Effect of elevated CO2 on degradation of azoxystrobin and soil microbial activity in rice soil

被引:23
作者
Manna, Suman [1 ]
Singh, Neera [1 ]
Singh, V. P. [2 ]
机构
[1] Indian Agr Res Inst, Div Agr Chem, New Delhi 10012, India
[2] Indian Agr Res Inst, Div Plant Physiol, New Delhi 10012, India
关键词
Elevated carbon dioxide; Azoxystrobin; Rice; Degradation; Microbial activity; ATMOSPHERIC CO2; ENRICHMENT FACE; BIOMASS CARBON; CLIMATE-CHANGE; PLANT-GROWTH; FATE; COMMUNITIES; PESTICIDES; BEHAVIOR; IMPACTS;
D O I
10.1007/s10661-012-2763-1
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
An experiment was conducted in open-top chambers (OTC) to study the effect of elevated CO2 (580 +/- 20 mu mol mol(-1)) on azoxystrobin degradation and soil microbial activities. Results indicated that elevated CO2 did not have any significant effect on the persistence of azoxystrobin in rice-planted soil. The half-life values for the azoxystrobin in rice soils were 20.3 days in control (rice grown at ambient CO2 outdoors), 19.3 days in rice grown under ambient CO2 atmosphere in OTC, and 17.5 days in rice grown under elevated CO2 atmosphere in OTC. Azoxystrobin acid was recovered as the only metabolite of azoxystrobin, but it did not accumulate in the soil/water and was further metabolized. Elevated CO2 enhanced soil microbial biomass (MBC) and alkaline phosphatase activity of soil. Compared with rice grown at ambient CO2 (both outdoors and in OTC), the soil MBC at elevated CO2 increased by twofold. Elevated CO2 did not affect dehydrogenase, fluorescein diacetate, and acid phosphatase activity. Azoxystrobin application to soils, both ambient and elevated CO2, inhibited alkaline phosphates activity, while no effect was observed on other enzymes. Slight increase (1.8-2 A degrees C) in temperature inside OTC did not affect microbial parameters, as similar activities were recorded in rice grown outdoors and in OTC at ambient CO2. Higher MBC in soil at elevated CO2 could be attributed to increased carbon availability in the rhizosphere via plant metabolism and root secretion; however, it did not significantly increase azoxystrobin degradation, suggesting that pesticide degradation was not the result of soil MBC alone. Study suggested that increased CO2 levels following global warming might not adversely affect azoxystrobin degradation. However, global warming is a continuous and cumulative process, therefore, long-term studies are necessary to get more realistic assessment of global warming on fate of pesticide.
引用
收藏
页码:2951 / 2960
页数:10
相关论文
共 37 条
[1]   Azoxystrobin and soil interactions: degradation and impact on soil bacterial and fungal communities [J].
Adetutu, E. M. ;
Ball, A. S. ;
Osborn, A. M. .
JOURNAL OF APPLIED MICROBIOLOGY, 2008, 105 (06) :1777-1790
[2]   Climate change and decreasing herbicide persistence [J].
Bailey, SW .
PEST MANAGEMENT SCIENCE, 2004, 60 (02) :158-162
[3]   Effects of elevated CO2 concentration on rhizodeposition from Lolium perenne grown on soil exposed to 9 years of CO2 enrichment [J].
Bazot, S ;
Ulff, L ;
Blum, H ;
Nguyen, C ;
Robin, C .
SOIL BIOLOGY & BIOCHEMISTRY, 2006, 38 (04) :729-736
[4]   Fungicide impacts on microbial communities in soils with contrasting management histories [J].
Bending, Gary D. ;
Rodriguez-Cruz, M. Sonia ;
Lincoln, Suzanne D. .
CHEMOSPHERE, 2007, 69 (01) :82-88
[5]   Spatial variation in the degradation rate of the pesticides isoproturon, azoxystrobin and diflufenican in soil and its relationship with chemical and microbial properties [J].
Bending, GD ;
Lincoln, SD ;
Edmondson, RN .
ENVIRONMENTAL POLLUTION, 2006, 139 (02) :279-287
[6]  
Black C.A., 1965, Methods of Soil Analysis, Part I: Physical and Mineralogical Properties
[7]   Impacts of climate change on the fate and behaviour of pesticides in surface and groundwater - a UK perspective [J].
Bloomfield, J. P. ;
Williams, R. J. ;
Gooddy, D. C. ;
Cape, J. N. ;
Guha, P. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2006, 369 (1-3) :163-177
[8]   Impacts of Climate Change on Indirect Human Exposure to Pathogens and Chemicals from Agriculture [J].
Boxall, Alistair B. A. ;
Hardy, Anthony ;
Beulke, Sabine ;
Boucard, Tatiana ;
Burgin, Laura ;
Falloon, Peter D. ;
Haygarth, Philip M. ;
Hutchinson, Thomas ;
Kovats, R. Sari ;
Leonardi, Giovanni ;
Levy, Leonard S. ;
Nichols, Gordon ;
Parsons, Simon A. ;
Potts, Laura ;
Stone, David ;
Topp, Edward ;
Turley, David B. ;
Walsh, Kerry ;
Wellington, Elizabeth M. H. ;
Williams, Richard J. .
ENVIRONMENTAL HEALTH PERSPECTIVES, 2009, 117 (04) :508-514
[9]   Altered soil microbial community at elevated CO2 leads to loss of soil carbon [J].
Carney, Karen M. ;
Hungate, Bruce A. ;
Drake, Bert G. ;
Megonigal, J. Patrick .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (12) :4990-4995
[10]  
CASIDA L. E., 1964, SOIL SCI, V98, P371, DOI 10.1097/00010694-196412000-00004