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应用生态学报 ›› 2002, Vol. ›› Issue (4): 459-462.

• 研究论文 • 上一篇    下一篇

重金属对土壤中小麦种子发芽与根伸长抑制的生态毒性

宋玉芳1, 周启星1, 许华夏1, 任丽萍1, 龚平2   

  1. 1. 中国科学院沈阳应用生态研究所陆地生态过程开放研究实验室, 沈阳 110016;
    2. 加拿大国家研究院生物技术研究所, 奎北克 H4P 2R2
  • 收稿日期:2000-12-04 修回日期:2001-03-05
  • 通讯作者: 宋玉芳,女,1954年生,博士,副研究员,主要从事污染生态学研究,发表学术论文30余篇.
  • 基金资助:
    国家自然科学基金(39700022);国家重点基础研究发展规划项目(G1999011808);中国科学院“百人计划”资助项目.

Eco-toxicology of heavy metals on the inhibition of seed germination and root elongation of wheat in soils

SONG Yufang1, ZHOU Qixing1, XU Huaxia1, REN Liping1, GONG Ping2   

  1. 1. Laboratory of Ecological Process of Terrestrial Ecosystem, Chinese Academy of Sciences, Shenyang 110016;
    2. Biotechnology Research Institute, National Research Council of Canada, 6100 Royalmount Avenue, Montreal, Queber H4P 2R2, Canada
  • Received:2000-12-04 Revised:2001-03-05

摘要: 测定了4种土壤(红壤、草甸棕壤、暗棕壤和栗钙土)条件下,Cu、Zn、Pb和Cd单一污染对小麦种子发芽与根伸长抑制率及其复合污染效应(暗棕壤条件下)结果表明,同一浓度下,重金属对小麦根伸长抑制率均明显大于对种子发芽抑制率.植物根对重金属污染的生态毒性比种子发芽敏感.土壤有机质和土壤N含量与Cu、Zn、Pb和Cd污染对小麦根伸长抑制率显著负相关(ROR2=0.91, RK-N2=0.92),土壤pH和阳离子交换量与Cu、Zn、Pb和Cd污染对小麦根伸长抑制率的相关性不显著(RpH2= 0.62, RCEC2=0.60).在单一污染对小麦根伸长为刺激作用浓度(较低浓度)或为抑制作用浓度下(较高浓度),复合污染均表现为协同作用.

关键词: 土壤污染, 重金属, 种子发芽, 根伸长, 抑制率, 复合污染, 羧化效率, 间作玉米, 行比, 光合特性

Abstract: The eco-toxicity of Cu, Zn, Pb, and Cd in the single form was tested with four types of soils(red loam soils, meadow brown soils, chestnut soils, and dark brown soik) and their combined effect was determined with meadow brown soils. The results showed that with the same content of heavy metals, the root elongation was strongly inhabited than the seed germination, and it indicated that root was more sensitive to heavy metals pollution. The inhibition rate of heavy metals pollution on the root elongation (IRHMRE) of wheat was significantly related with the contents of organic matter (OR) and Kjedahl-nitrogen (K-N) in soils (ROR2=0.91, RK-N2=0.92). However, IRHMRE was not significantly related with soil pH as did with OR and K-N, so does the content of CEC (RpH2= 0.62, RCEC2=0.60). Whether under the low concentration of Cu, Zn, Pb, and Cd resulted in an irritated effect in root elongation, or under high concentration resulted in an inhibition effect in the single form, an synergistic effect occurred in the combined form.

Key words: Soil, Heavy metal, Seed germination, Root elongation, Inhibition rate, Combined effect, carboxylation, row ratio, photosynthesis characteristic, intercropped maize

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