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Endocrine, immune and renal toxicity in male largemouth bass after chronic exposure to glyphosate and Rodeo®. | LitMetric

Endocrine, immune and renal toxicity in male largemouth bass after chronic exposure to glyphosate and Rodeo®.

Aquat Toxicol

Department of Physiological Sciences and Center for Environmental and Human Toxicology, University of Florida, Gainesville, FL 32611, United States; Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, FL 32610, United States. Electronic address:

Published: May 2022

AI Article Synopsis

  • Glyphosate, a widely-used herbicide, is utilized in agriculture and environments like sugar cane fields in Florida, but its runoff poses threats to aquatic wildlife and has been linked to health issues such as kidney and liver damage in animal studies.
  • In a study, adult male largemouth bass were exposed to different concentrations of glyphosate and Rodeo® for 21 days, leading to significant reductions in steroid hormones, including androgens and estrone.
  • RNA sequencing revealed that glyphosate exposure altered gene expression related to hormone biosynthesis and immune processes, indicating potential endocrine disruption and impacting T-cell activation in the bass.

Article Abstract

Glyphosate is the most used herbicide worldwide, with no historical comparison. It is used for genetically modified crops, and particularly in Florida, it is used as a sugar cane ripener. An aquatic formulation (Rodeo®) is used to treat aquatic weeds in waterbodies and drainage canals. Because of its extended use, glyphosate can run off or be sprayed directly into waterbodies, and chronically expose aquatic wildlife. Exposure in animal models has been associated with kidney and liver damage and glyphosate has been suggested as an endocrine disruptor. We exposed adult male largemouth bass for 21 days to two doses of glyphosate and Rodeo® (chemically equivalent concentration of glyphosate) at 0.5 mg L and 10 mg L and to a clean water control (n=4 fish/tank in quadruplicate). Concentrations during the experiment were corroborated with UHPLC-MS/MS. Total RNA was isolated from the trunk kidney and head kidney. RNA-seq was performed for the high doses compared to controls. Transcripts were analyzed with fish and mammalian pathway analyses software. Transcripts mapped to Zebrafish metabolic pathways using PaintOmics showed steroid hormone biosynthesis in the trunk kidney as the most significantly enriched pathway. Steroid hormones were measured in plasma by UHPLC-MS/MS. Total androgens were significantly reduced at 0.5 mg L of glyphosate and at equivalent concentrations in Rodeo® compared to controls. 11-ketotestosterone and estrone concentrations were significantly reduced in all doses. A gene involved in the conversion of testosterone to 11-ketotestosterone was down-regulated by glyphosate. Using the mammalian pathway analysis algorithm, cellular processes associated with T-cell activation/development and intracellular pH were significantly enriched in the trunk kidney by glyphosate and Rodeo® exposure. Endocrine disruption was corroborated at the hormone and gene expression levels. Rodeo® and glyphosate share gene expression pathways, however, Rodeo® had more pronounced effects in largemouth bass.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9007883PMC
http://dx.doi.org/10.1016/j.aquatox.2022.106142DOI Listing

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