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Glyphosate and its formulations Roundup Bioflow and RangerPro alter bacterial and fungal community composition in the rat caecum microbiome

Robin Mesnage, Simona Panzacchi, Emma Bourne, Charles A Mein, Melissa J Perry, Jianzhong Hu, Jia Chen, Daniele Mandrioli, Fiorella Belpoggi, Michael N Antoniou
doi: https://doi.org/10.1101/2021.11.19.468976
Robin Mesnage
1Gene Expression and Therapy Group, King’s College London, Faculty of Life Sciences & Medicine, Department of Medical and Molecular Genetics, Guy’s Hospital, London, SE1 9RT, UK
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Simona Panzacchi
2Ramazzini Institute, Via Saliceto, 3, 40010 Bentivoglio, Bologna, Italy
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Emma Bourne
3Genome Centre, Barts and the London School of Medicine and Dentistry, Blizard Institute, London E1 2AT, United Kingdom
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Charles A Mein
3Genome Centre, Barts and the London School of Medicine and Dentistry, Blizard Institute, London E1 2AT, United Kingdom
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Melissa J Perry
4Department of Environmental and Occupational Health, Milken Institute School of Public Health, George Washington University, Washington, DC.
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Jianzhong Hu
5Department of Genetics and Genomic Sciences, Icahn School of Medicine at Mount Sinai, New York, NY, USA
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Jia Chen
6Department of Environmental Medicine and Public Heath, Icahn School of Medicine at Mount Sinai, New York, NY, USA
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Daniele Mandrioli
2Ramazzini Institute, Via Saliceto, 3, 40010 Bentivoglio, Bologna, Italy
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Fiorella Belpoggi
2Ramazzini Institute, Via Saliceto, 3, 40010 Bentivoglio, Bologna, Italy
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Michael N Antoniou
1Gene Expression and Therapy Group, King’s College London, Faculty of Life Sciences & Medicine, Department of Medical and Molecular Genetics, Guy’s Hospital, London, SE1 9RT, UK
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  • For correspondence: michael.antoniou@kcl.ac.uk
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Abstract

The potential health consequences of glyphosate-induced gut microbiome alterations have become a matter of intense debate. As part of a multifaceted study investigating toxicity, carcinogenicity and multigenerational effects of glyphosate and its commercial herbicide formulations, we assessed changes in bacterial and fungal populations in the caecum microbiota of rats exposed prenatally until adulthood (13 weeks after weaning) to three doses of glyphosate (0.5, 5, 50 mg/kg body weight/day), or to the formulated herbicide products Roundup Bioflow and RangerPro at the same glyphosate-equivalent doses. Caecum bacterial microbiota were evaluated by 16S rRNA sequencing whilst the fungal population was determined by ITS2 amplicon sequencing. Results showed that both fungal and bacterial diversity were affected by the Roundup formulations in a dose-dependent manner, whilst glyphosate alone significantly altered only bacterial diversity. At taxa level, a reduction in Bacteroidota abundance, marked by alterations in the levels of Alloprevotella, Prevotella and Prevotellaceae UCG-003, was concomitant to increased levels of Firmicutes (e.g., Romboutsia, Dubosiella, Eubacterium brachy group or Christensenellaceae) and Actinobacteria (e.g., Enterorhabdus, Adlercreutzia, or Asaccharobacter). Treponema and Mycoplasma also had their levels reduced by the pesticide treatments. Analysis of fungal composition indicated that the abundance of the rat gut commensal Ascomycota Kazachstania was reduced while the abundance of Gibberella, Penicillium, Claviceps, Cornuvesica, Candida, Trichoderma and Sarocladium were increased by exposure to the Roundup formulations, but not to glyphosate. Altogether, our data suggest that glyphosate and its Roundup RangerPro and Bioflow caused profound changes in caecum microbiome composition by affecting the fitness of major commensals, which in turn reduced competition and allowed opportunistic fungi to grow in the gut, in particular in animals exposed to the herbicide formulations. This further indicates that changes in gut microbiome composition might influence the long-term toxicity, carcinogenicity and multigenerational effects of glyphosate-based herbicides.

Competing Interest Statement

RM has served as a consultant on glyphosate risk assessment issues as part of litigation in the US over glyphosate health effects. MJP as provided expert consultation in legal proceedings related to occupational and environmental health issues including the health effects of pesticide exposures and exposure to COVID19. The other authors declare no competing interests.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted November 19, 2021.
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Glyphosate and its formulations Roundup Bioflow and RangerPro alter bacterial and fungal community composition in the rat caecum microbiome
Robin Mesnage, Simona Panzacchi, Emma Bourne, Charles A Mein, Melissa J Perry, Jianzhong Hu, Jia Chen, Daniele Mandrioli, Fiorella Belpoggi, Michael N Antoniou
bioRxiv 2021.11.19.468976; doi: https://doi.org/10.1101/2021.11.19.468976
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Glyphosate and its formulations Roundup Bioflow and RangerPro alter bacterial and fungal community composition in the rat caecum microbiome
Robin Mesnage, Simona Panzacchi, Emma Bourne, Charles A Mein, Melissa J Perry, Jianzhong Hu, Jia Chen, Daniele Mandrioli, Fiorella Belpoggi, Michael N Antoniou
bioRxiv 2021.11.19.468976; doi: https://doi.org/10.1101/2021.11.19.468976

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