Effects of lanthanum nitrate on growth and chlorophyll fluorescence characteristics of Alternanthera philoxeroides under perchlorate stress
来源期刊:JOURNAL OF RARE EARTHS2013年第8期
论文作者:谢寅峰 蔡贤雷 刘伟龙 陶功胜 陈倩 张强
文章页码:823 - 829
摘 要:To investigate the effects of exogenous lanthanum (La) on Alternanthera philoxeroides (Mart.) Griseb under perchlorate stress, changes in the growth and physiological parameters were investigated in solution culture experiments under controlled conditions. Different concentrations of La (NO 3 ) 3 were used in our study. It was shown that 0.1 and 0.5mg/L La3+ alleviated the inhibition effect of perchlorate on A. philoxeroides, including relative growth yield, dry weight of different organs, leaf area and root activity. And La3+ prevented decline in the relative chlorophyll content and chlorophyll fluorescence parameters including Fv/Fm , Fv’/Fm’, Φ PSII and ETR induced by perchlorate stress. Moreover, 0.5mg/L La3+ showed an optimal mitigative effect, while excess La3+ (5.0mg/L) led to synergistic effect on stress. Correlation analysis revealed a significant positive relationship between growth indexes and the chlorophyll fluorescence parameters, root activity and relative chlorophyll content (p<0.05). The results suggested that appropriate concentration of La3+ could effectively alleviate growth inhibition and injury of A. philoxeroides caused by perchlorate stress, and the mitigative effect of La3+ might be achieved by improving root activity, maintaining chlorophyll content and promoting photochemical efficiency of photosystem II of A. philoxeroides under perchlorate stress.
谢寅峰1,蔡贤雷1,刘伟龙2,陶功胜1,陈倩1,张强1
1. College of Forest Resources and Environment, Nanjing Forestry University2. Chengdu Institute of Mountain Hazards and Envi- ronment, Chinese Academy of Sciences
摘 要:To investigate the effects of exogenous lanthanum (La) on Alternanthera philoxeroides (Mart.) Griseb under perchlorate stress, changes in the growth and physiological parameters were investigated in solution culture experiments under controlled conditions. Different concentrations of La (NO 3 ) 3 were used in our study. It was shown that 0.1 and 0.5mg/L La3+ alleviated the inhibition effect of perchlorate on A. philoxeroides, including relative growth yield, dry weight of different organs, leaf area and root activity. And La3+ prevented decline in the relative chlorophyll content and chlorophyll fluorescence parameters including Fv/Fm , Fv’/Fm’, Φ PSII and ETR induced by perchlorate stress. Moreover, 0.5mg/L La3+ showed an optimal mitigative effect, while excess La3+ (5.0mg/L) led to synergistic effect on stress. Correlation analysis revealed a significant positive relationship between growth indexes and the chlorophyll fluorescence parameters, root activity and relative chlorophyll content (p<0.05). The results suggested that appropriate concentration of La3+ could effectively alleviate growth inhibition and injury of A. philoxeroides caused by perchlorate stress, and the mitigative effect of La3+ might be achieved by improving root activity, maintaining chlorophyll content and promoting photochemical efficiency of photosystem II of A. philoxeroides under perchlorate stress.
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