochemical apparatus of photosynthesis under $O_3$ stress. The sensitive clone has higher photosynthetic capacity and more efficient light reaction activity than the tolerant one under charcoal filtered condition, but is not as resilient under stress.

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