4.7 Article

Morphological, Histological, and Glyphosate Residue Analysis of Helianthus annuus L. Plants Treated with Glyphosate

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AGRICULTURE-BASEL
卷 13, 期 5, 页码 -

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MDPI
DOI: 10.3390/agriculture13051014

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glyphosate; AMPA; Helianthus; sustainability; toxicology

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Recent studies have found that glyphosate and its metabolite, AMPA, can accumulate in plants and have an impact on non-target plants. This study investigated the effects of indirectly spraying glyphosate on Helianthus annuus L. plants. The results showed that glyphosate caused morphological and histological damage to the plants, leading to reduced growth and biomass. Both glyphosate and AMPA were detected in all parts of the plants, indicating that glyphosate can be incorporated into plants even through indirect application.
Several recent studies have shown that glyphosate and its metabolite, aminomethylphosphonic acid (AMPA), resist rapid degradation and, therefore, can accumulate in plants. Continuing our previous research, we aimed to investigate the effect of indirectly spraying glyphosate on leaves and soil on non-target plants in the case of Helianthus annuus L. The plants were treated with glyphosate in their 5-6 leaf stages, the effects of which were assessed two weeks later from a morphological and histological point of view, as an evaluation of the residues of glyphosate and its metabolite, AMPA. They had an effect on both treated groups. In the case of the morphological parameters (plant height, number of leaves, and fresh and dried root and green mass), the data of the treated plants were statistically lower than in the case of the control group. The epidermis and the transport tissue system were damaged, and tissue death was observed in plants exposed to glyphosate. Both compounds were detected in all plant parts (roots, stems, lower leaves, and upper leaves), well above the limit of detection (0.025 mg/kg) and limit of quantitation 0.075 mg/kg showing a statistical difference with the control plants. This proved that glyphosate is incorporated into the plant organism even when applied indirectly.

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