Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles

Antibiotics are routinely used to improve livestock health and growth. However, this practice may have unintended environmental impacts mediated by interactions among the wide range of micro- and macroorganisms found in agroecosystems. For example, antibiotics may alter microbial emissions of greenh...

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Main Authors: Hammer, T, Fierer, N, Hardwick, B, Simojoki, A, Slade, E, Taponen, J, Viljanen, H, Roslin, T
Format: Journal article
Published: Royal Society 2016
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author Hammer, T
Fierer, N
Hardwick, B
Simojoki, A
Slade, E
Taponen, J
Viljanen, H
Roslin, T
author_facet Hammer, T
Fierer, N
Hardwick, B
Simojoki, A
Slade, E
Taponen, J
Viljanen, H
Roslin, T
author_sort Hammer, T
collection OXFORD
description Antibiotics are routinely used to improve livestock health and growth. However, this practice may have unintended environmental impacts mediated by interactions among the wide range of micro- and macroorganisms found in agroecosystems. For example, antibiotics may alter microbial emissions of greenhouse gases by affecting livestock gut microbiota. Furthermore, antibiotics may affect the microbiota of non-target animals that rely on dung, such as dung beetles, and the ecosystem services they provide. To examine these interactions, we treated cattle with a commonly used broad-spectrum antibiotic and assessed downstream effects on microbiota in dung and dung beetles, greenhouse gas fluxes from dung, and beetle size, survival and reproduction. We found that antibiotic treatment restructured microbiota in dung beetles, which harboured a microbial community distinct from those in the dung they were consuming. The antibiotic effect on beetle microbiota was not associated with smaller size or lower numbers. Unexpectedly, antibiotic treatment raised methane fluxes from dung, possibly by altering the interactions between methanogenic archaea and bacteria in rumen and dung environments. Our findings that antibiotics restructure dung beetle microbiota and modify greenhouse gas emissions from dung indicate that antibiotic treatment may have unintended, cascading ecological effects that extend beyond the target animal.
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spelling oxford-uuid:248fd447-5c1f-4410-b824-cfdded06638d2022-03-26T11:50:44ZTreating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetlesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:248fd447-5c1f-4410-b824-cfdded06638dSymplectic Elements at OxfordRoyal Society2016Hammer, TFierer, NHardwick, BSimojoki, ASlade, ETaponen, JViljanen, HRoslin, TAntibiotics are routinely used to improve livestock health and growth. However, this practice may have unintended environmental impacts mediated by interactions among the wide range of micro- and macroorganisms found in agroecosystems. For example, antibiotics may alter microbial emissions of greenhouse gases by affecting livestock gut microbiota. Furthermore, antibiotics may affect the microbiota of non-target animals that rely on dung, such as dung beetles, and the ecosystem services they provide. To examine these interactions, we treated cattle with a commonly used broad-spectrum antibiotic and assessed downstream effects on microbiota in dung and dung beetles, greenhouse gas fluxes from dung, and beetle size, survival and reproduction. We found that antibiotic treatment restructured microbiota in dung beetles, which harboured a microbial community distinct from those in the dung they were consuming. The antibiotic effect on beetle microbiota was not associated with smaller size or lower numbers. Unexpectedly, antibiotic treatment raised methane fluxes from dung, possibly by altering the interactions between methanogenic archaea and bacteria in rumen and dung environments. Our findings that antibiotics restructure dung beetle microbiota and modify greenhouse gas emissions from dung indicate that antibiotic treatment may have unintended, cascading ecological effects that extend beyond the target animal.
spellingShingle Hammer, T
Fierer, N
Hardwick, B
Simojoki, A
Slade, E
Taponen, J
Viljanen, H
Roslin, T
Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles
title Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles
title_full Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles
title_fullStr Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles
title_full_unstemmed Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles
title_short Treating cattle with antibiotics affects greenhouse gas emissions, and microbiota in dung and dung beetles
title_sort treating cattle with antibiotics affects greenhouse gas emissions and microbiota in dung and dung beetles
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