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Interactive Effects of Drought Stresses and Elevated CO_2 Concentration on Photochemistry Efficiency of Cucumber Seedlings 被引量:14

Interactive Effects of Drought Stresses and Elevated CO_2 Concentration on Photochemistry Efficiency of Cucumber Seedlings
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摘要 To reveal and quantify the interactive effects of drought stresses and elevated CO2 concentration [CO2] on photochemistry efficiency of cucumber seedlings, the portable chlorophyll meter was used to measure the chlorophyll content, and the Imaging-PAM was used to image the chlorophyll fluorescence parameters and rapid light response curves (RLC) of leaves in two adjacent greenhouses. The results showed that chlorophyll content of leaves was reduced significantly with drought stress aggravated. Minimal fluorescence (Fo) was increased while maximal quantum yield of PSII (Fv/Fm) decreased significantly by severe drought stress. The significant decrease of effective quantum yield of PSII (Y(Ⅱ)) accompanied by the significant increase of quantum yield of regulated energy dissipation (Y(NPQ)) was observed under severe drought stress condition, but there was no change of quantum yield of nonregulated energy dissipation (Y(NO)). We detected that the coefficient of photochemical quenching (qP) decreased, and non-photochemical quenching (NPQ) increased significantly under severe drought stress. Furthermore, we found that maximum apparent electron transport rate (ETRmax) and saturating photosynthetically active radiation (PPFDsat) decreased significantly with drought stress aggravated. However, elevated [CO2] significantly increased FvlFm, qP and PPFDsat, and decreased NPQ under all water conditions, although there were no significant effects on chlorophyll content, Fo, Y(Ⅱ), Y(NPQ), Y(NO) and ETRmax. Therefore, it is concluded that CO2-fertilized greenhouses or elevated atmospheric [CO2] in the future could be favorable for cucumber growth and development, and beneficial to alleviate the negative effects of drought stresses to a certain extent. To reveal and quantify the interactive effects of drought stresses and elevated CO2 concentration [CO2] on photochemistry efficiency of cucumber seedlings, the portable chlorophyll meter was used to measure the chlorophyll content, and the Imaging-PAM was used to image the chlorophyll fluorescence parameters and rapid light response curves (RLC) of leaves in two adjacent greenhouses. The results showed that chlorophyll content of leaves was reduced significantly with drought stress aggravated. Minimal fluorescence (Fo) was increased while maximal quantum yield of PSII (Fv/Fm) decreased significantly by severe drought stress. The significant decrease of effective quantum yield of PSII (Y(Ⅱ)) accompanied by the significant increase of quantum yield of regulated energy dissipation (Y(NPQ)) was observed under severe drought stress condition, but there was no change of quantum yield of nonregulated energy dissipation (Y(NO)). We detected that the coefficient of photochemical quenching (qP) decreased, and non-photochemical quenching (NPQ) increased significantly under severe drought stress. Furthermore, we found that maximum apparent electron transport rate (ETRmax) and saturating photosynthetically active radiation (PPFDsat) decreased significantly with drought stress aggravated. However, elevated [CO2] significantly increased FvlFm, qP and PPFDsat, and decreased NPQ under all water conditions, although there were no significant effects on chlorophyll content, Fo, Y(Ⅱ), Y(NPQ), Y(NO) and ETRmax. Therefore, it is concluded that CO2-fertilized greenhouses or elevated atmospheric [CO2] in the future could be favorable for cucumber growth and development, and beneficial to alleviate the negative effects of drought stresses to a certain extent.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2008年第10期1307-1317,共11页 植物学报(英文版)
基金 Supported by the National Key Project of Scientific and Technical Supporting Programs from Ministry of Science & Technology of China (2006BAD28B07-5) the Hi-Tech Research and Development (863) Program of China(2001AA247012) the Innovation in Graduate Education Plan of Northwest A&F University (05YCH013).
关键词 chlorophyll fluorescence cucumber seedlings drought stresses elevated CO2 concentration photochemistry efficiency. chlorophyll fluorescence cucumber seedlings drought stresses elevated CO2 concentration photochemistry efficiency.
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  • 1Baker JT, Allen LH (1993). Contrasting crop species responses to CO2 and temperature, rice, soybean and citrus. Plant Ecol. 104,239-260.
  • 2Barber J (1998). Photosystem two. Biochim. Biophys. Acta 1365, 269- 277.
  • 3Bilger W, Bjorkman O (1990). Role of the xanthophyll cycle in photoprotection elucidated by measurements of light-induced abserbance changes, fluorescence and photosynthesis in leaves of Hedera canariensis. Photosynth. Res. 25, 173-185.
  • 4Bonfig KB, Schreiber U, Gabler A, Roitsch T, Berger S (2006). Infection with virulent and avirulent P. syringae strains differentially affects photosynthesis and sink metabolism in Arabidopsis leaves. Planta 225. 1-12.
  • 5Bowes G (1993). Facing the inevitable, plants and increasing atmospheric CO2. Annu. Rev. Plant Physiol. Plant Mol. Biol. 44, 309-332.
  • 6Campbell AD, Huysamer M, Stotz HU, Greve LC, Labavitch JM (1990), Comparison of ripening processes in intact tomato fruit and excised pericarp discs 1. Plant Physiol. 94, 1582-1589.
  • 7Centritto M, Nascetti P, Petrilli L, Raschi A, Loreto F (2004). Profiles of isoprene emission and photosynthetic parameters in hybrid poplars exposed to free-air CO2 enrichment. Plant Cell Environ. 27, 403-412.
  • 8Chaves MM, Pereira JS (1992). Water stress, CO2 and climate change. J. Exp. Bot. 43, 1131-1139.
  • 9Chaves MM, Pereira JS, Maroco JP, Rodrigues ML, Picardo CPP, Osorio ML et al. (2002). How plants cope with water stress in the field? Photosynthesis and growth. Ann. Bot. 89, 907-916.
  • 10Cornic G (2000). Drought stress inhibits photosynthesis by decreasing stomatal aperture- not by affecting A TP synthesis. Trends Plant Sci. 5, 187-188.

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