• 제목/요약/키워드: photosynthetic response

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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.

Changes in Photosynthetic Characteristics during Grain Filling of a Functional Stay-Green Rice SNUSG1 and its $F_1$ Hybrids

  • Fu, Jin-Dong;Lee, Byun-Woo
    • Journal of Crop Science and Biotechnology
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    • 제11권1호
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    • pp.75-82
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    • 2008
  • Functional stay-green is a beneficial trait that may increase grain yield through the sustained photosynthetic competence during monocarpic senescence in cereal crops. The temporal changes of photosynthesis and related characteristics throughout the grain filling period of a stay-green japonica rice "SNU-SG1" was compared in growth chamber conditions with three high-yielding cultivars(HYVs) and their $F_1$ hybrids with SNU-SG1. SNU-SG1 exhibited a typical characteristic of functional stay-green in terms of chlorophyll degradation and photosynthetic competence during grain filling. According to the photosynthesis-light response curve measured at 10 and 35 d after heading for the flag leaf, SNU-SG1 exhibited higher initial light conversion efficiency and thus higher gross photosynthetic rate at light saturation compared to HYVs. Light saturation point was not different among genotypes, ranging from 1000 to 1500 ${\mu}mol$ photon $m^{-2}s^{-1}$. Net photosynthetic rate at light saturation($P_{max}$) of the upper four leaves in SNU-SG1 was much higher and sustained longer throughout grain-filling than HYVs and $F_1$ hybrids. The sustained high photosynthetic competence of SNU-SG1 during grain filling was ascribed to the longer maintenance of high mesophyll conductance that resulted from not only high chlorophyll content and its delayed degradation but also the slow degeneration of photosystem II(PS II) as judged by chlorophyll fluorescence($F_v/F_m$) of flag leaves. $F_1$ hybrids showed slow degeneration of photosystem II similar to the male parent SNU-SG1 while chlorophyll degradation pattern close to female parents, thus exhibiting a little higher $P_{max}$ than female parents. These results suggest that SNU-SG1 has a typical functional stay-green trait that can be utilized for increasing rice yield potential through the improved dry matter production during grain filling.

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복숭아 '장호원황도'의 엽위별 잎 발달과 광합성능의 변화에 대한 분석 (Analysis on on the Leaf Growth and Changes of Photosynthetic Characterization by Leaf Position in 'Changhowon Hwangdo' Peach)

  • 윤익구;윤석규;전지혜;남은영;권정현;배해진;문병우;강희경
    • 생물환경조절학회지
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    • 제22권4호
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    • pp.361-365
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    • 2013
  • 전엽 후 10일이 경과하면 잎의 위치별 엽내 엽록소 함량에 큰 차이를 보이지 않았고, 전엽 후 10일이 경과되지 않은 잎의 엽록소 함량은 전엽 경과일수가 적을수록 낮았다. 동일한 잎의 위치에서 전엽 후 경과일수에 따른 엽록소 함량의 경시적 변화는 전엽 직후에 $2.56{\mu}g/cm^2$에서 12일째에는 $6.35{\mu}g/cm^2$까지 급격히 증가하고 이후 약 2개월간 완만한 증가 추세를 보였는데 엽록소 함량이 가장 높은 시기는 전엽 후 11주째로 $9.03{\mu}g/cm^2$이었다. 엽면적은 전엽 직후부터 전엽 후 10일까지 급속하게 증가하였으나 그 이후는 거의 변화가 없었다. 잎의 광합성률은 전엽 후 30일까지는 급격히 증가하여 전엽 30일 후에 $13.8{\mu}mol/m^{-2}/sec^{-1}$로 최대치를 보였으며, 이후에는 잎의 광합성능이 급격하게 떨어졌다. 전엽 후 1주와 4주의 광도에 따른 광합성률은 두 시기 모두 PPFD $600{\mu}mol/m^{-2}/sec^{-1}$까지는 PPFD가 증가할수록 광합성률이 급격히 증가하였으나 이후 PPFD $1,200{\mu}mol/m^{-2}/sec^{-1}$까지는 완만한 증가율을 보이다 그 이상에서는 변화를 보이지 않았다. 전엽 후 1주와 전엽 후 4주간에는 전엽 후 4주가 전엽 후 1주에 비해 PPFD 증가에 따른 광합성률이 높은 경향을 보였다. $CO_2$ 농도별 광합성률은 600ppm까지는 농도가 높을수록 광합성성률이 증가하였으나 그 이상의 농도에서는 변화가 없었다. 차광시간별 엽내 sucrose 함량은 1시간 까지는 차광처리구와 무처리구 간 차이를 보이지 않았으나 2시간부터는 차광처리에서 sucrose 함량이 감소하였다.

