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Differential phytotoxicity of glyphosate in maize seedlings following applications to roots or shoot
Authors:C ALISTER  M KOGAN  & I PINO†
Institution:Department of Plant Science, School of Agronomy and Forestry, Pontificia Universidad Católica de Chile (PUC), Santiago, Chile;, and Chilean Atomic Energy Commission (CCHEN), Agricultural Section, Santiago, Chile
Abstract:The transport and differential phytotoxicity of glyphosate was investigated in maize seedlings following application of the herbicide to either roots or shoots. One-leaf maize seedlings (Zea mays L.) were maintained in graduated cylinders (250 mL) containing nutrient solution. Half of the test plants were placed in cylinders (100 mL) containing different 14C-glyphosate concentrations; the remainder received foliar appliation of 14C-glyphosate. After 26 h, the roots and the treated leaves were washed with distilled water, and the plants placed again in cylinders (250 mL) containing fresh nutrient solution for 5 days. Plants were weighed, and split into root, seed, cotyledon, coleoptile, mesocotyl, first leaf and apex. The recovery of 14C-glyphosate was over 86%. For both application treatments, the shoot apex was the major sink of the mobilized glyphosate (47.9 ± 2.93% for root absorption and 45.8 ± 2.91% for foliar absorption). Expressed on a tissue fresh weight basis, approximately 0.26 μg a.e. g?1 of glyphosate in the apex produced a 50% reduction of plant fresh weight (ED50) when the herbicide was applied to the root. However, the ED50 following foliar absorption was only 0.042 μg a.e. g?1 in the apex, thus maize seedlings were much more sensitive to foliar application of the herbicide.
Keywords:glyphosate  absorption  foliar activity  root activity  translocation  distribution  ED50
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