Author:
da Silva Karlo Alves,Nicola Vitoria Beltrame,Dudas Rafaela Tavares,Demetrio Wilian Carlo,Maia Lilianne dos Santos,Cunha Luis,Bartz Marie Luise Carolina,Brown George Gardner,Pasini Amarildo,Kille Peter,Ferreira Nuno G. C.,de Oliveira Cíntia Mara Ribas
Abstract
AbstractWith the growing global concern on pesticide management, the relationship between its environmental recalcitrance, food security and human health has never been more relevant. Pesticides residues are known to cause significant environmental contamination. Here, we present a case study on long-term no-tillage farming systems in Brazil, where Glyphosate (GLY) has been applied for more than 35 years. GLY and its main breakdown product, aminomethylphosphonic acid (AMPA) were determined in topsoil (0–10 cm) samples from no-tillage fields and nearby subtropical secondary forests by high-performance liquid chromatography coupled with a fluorescence detector. In addition, the presence of carbamates, organochlorines, organophosphates and triazines were also screened for. GLY and AMPA were present in all soil samples, reaching values higher than those described for soils so far in the literature. A significant decrease for AMPA was observed only between the secondary forest and the farm's middle slope for site B. GLY and AMPA were observed respectively at peak concentrations of 66.38 and 26.03 mg/kg soil. GLY was strongly associated with forest soil properties, while AMPA associated more with no-tillage soil properties. Soil texture was a significant factor contributing to discrimination of the results as clay and sand contents affect GLY and AMPA retention in soils. This was the first study to report DDT and metabolites in consolidated no-tillage soils in Brazil (a pesticide fully banned since 2009). Based on human risk assessment conducted herein and the potential risk of GLY to local soil communities, this study offers a baseline for future studies on potential adverse effects on soil biota, and mechanistic studies.
Funder
Fundação Araucária
Cardiff University Global Challenge Research Fund
National Council for Scientific and Technological-CNPq
Publisher
Springer Science and Business Media LLC
Reference110 articles.
1. Ippolito, A. et al. Modeling global distribution of agricultural insecticides in surface waters. Environ. Pollut. 198, 54–60 (2015).
2. Kehoe, L. et al. Biodiversity at risk under future cropland expansion and intensification. Nat. Ecol. Evol. 1, 1129–1135 (2017).
3. FAO, Food and Agriculture Organization. Pollution from pesticides. 112 (2011). Accessed 11 Nov 2020. http://www.fao.org/fileadmin/templates/cpesap/C-RESAP_Info_package/Links/Module_4/Pollution_from_pesticides.pdf.
4. Carvalho, F. P. Pesticides, environment, and food safety. Food Energy Secur. 6, 48–60 (2017).
5. Pelaez, V. M., Da Silva, L. R., Guimarães, T. A., Dal Ri, F. & Teodorovicz, T. A (des)coordenação de políticas para a indústria de agrotóxicos no Brasil. Rev. Bras. Inovação 14, 153 (2017).
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