생육환경에 따른 한국특산식물 벌개미취의 광합성 특성 (Photosynthetic Characteristics of Korean Endemic Plant, Aster koraiensis Nakai According to Growth and Development Conditions)

  • 남효훈;손창기;이중환;권중배
    • 한국자원식물학회지
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    • 제29권4호
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    • pp.393-399
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    • 2016
  • 한국특산식물 벌개미취의 재배환경에 따른 생리적 반응과 최적 재배조건의 설정을 통해 생산성을 향상하기 위하여 연구를 수행하여 얻어진 결과를 요약하면 다음과 같다. 생육시기별 광합성률은 정식 후부터 급격히 증가하였다가 7월 이후 감소하였으며 정식 2년차에서는 생육 후기로 갈수록 저하되는 경향이었고 광보상점은 생육 초기에 높았다가 후기에 감소하였다. 세포내 CO2 농도가 증가할수록 광합성률은 증가하였으나 일정 수준 이상에서는 정체 혹은 감소하는 경향이었고 생육시기별 CO2 보상점은 5월에 가장 낮았다. 차광처리에서 엽록소 함량은 무처리에 비해 높았으며 잎 형태의 유의한 변화가 관찰되었다. 무차광 또는 50% 차광수준에서 광합성률이 높았다.  토양수분 조건에 따라서 잎의 형태적 변화는 거의 없었으나 엽충실도가 변화하였고 −25 kPa 이상의 토양수분조건에서는 광합성률, 순양자 수율은 증가하였으며 이에 따라 암호흡속도도 증가하였고 수분 이용효율은 감소하였다.

Photosynthetic Patterns of 3 Crassulacean Plants under Drought Conditions

  • Kim, Tae-Jin;Choo, Yeon-Sik
    • Journal of Ecology and Environment
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    • 제30권2호
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    • pp.187-193
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    • 2007
  • Higher plants can be categorized as C3, C4 or CAM according to their photosynthetic pathways, and some succulent plants are known to shift their patterns of photosynthesis from C3 to CAM in response to environmental stresses such as salt treatment or water deficiency. To investigate fundamental photosynthetic patterns and the induction of pattern shifts (C3, CAM, C3-CAM etc.) as a result of environmental stresses, we measured the water content, diurnal changes in pH, net $CO_2$ exchange, transpiration rate, total ionic contents, and osmolality of Kalancoe daigremontiana, Sedum kamschaticum and Sedum sarmentosum which belong to Crassulaceae known as representative CAM plant, after 10 days of drought treatment. S. kamschaticum and S. sarmentosum did not show a significant difference in diurnal pH variation in the treatment and control conditions. However, the pH of drought-treated Kalancoe was low at night and high in the daytime, with a pH value between 4 and 5. Typical CAM plants display a net $CO_2$ exchange that increases at night and decreases in the daytime. Kalancoe displayed the predicted pattern. However, S. kamschaticum and S. sarmentosum showed a photosynthetic pattern more typical of C3 plants, and did not show changes in photosynthetic pattern under drought stress. Kalancoe also showed a transpiration rate typical for CAM pho-tosynthesis, whereas the transpiration rates of S. kamschaticum and S. sarmentosum were in the typical range for C3 photosynthesis. Kalancoe had high total ionic contents during the night, which decreased somewhat during the daytime, whereas S. kamschaticum and S. sarmentosum displayed the opposite pattern. This result is similar to the diurnal patterns of changes in pH in the three plant species, which suggests a relationship between pH and ionic contents. S. sarmentosum showed lower osmolality under drought stress than in the control condition, whereas the osmolality of Kalancoe and S. kamschaticum did not differ between conditions. S. sarmentosum may have maintained internal water content by lowering its osmolality and raising its total ionic contents. In conclusion, Kalancoe displayed the characteristic responses of a typical CAM plant, whereas S. kamschaticum and S. sarmentosum displayed aspects of the C3 photosynthetic pattern under drought conditions. These results suggest that S. kamschaticum and S. sarmentosum (Crassulacea) in Korea overcome drought stress by increasing solute and ionic contents internally rather than changing their photosynthetic pattern from C3 to CAM under drought stress.

실외 온난화 처리에 따른 낙엽송 묘목의 생리 및 생장 반응 (Effect of Experimental Warming on Physiological and Growth Responses of Larix kaempferi Seedlings)

  • 안지애;장한나;박민지;한승현;황재홍;조민석;손요환
    • 한국기후변화학회지
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    • 제7권1호
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    • pp.77-84
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    • 2016
  • Seedling stage is particularly important for tree survival and is easily influenced by warming. Therefore, air temperature being increased due to climate change may affect physiological traits and growth of seedlings. This study was conducted to investigate the physiological and growth responses of Larix kaempferi seedlings to open-field experimental warming. 1-year-old and 2-year-old L. kaempferi seedlings were warmed with infrared lamps since April 2015 and April 2014, respectively. The seedlings in the warmed plots were warmed to maintain the air temperature to be $3^{\circ}C$ higher than that of the control plots. Physiological responses (stomatal conductance, transpiration rate, net photosynthetic rate and total chlorophyll content) and growth responses (root collar diameter (RCD), height and biomass) to experimental warming were measured. Physiological and growth responses varied with the seedling ages. For 2-year-old L. kaempferi seedlings, stomatal conductance, transpiration rate and net photosynthetic rate decreased following the warming treatment, whereas there were no changes for 1-year-old L. kaempferi seedlings. Meanwhile, total chlorophyll content was higher in warmed plots regardless of the seedling ages. Net photosynthetic rate linked with stomatal conductance also decreased due to the drought stress and decrease of photosynthetic efficiency. In response to warming, RCD, height and biomass did not show significant differences between the treatments. It seems that the growth responses were not affected as much as physiological responses were, since the physiological responses were not consistent, nor the warming treatment period was enough to have significant results. In addition, multifactorial experiments considering the impact of decreased soil moisture resulting from elevated temperatures is needed to explicate the impacts of a wide range of possible climate change scenarios.