UPTAKE OF ARSENIC BY ASTER-TRIPOLIUM IN RELATION TO RHIZOSPHERE OXIDATION

被引:118
作者
OTTE, ML [1 ]
DEKKERS, MJ [1 ]
ROZEMA, J [1 ]
BROEKMAN, RA [1 ]
机构
[1] FREE UNIV AMSTERDAM, DEPT ECOL & ECOTOXICOL, 1081 HV AMSTERDAM, NETHERLANDS
来源
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE | 1991年 / 69卷 / 12期
关键词
ARSENIC; ASTER-TRIPOLIUM; IRON; RHIZOSPHERE; SALT MARSH;
D O I
10.1139/b91-335
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Arsenic present in salt marsh soil is taken up by plants and subsequently transferred to other parts of the ecosystem. The reduced state of the bulk soil of salt marshes favours the mobility of arsenic. In the rhizosphere of plants however, arsenic may be immobilized owing to oxidation of arsenic (III) to less mobile arsenic (V) and adsorption to iron (hydr-)oxides. In a field survey iron concentrations in the vicinity of roots of Aster tripolium were higher than in the bulk soil. In a greenhouse experiment accumulation of arsenic and iron in the rhizosphere occurred, which could be due to the oxidizing activity of plant roots and (or) microorganisms. This process stimulates uptake of arsenic by salt marsh plants. The formation of an iron plaque seems to play an important role in the uptake of arsenic by salt marsh plants, as was indicated by an incubation experiment with root parts of A. tripolium. The results of the experiments indicate that iron plays a key factor in determining the mobility of arsenic in salt marsh soils and in the uptake and translocation processes in the plants. Although oxidation processes in the rhizosphere enhance uptake of arsenic, it may be an important detoxification mechanism for the plants.
引用
收藏
页码:2670 / 2677
页数:8
相关论文
共 42 条
[1]   PLANT ZONATION AND THE EFFECTS OF THE SPRING-NEAP TIDAL CYCLE ON SOIL AERATION IN A HUMBER SALT-MARSH [J].
ARMSTRONG, W ;
WRIGHT, EJ ;
LYTHE, S ;
GAYNARD, TJ .
JOURNAL OF ECOLOGY, 1985, 73 (01) :323-339
[2]  
Armstrong W., 1978, Plant Life in Anaerobic Environments. Processes in Anaerobiosis. (Hook, D.D.
[3]  
Crawford, R.M.M., Editors)., P269
[4]  
ASHER CJ, 1979, J PLANT PHYSL, V6, P495
[5]   ROLE OF THE RHIZOSPHERE IN UTILIZATION OF INORGANIC IRON-III-COMPOUNDS BY CORN PLANTS [J].
AZARABADI, S ;
MARSCHNER, H .
ZEITSCHRIFT FUR PFLANZENERNAHRUNG UND BODENKUNDE, 1979, 142 (05) :751-764
[6]   CHARACTERISTICS OF COATINGS FORMED ON RICE ROOTS AS AFFECTED BY IRON AND MANGANESE ADDITIONS [J].
BACHA, RE ;
HOSSNER, LR .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1977, 41 (05) :931-935
[7]   DISPLACEMENT OF ADSORBED ANIONS FROM SOIL .2. DISPLACEMENT OF PHOSPHATE BY ARSENATE [J].
BARROW, NJ .
SOIL SCIENCE, 1974, 117 (01) :28-33
[8]   INTERACTIONS BETWEEN ARSENIC AND IRON OXYHYDROXIDES IN LACUSTRINE SEDIMENTS [J].
BELZILE, N ;
TESSIER, A .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1990, 54 (01) :103-109
[9]  
BELZILE N, 1989, HEAVY METALS ENV INT, V1, P512
[10]   PREVENTION OF STRESS IN IRON-METABOLISM OF PLANTS [J].
BIENFAIT, HF .
ACTA BOTANICA NEERLANDICA, 1989, 38 (02) :105-129