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Chinese Journal of Ecology ›› 2025, Vol. 44 ›› Issue (11): 3620-3628.doi: 10.13292/j.1000-4890.202511.004

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Effects of elevated atmospheric CO2 concentration and CdCl2 stress on plant growth and photosynthetic performance of maize.

ZHANG Jiarui1, MO Xiaoyan1, SONG Wei2, LI Fei1, MA Chao1, HAO Lihua1, ZHENG Yunpu1, LIU Liang1*   

  1. (1School of Water Conservancy and Hydropower, Hebei University of Engineering, Handan, 056038, Hebei, China; 2Environmental Geological Survey Institute of Hebei Coalfield Geological Bureau, Shijiazhuang, 050091, China).

  • Online:2025-11-10 Published:2025-11-10

Abstract: To better understand the physiological and ecological responses of maize to elevated atmospheric CO2 concentration and soil cadmium pollution under future climate change, we investigated the interactive effects of different CO2 concentrations and CdCl2 stresses on leaf gas exchange, chlorophyll content, plant biomass as well as the MDA content and related antioxidant enzyme activities of the maize cultivar Zhengdan 958 in a split-plot experiment with environmental growth chambers. Elevated atmospheric CO2 concentration increased net photosynthetic rate (Pn) by 24% (P<0.001) and 6% (P<0.05) under mild and severe CdCl2 stress, respectively. Elevated atmospheric CO2 concentration decreased the transpiration rate and stomatal conductance of maize leaves (P<0.001), and thus increased the instantaneous water use efficiency (P<0.001). Mild CdCl2 stress significantly increased leaf biomass under ambient CO2 concentration (P<0.001), but elevated CO2 concentration decreased root biomass (P<0.05) and stem biomass of maize (P<0.001). Mild and moderate CdCl2 stress increased MDA content and POD activity in maize leaves under different CO2 concentrations, but elevated CO2 concentration reduced MDA content and POD activity. There were significantly interactive effects of CO2 concentration and CdCl2 stress on the Pn of maize plants (P=0.002). Our results suggested that elevated atmospheric CO2 concentration could increase net photosynthetic rate and instantaneous water use efficiency of maize under mild and moderate CdCl2 stress, but reduce the MDA content, thus improving the resistance of maize plants to CdCl2 stress.


Key words: maize (Zea may L.), CO2 concentration, Cd stress, gas exchange parameter, physiological process