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Effects of different water potentials on leaf gas exchange and chlorophyll fluorescence parameters of cucumber during postflowering growth stage.

LIN Lu1,2, TANG Yun2, ZHANG Ji-tao2, YAN Wan-li2, XIAO Jian-hong2, DING Chao2, DONG Chuan1, JI Zeng-shun2   

  1. (1Institute of Environmental Sciences, Shanxi University, Taiyuan 030006, China; 2Research Center of Modern Agriculture, Shanxi Academy of Agricultural Sciences, Taiyuan 030031, China)
  • Online:2015-07-18 Published:2015-07-18

Abstract: Impacts of different substrate water potentials (SWP) on leaf gas exchange and chlorophyll fluorescence parameters of greenhouse cucumber during its postflowering growth stage were analyzed in this study. The results demonstrated that -10 and -30 kPa were the critical values for initiating stomatal and nonstomatal limitation of drought stress, respectively. During the stage of no drought stress (-10 kPa<SWP≤0 kPa), gas exchange parameters and chlorophyll fluorescence parameters were not different significantly  among treatments. During the stage of stomatal limitation of drought stress (-30 kPa<SWP≤-10 kPa), with the decrease of SWP, the stomatal conductance (gs), intercellular carbon dioxide concentration (Ci), net photosynthetic rate (Pn), apparent quantum efficiency (ε), transpiration rate (Tr), carboxylation efficiency (CE), maximum Rubisco
limited rate of carboxylation (Vc max), maximum rate of electron transport (Jmax), rate of triosephosphate utilization (VTPU), maximum and actual quantum efficiency of PSII (ΦPSⅡ and Fv/Fm) and photochemical quenching (qP) decreased, but the light compensation point (LCP), dark respiration rate (Rd), carbon dioxide compensation point (CCP), stomatal limitation value (Ls), instantaneous water use efficiency (WUEi) and non-photochemical quenching (qN) increased. In this stage, gas exchange parameters changed faster than chlorophyll fluorescence parameters and differed significantly among treatments. During the stage of nonstomatal limitation of drought stress (-45 kPa≤SWP≤-30 kPa), with the decrease of SWP, light saturation point (LSP), Rd, CE, Vc max, VTPU, Ls, WUEi, ΦPSII, Fv/Fm and qP decreased, while CCP, Ci and qN increased. In this stage, chlorophyll fluorescence parameters changed faster than gas exchange parameters and differed significantly among treatments. In production of greenhouse cucumber, -10 and -5 kPa should be the lower and upper limit value of irrigation, respectively. The stomatal limitation of drought stress could be relieved by irrigation before SWP decreased to -30 kPa. While, the non-stomatal injury of drought stress would be unrecoverable once SWP decreased to lower than -30 kPa.