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Article Abstract

This study determined the phytotoxic and cytogenetic effects of two glyphosate-based herbicides (GBHs): XEQUE MATE HT IHARA® (restricted agricultural use - GBHn) and CITROMAX MAX 20 (used for gardening, sold for the general public - GBHg). Phytotoxicity bioassays were conducted using four non-target species (, , , and ) and one target species (). Both GBHs significantly reduced germination rate (G%), germination speed index (GSI), fresh mass (FM), and seedling growth (SG) in a dose-dependent manner. SG was the most sensitive endpoint with decreases over 99% at 480 mg/L for both GBHs. exhibited the highest sensitivity index (SI = 0.93 for GBHn, 0.8 for GBHg), confirming target specificity. Overall SI were similar (OSI = 0.75 for GBHn; 0.72 for GBHg), indicating comparable toxicity. Cytogenetic assays using demonstrated significant reductions in mitotic index (MI) at higher concentrations (> 40% decrease at higher doses), with limited chromosomal alterations but notable increases in micronuclei (MN) (up to 6 per 1,000 cells) for both GBHs. GBHn induced more MN formation than GBHg, suggesting greater genotoxicity. Despite similar phytotoxic profiles, GBHn's higher genotoxicity warrants concern. These results indicate the environmental risks posed by treatments with both formulations and emphasize the need for rigorous regulatory scrutiny for glyphosate-based herbicides.

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http://dx.doi.org/10.1080/15287394.2025.2549557DOI Listing

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