Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions
In the UK, recent mean temperatures have consistently increased by between 1°C and 4°C compared to the 30-year monthly averages. Furthermore, all available predictive models for the UK indicate that the climate is likely to change further and feature more extreme weather events and a trend towards w...
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doaj-d05985d9ab844938aafb26451e88b1d22021-06-05T06:06:28ZengElsevierAnimal1751-73112010-01-0143377392Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regionsJ. van Dijk0N.D. Sargison1F. Kenyon2P.J. Skuce3Liverpool University Climate and Infectious Diseases of Animals Group (LUCINDA), School of Veterinary Clinical Studies, Leahurst, Cheshire CH64 7TE, UKParasitology Division, Moredun Research Institute, Pentlands Science Park, Edinburgh EH26 0PZ, UKParasitology Division, Moredun Research Institute, Pentlands Science Park, Edinburgh EH26 0PZ, UKParasitology Division, Moredun Research Institute, Pentlands Science Park, Edinburgh EH26 0PZ, UKIn the UK, recent mean temperatures have consistently increased by between 1°C and 4°C compared to the 30-year monthly averages. Furthermore, all available predictive models for the UK indicate that the climate is likely to change further and feature more extreme weather events and a trend towards wetter, milder winters and hotter, drier summers. These changes will alter the prevalence of endemic diseases spatially and/or temporally and impact on animal health and welfare. Most notable among these endemic parasites are the helminths, which have been shown to be very strongly influenced by both the short-term weather and climate through effects on their free-living larval stages on pasture. In this review, we examine recent trends in prevalence and epidemiology of key helminth species and consider whether these could be climate-related. We identify likely effects of temperature and rainfall on the free-living stages and some key parasite traits likely to determine parasite abundance under changed climatic conditions. We find clear evidence that climate change, especially elevated temperature, has already changed the overall abundance, seasonality and spatial spread of endemic helminths in the UK. We explore some confounders and alternative explanations for the observed patterns. Finally, we explore the implications of these findings for policy makers and the livestock industry and make some recommendations for future research priorities.http://www.sciencedirect.com/science/article/pii/S1751731109990991endemic diseaseparasiteecologyadaptationseasonality |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
J. van Dijk N.D. Sargison F. Kenyon P.J. Skuce |
spellingShingle |
J. van Dijk N.D. Sargison F. Kenyon P.J. Skuce Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions Animal endemic disease parasite ecology adaptation seasonality |
author_facet |
J. van Dijk N.D. Sargison F. Kenyon P.J. Skuce |
author_sort |
J. van Dijk |
title |
Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions |
title_short |
Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions |
title_full |
Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions |
title_fullStr |
Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions |
title_full_unstemmed |
Climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions |
title_sort |
climate change and infectious disease: helminthological challenges to farmed ruminants in temperate regions |
publisher |
Elsevier |
series |
Animal |
issn |
1751-7311 |
publishDate |
2010-01-01 |
description |
In the UK, recent mean temperatures have consistently increased by between 1°C and 4°C compared to the 30-year monthly averages. Furthermore, all available predictive models for the UK indicate that the climate is likely to change further and feature more extreme weather events and a trend towards wetter, milder winters and hotter, drier summers. These changes will alter the prevalence of endemic diseases spatially and/or temporally and impact on animal health and welfare. Most notable among these endemic parasites are the helminths, which have been shown to be very strongly influenced by both the short-term weather and climate through effects on their free-living larval stages on pasture. In this review, we examine recent trends in prevalence and epidemiology of key helminth species and consider whether these could be climate-related. We identify likely effects of temperature and rainfall on the free-living stages and some key parasite traits likely to determine parasite abundance under changed climatic conditions. We find clear evidence that climate change, especially elevated temperature, has already changed the overall abundance, seasonality and spatial spread of endemic helminths in the UK. We explore some confounders and alternative explanations for the observed patterns. Finally, we explore the implications of these findings for policy makers and the livestock industry and make some recommendations for future research priorities. |
topic |
endemic disease parasite ecology adaptation seasonality |
url |
http://www.sciencedirect.com/science/article/pii/S1751731109990991 |
work_keys_str_mv |
AT jvandijk climatechangeandinfectiousdiseasehelminthologicalchallengestofarmedruminantsintemperateregions AT ndsargison climatechangeandinfectiousdiseasehelminthologicalchallengestofarmedruminantsintemperateregions AT fkenyon climatechangeandinfectiousdiseasehelminthologicalchallengestofarmedruminantsintemperateregions AT pjskuce climatechangeandinfectiousdiseasehelminthologicalchallengestofarmedruminantsintemperateregions |
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1721396875644370944 |