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土壤干旱胁迫对玉米叶片水分状况、膜透性及酶抗氧化系统的影响
作者姓名:BAI Li-Ping  SUI Fang-Gong  GE Ti-D  SUN Zhao-Hui  LU Yin-Yan  ZHOU Guang-Sheng
作者单位:[1]Laboratory of Quantitative Vegetation Ecology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093 (China) [2]Laiyang Agricultural College, Laiyang, Shandong 265200 (China)
摘    要:A simulation experiment on the responses of maize (Zea mays L.) from the third leaf stage to maturity for different soil water levels (well-watered, moderately stressed, and severely stressed) was conducted by controlling irrigation and using a mobile rain shelter in a neutral loam, meadow soil to determine the effects on leaf water status, membrane permeability and enzymatic antioxidant system for different growth stages. The results indicated that drought stress relied on drought intensity and duration, with more severe drought stress creating more serious effects on maize. Compared with wellwatered conditions, during the silking and blister stages moderate stress did not significantly change the relative water content (RWC) and did change significantly the relative conductivity (RC) (P 〈 0.05) of the leaves; however, severe stress did significantly decrease (P 〈 0.01) the leaf RWC and increase (P 〈 0.01) membrane permeability (leaf relative conductivity). Furthermore, under severe drought stress antioxidant enzyme activities declined significantly (P 〈 0.01) in later stages, namely for superoxide dismutase (SOD) the tasseling and blister stages, for peroxidase (POD) the milk stage, and for catalase (CAT) during the tasseling, blister, and milk stages. Meanwhile, membrane lipid peroxidation (measured as malondialdehyde content) significantly increased (P 〈 0.01) in all stages.

关 键 词:干旱地区  玉米  渗透性  抗氧化酶
收稿时间:2005-08-16
修稿时间:2006-01-27

Effect of soil drought stress on leaf water status, membrane permeability and enzymatic antioxidant system of maize
BAI Li-Ping,SUI Fang-Gong,GE Ti-D,SUN Zhao-Hui,LU Yin-Yan,ZHOU Guang-Sheng.Effect of soil drought stress on leaf water status, membrane permeability and enzymatic antioxidant system of maize[J].Pedosphere,2006,16(3):326-332.
Authors:BAI Li-Ping  SUI Fang-Gong  GE Ti-D  SUN Zhao-Hui  LU Yin-Yan and ZHOU Guang-Sheng
Institution:Laboratory of Quantitative Vegetation Ecology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093,China.
Abstract:A simulation experiment on the responses of maize (Zea mays L.) from the third leaf stage to maturity for different soil water levels (well-watered, moderately stressed, and severely stressed) was conducted by controlling irrigation and using a mobile rain shelter in a neutral loam, meadow soil to determine the effects on leaf water status, membrane permeability and enzymatic antioxidant system for different growth stages. The results indicated that drought stress relied on drought intensity and duration, with more severe drought stress creating more serious effects on maize. Compared with well-watered conditions, during the silking and blister stages moderate stress did not significantly change the relative water content (RWC) and did change significantly the relative conductivity (RC) (P < 0.05) of the leaves; however, severe stress did significantly decrease (P < 0.01) the leaf RWC and increase (P < 0.01) membrane permeability (leaf relative conductivity). Furthermore, under severe drought stress antioxidant enzyme activities declined significantly (P < 0.01) in later stages, namely for superoxide dismutase (SOD) the tasseling and blister stages, for peroxidase (POD) the milk stage, and for catalase (CAT) during the tasseling, blister, and milk stages. Meanwhile, membrane lipid peroxidation (measured as malondialdehyde content) significantly increased (P < 0.01) in all stages.
Keywords:drought stress  enzymatic antioxidant system  leaf water status  maize  membrane permeability
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