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生态学杂志 ›› 2001, Vol. ›› Issue (1): 26-29.

• 研究报告 • 上一篇    下一篇

增强的UV-B辐射对麦田生态系统Mg和Zn累积和循环的影响

李元1, 王勋陵2, 胡之德3   

  1. 1. 云南农业大学环境科学系, 昆明650201;
    2. 兰州大学生物系, 730000;
    3. 兰州大学化学系, 730000
  • 收稿日期:1998-12-28 修回日期:1999-03-29 出版日期:2001-02-10
  • 基金资助:
    国家自然科学基金项目(39670132;39760021)

Effects of Enhanced UV-B Radiation on Accumulation and Cycling of Mg and Zn of Wheat Field Ecosystem

Li Yuan1, Wang Xunling2, Hu Zhide3   

  1. 1. Biology Dept., Lanzhou University, Lanzhou 730000;
    2. Environmental Science Dept.,Yunnan Agricultural University, Kunming 650201;
    3. Chemistry Dept., Lanzhou University, Lanzhou 730000
  • Received:1998-12-28 Revised:1999-03-29 Online:2001-02-10

关键词: 东洞庭湖, 遥感, 水文, 草洲

Abstract: Influences of enhanced ultraviolet radiation (UV B,280-315nm) on accumulation and cycling of Mg and Zn of wheat field ecosystem were investigated under field conditions.UV B radiation increased concentrations of Mg and Zn in leaves and stems,and affected concentrations of Mg and Zn in roots and spikes at various developmental stages significantly.The responses of accumulation of Mg and Zn in leaves to UV B radiation were different among developmental stages.Accumulation of Zn in stems were higher than control under 2.54 and 4.25 kJ.m-2 UV B radiation,and lower than control under 5.31 kJ.m-2 UV B radiation.At various developmental stages,UV B radiation significantly reduced accumulation of Mg in stems,roots and spikes,and accumulation of Zn in roots and spikes.UV B radiation significantly decreased accumulation of Mg and Zn in whole plants at various developmental stages.The contribution of biomass to the accumulation of Mg and Zn might be more than that of the concentrations of Mg and Zn.UV B radiation reduced output of Mg and Zn of spring wheat colonies.This might indicate decreases in output input ratio and cycling function of Mg and Zn in wheat field ecosystem.Increases in concentrations of exchangeable Mg and available Zn in soil were the results of decreases in output of Mg and Zn of spring wheat colonies. It might lead to the occurrence of higher storage of Mg and Zn in soil.

Key words: East Dongting Lake, remote sensing, hydrology, emergent herbaceous wetland.

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