期刊文献+

蚯蚓(Eisennia foetida)对玉米根际As、P形态转化及其吸收的影响 被引量:8

Effects of Earthworm(Eisennia foetida) on As,P Uptake by Maize and As,P Fractional Transformation in the Rhizosphere
下载PDF
导出
摘要 从湖南省石门县的As矿区附近采集不同程度As污染的农田土壤,通过盆栽添加秸秆和接种蚯蚓等处理来研究蚯蚓对玉米根际As、P形态转化及其吸收的影响,10周后收获玉米,测定了玉米生物量、体内As、P含量以及根际土壤中As、P形态.结果发现,与对照相比,不论土壤含As浓度高低,接种蚯蚓或同时施加秸秆增加玉米地上部和地下部的生物量,最高分别高出对照149%和222%.在中、高As土壤中,玉米地下部As浓度是蚯蚓和同时添加秸秆处理中最高,地上部是单接蚯蚓处理高于单施秸秆处理.不同As浓度下,地下部P浓度是单接蚯蚓处理的最高,地上部是单施秸秆处理的最高.逐级提取法分析根际土壤As、P形态表明,低As土壤中Ca-P影响玉米吸收As(r=0.981),中、高As土壤中晶态的Fe、Al水合氧化物态As不利于玉米吸收Al-P,相关性系数分别为0.953、0.997.接种蚯蚓或同时施加秸秆,促进根际土壤中非专性吸附态的、Fe和Al结合态的As形态含量以及O-P含量升高,在中、高As土壤中效果更明显. A pot experiment was conducted to examine the roles of earthworm in As uptake from original As-polluted soil by maize (Zea rnays L. ), and their effects on As, P fractions in the rhizosphere. The As-polluted soils with three As levels were collected from the arable soil near As mine. The plants were harvested after 10 weeks of growth. Dry weight (DW) and P, As concentrations of plants, as well as As and P fractions of the rhizospheric soil, were determined. The results showed that inoculated earthworm or appended rice straw increased maximal 149%, 222% DW of root and shoot, respectively. At the medium and high soil As levels, root As concentration in the soil treated by earthworm and rice straw was highest among all treatments, and earthworm increased more As concentration of shoot than rice straw did. In different soil As levels, root P concentration in the soil treated by earthworm was highest, and shoot P by rice straw. Ca-P affected maize absorbing As at the low soil As level( r = 0.981 ), and maize absorbing Al-P was restrained by As involved in well-crystallized hydrous oxides of Fe and Al at the medium ( r = 0.953)and high ( r = 0.997)soil As levels. The concentration of non-specially absorbed As and As combined with Fe or Al and of O-P increased at the soil inoculated earthworm or/and appended rice straw at the same time. These results indicated that earthworm was more valuable for plant developing than rice straw was.
出处 《环境科学》 EI CAS CSCD 北大核心 2007年第7期1600-1606,共7页 Environmental Science
基金 中国科学院创新团队国际合作伙伴计划项目(CXTD-Z2005-4) 江苏省社会发展项目(BS2006025)
关键词 蚯蚓 玉米 砷污染土壤 形态 秸秆 earthworm maize As-polluted soil phosphorus fraetionation rice straw
  • 相关文献

参考文献21

  • 1骆永明,滕应,过园.土壤修复——新兴的土壤科学分支学科[J].土壤,2005,37(3):230-235. 被引量:77
  • 2高岩,骆永明.蚯蚓对土壤污染的指示作用及其强化修复的潜力[J].土壤学报,2005,42(1):140-148. 被引量:94
  • 3Edwards C A,BohlenP J.Biology and ecology of earthworms[M].(3rd edition).London:Chapman and Hall,1996.
  • 4Quaghebeur M,Rengel Z.The distribution of arsenate and arsenite in shoots and roots of Holcus lanatus is influenced by arsenic tolerance and arsenate and phosphate supply[J].Plant Physicl,2003,132:1600~1609.
  • 5Langdon C J,Piearce T G,Meharg A A,et al.Survival and behaviour of the earthworms Lumbricus rubellus and Dendrodrilus rubidus from arsenate-contaminated and non-contaminated sites[J].Soil Biol Biochem,2001,33:1239~1244.
  • 6Fitz W J,Wellzel W W.Arsenic transformations in the soilrhizospherr-plant system:fundamental and potential application to phytoremediation[J].J Biotechnol,2002,99:259~278.
  • 7鲁如坤.土壤农化分析方法[M].北京:中国农业出版社,2000.107-108,147-197,306-315.
  • 8Wenzel w W,Kirchbaumer N,Prohaska T.Arsellic fractionation in soils using an improved sequential extraction procedure[J].Anal Chim Acta,2001,436:309~323.
  • 9Zhao F J,Wang J R,Barker J H A,et al.The role of phytochelatins in arsenic tolerance in the hyperaccumulator Pteris vittata[J].New Phytol,2003,159:403~410.
  • 10Amador J A,G(ǒ)rres J H.Roles of the anecic earthworm Lumbricus terrestr/s L.in the distribution of plant residue nitrogen in a corn (Zea mays)-soil system[J].Appl Soil Ecol,2005,30:203~214.

二级参考文献124

  • 1周忠和,骆永明,董云社,袁训来,高星.浅谈我国地球环境与生命过程研究中的一些科学问题[J].科学通报,2005,50(2):195-200. 被引量:5
  • 2王振中,张友梅,胡觉莲,郑云有,胡朝阳,郭永灿,赖勤,颜亨梅,邓继福.土壤重金属污染对蚯蚓(Opisthopora)影响的研究[J].环境科学学报,1994,14(2):236-243. 被引量:73
  • 3陈同斌.土壤溶液中的砷及其与水稻生长效应的关系[J].生态学报,1996,16(2):147-153. 被引量:44
  • 4杨文婕,刘更另.磷和硫对空心菜吸收砷的影响[J].环境化学,1996,15(4):374-379. 被引量:5
  • 5尹文英等著.中国土壤动物[M].北京:科学出版社,2002.1-4.
  • 6Stenersen J, et al. Lysosomal fragility in earthworms ( gizenia veneta) exposed to heavy metal contaminated soils from two abandoned pyrite ore mines in Southern Norway. Water, Air, and Soil Pollution, 2003, 142(1 - 4) : 27 - 37.
  • 7Reinecke S A, Prinsloo M W, Reinecke A J. Resistance of Eisenia fetida (Oligochaeta) to cadmium after long-term exposure. Ecotoxicology and Environmental Safety, 1999, 42(1): 75 - 80.
  • 8Langdon C J, Piearce T G, Meharg A A, et al. Interactions between earthworms and arsenic in the soil environment: A review. Environmental Pollution, 2003, 124(3) : 361 - 373.
  • 9Kennette D, Hendershot W, Tomlin A, et al. Uptake of trace metals by the earthworm Lumbricus terrestris L. in urban contaminated soils. Applied Soil Ecology, 2002, 19(2): 191 - 198.
  • 10Morgan J E, Morgan A J. The distribution and intracellular compartmentation of metals in the endogeic earthworm Aporrectodea callginosa sampled from an unpolluted and a metal-contaminated site.Environmental Pollution, 1998, 99(2) : 167 - 175.

共引文献337

同被引文献283

引证文献8

二级引证文献123

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