期刊文献+

氨对紫背浮萍和稀脉浮萍超微结构的影响(英文) 被引量:4

Effect of ammonia on the ultrastructure of duckweed species
在线阅读 下载PDF
导出
摘要 选择紫背浮萍和稀脉浮萍,利用SEM和TEM分别对在对照液硝酸盐氮培养液和含有较高氨氮培养液中生长个体的超微结构进行了观察和分析.结果表明,与在硝酸盐氮培养液中生长的个体相比,在氨氮培养液中生长的2种浮萍上表皮的气孔张开程度明显地增大,下表皮细胞突起的细胞壁消失,细胞发生明显的变形;生长在含有氨氮培养液中的2种浮萍个体的叶绿体内膜结构均受到严重的损伤,叶绿体中淀粉粒明显增多,整个叶绿体处于解体状态,而生长于硝酸盐氮培养液中浮萍的叶绿体则完好无损. The changes of ultrastructure under scanning electron microscopy and transmission electron microscopy were described in two duckweed species of Lenma aequinoctialis and Spirodela polyrrihza cultivated in ammonia medium in present study, contrasted by the ones growing under nitrate medium. The result showed that outstanding cell wall in lower epidermis became crinkly and disappeared partly in fronds under ammonia medium. The stomata on the upper epidermis opened much wider far more than ones under nitrate medium. The chloroplast membrane limiting became blurred and disappeared partly in fronds under ammonia medium. The whole chloroplast of fronds under ammonia medium presented the trending of disassembly. And the internal membrane network including grana lameilae and stroma lamellae break off. In contrast to ones under nitrate medium, more starch grain appeared amongst stroma. Based on the results of observation, the toxicity mechanism of unionized ammonia ( NH3 ) and ammonium ion ( NH4^+ ) to duckweed were respectively discussed.
出处 《华南农业大学学报》 CAS CSCD 北大核心 2005年第4期77-80,共4页 Journal of South China Agricultural University
基金 MajorStateBasicResearchDevelopmentProgramofChina(G1999045711)
关键词 浮萍 超微结构 毒性 duckweeds ammonia ultrastructure toxicity
  • 相关文献

参考文献13

  • 1BERGMAN B A, CHENG J, CLASSEN J, et al. Nutrient removal from swine lagoon effluent by duckweed[J]. Transaction of ASAE, 2000, 43(2): 263-269.
  • 2GIJZEN H J. Anerobes, aerobes and phototrophs: A winning team for wastewater management[J]. Water Science and Technology, 2001, 44 (8): 123-132.
  • 3RANA N, AGAMIB M, ORON G. A pilot study of constructed wetlands using duckweed (Lemna gibba L) for treatment of domestic primary effluent in Israel[J]. Water Research, 2004, 38:2 240-2 247.
  • 4REED S C, CRITES R W, MIDDLEBROOKS E. Natural system for waste management and treatment[M]. 2nd ed. New York: McGraw-Hill, Inc, 1995. 158.
  • 5ZIMMOA O R. van DER STEEN N P, GIJZEN H J. Comparison of ammonia volatilisation rates in algae and duckweed-based waste stabilization ponds treating domestic wastewater[J]. Water Research, 2003, 37: 4 587-4 594.
  • 6BERGMAN B A, CHENG J, CLASSEN J J, et al. In vitro selection of duckweed geographical isolates for potential use in swine lagoon effluent renovation [J]. Bioresource Technology, 2000, 73 (1): 13-20.
  • 7RUSOFF L L, BLAKENEY E W, CULLY D D. Duckweeds (Lemnaceae family): A potential source of protein and amino acids [J]. Journal of Agricultural Food Chemistry, 1980, 28: 848-850.
  • 8CLEMENT B, BOUVET Y. Assessment of landfill leachate toxicity using duckweed Lemna minor[J]. The Science of Total Environment, 1993, 41(suppl):1 179-1 190.
  • 9KORNER S, DAS S K, VEENSTRA S, et al. The effect of pH variation at the ammonium/ammonia equilibrium in wastewater and its toxicity to Lemna gibba[J]. Aquatic Botany, 2001, 71: 71-78.
  • 10WANG W. Ammonia toxicity to macrophyte (common duckweed and rice) using static and renewal method[J]. Environment Toxicity and Chemistry, 1991, 10:1 173-1 177.

同被引文献44

引证文献4

二级引证文献20

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部