Interaction between BSM-contaminated soils and Italian ryegrass |
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Authors: | Huashou Li Na Li Chuxia Lin Hongzhi He Guikui Chen |
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Affiliation: | 1. Institute of Tropical and Subtropical Ecology, South China Agricultural University , Guangzhou , China;2. Key Laboratory of Ecological Agriculture under China Ministry of Agriculture , South China Agricultural University , Guangzhou , China;3. Institute of Tropical and Subtropical Ecology, South China Agricultural University , Guangzhou , China;4. Australian Centre for Sustainable Catchments , University of Southern Queensland , Toowoomba , Queensland , Australia |
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Abstract: | The interaction among the bensulfuron-methyl, growth of Italian ryegrass, and soil chemical/biochemical/microbiological parameters was investigated in a microcosm experiment. The bensulfuron-methyl added to the soil can be rapidly degraded by certain fungi and actinomycetes present in the original paddy rice soil. The growth of Italian ryegrass significantly accelerated the in-soil degradation of bensulfuron-methyl in its rhizosphere. The uptake of bensulfuron-methyl by ryegrass increased with increasing dosage level of bensulfuron-methyl. However, the phytoextraction of bensulfuron-methyl by ryegrass contributed insignificantly to the total removal of the soil bensulfuron-methyl. Within the dosage range set in this study, the root development of ryegrass was not adversely affected by the presence of the soil bensulfuron-methyl although the fresh biomass of shoot was slightly reduced in the higher dosage treatments. This can be attributed to the adsorption of the added bensulfuron-methyl by soil colloids and consequently the reduction of bensulfuron-methyl level in the soil pore water to a concentration sufficiently lower than the toxic level. The growth of ryegrass significantly increased soil pH and the activities of phosphatase and peroxidase but reduced the EC and the activities of urease in the rhizospheric soil. |
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Keywords: | Bensulfuron-methyl Italian ryegrass soil paddy rice degradation rhizosphere |
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