Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (3): 531-537 .doi: 10.3864/j.issn.0578-1752.sas-2010-06817

• HORTICULTURE • Previous Articles     Next Articles

Regulation of Calcium on Photosynthesis of Tomato Leaves Under Sub-High Temperature Stress

QI Ming-fang, LIU Yu-feng, ZHOU Long-fa, LI Tian-lai, FAN Yong-huai, ZHANG Ke-min
  

  1. (沈阳农业大学园艺学院/设施园艺省部共建教育部重点实验室)
  • Received:2010-07-02 Revised:2010-08-09 Online:2011-02-01 Published:2011-02-01
  • Contact: LI Tian-lai

Abstract:

【Objective】In order to reveal the regulation function of calcium on photosynthesis of tomato leaves under sub-high temperature stress, the effects of CaCl2 on photosynthesis and fluorescence of PS Ⅱand PS Ⅰ under sub-high temperature stress were studied. 【Method】In order to select a appropriate concentration, the tomatoes grown in greenhouse were pretreated with 0, 10 and 30 mg?L-1CaCl2 during the period of sub-high temperature, and then photosynthesis, chlorophyll fluorescence of PS Ⅱand PS Ⅰ were analyzed for the tomatoes pretreated with CaCl2, with the appropriate concentration, Ca2+ chelator EGTA and CaM antagonist TFP. 【Result】 The net photosynthetic rate(Pn) increased at three concentrations of CaCl2 treatments under sub-high temperature stress, especially in the treatment of 10 mg?L-1CaCl2. Under sub-high temperature stress, the maximal photochemical efficiency (FPSII) of PS Ⅱ, photochemical quantum yield of PS Ⅱ and PS Ⅰ[Y(Ⅱ) and Y(Ⅰ)], quantum yield of non-photochemical energy dissipation in PS I due to donor side limitation [Y(ND)] in the tomato leaves pretreated with CaCl2 were much higher than that of control, while quantum yield of non-photochemical energy dissipation in PS I due to acceptor side limitation [Y(NA)] was much less than that of the control. EGTA and TFP treatments had negative effect.【Conclusion】The treatment of 10 mg?L-1 CaCl2 could improve photosynthesis of tomato leaves under sub-high temperature stress. And calcium played an important role in regulating stomatal movements and protecting PS Ⅰ PS Ⅱ not to be injured.

Key words: tomato, photosynthesis, chlorophyll fluorescence, PS Ⅱ, PS Ⅰ, calcium

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