Literature DB >> 18634803

Projected effects of climate change on tick phenology and fitness of pathogens transmitted by the North American tick Ixodes scapularis.

N H Ogden1, M Bigras-Poulin, K Hanincová, A Maarouf, C J O'Callaghan, K Kurtenbach.   

Abstract

Ixodes scapularis is the principal tick vector of the Lyme borreliosis agent Borrelia burgdorferi and other tick-borne zoonoses in northeastern North America. The degree of seasonal synchrony of nymphal and larval ticks may be important in influencing the basic reproductive number of the pathogens transmitted by I. scapularis. Because the seasonal phenology of tick vectors is partly controlled by ambient temperature, climate and climate change could shape the population biology of tick-borne pathogens. We used projected monthly normal temperatures, obtained from the second version of the Canadian Coupled Global Climate Model (CGCM2) under emissions scenario A2 of the Intergovernmental Panel on Climate Change for a site in southern Ontario, Canada, to simulate the phenology of I. scapularis in a mathematical model. The simulated seasonal abundance of ticks then determined transmission of three candidate pathogens amongst a population of white-footed mice (Peromyscus leucopus) using a susceptible-infected-recovered (SIR) model. Fitness of the different pathogens, in terms of resilience to changes in tick and rodent mortality, minima for infection duration, transmission efficiency and particularly any additional mortality of rodents specifically associated with infection, varied according to the seasonal pattern of immature tick activity, which was different under the temperature conditions projected for the 2020s, 2050s and 2080s. In each case, pathogens that were long-lived, highly transmissible and had little impact on rodent mortality rates were the fittest. However, under the seasonal tick activity patterns projected for the 2020s and 2050s, the fitness of pathogens that are shorter-lived, less efficiently transmitted, and more pathogenic to their natural hosts, increased. Therefore, climate change may affect the frequency and distribution of I. scapularis-borne pathogens and alter their evolutionary trajectories.

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Year:  2008        PMID: 18634803     DOI: 10.1016/j.jtbi.2008.06.020

Source DB:  PubMed          Journal:  J Theor Biol        ISSN: 0022-5193            Impact factor:   2.691


  38 in total

Review 1.  Changing distributions of ticks: causes and consequences.

Authors:  Elsa Léger; Gwenaël Vourc'h; Laurence Vial; Christine Chevillon; Karen D McCoy
Journal:  Exp Appl Acarol       Date:  2012-09-27       Impact factor: 2.132

2.  Accelerated phenology of blacklegged ticks under climate warming.

Authors:  Taal Levi; Felicia Keesing; Kelly Oggenfuss; Richard S Ostfeld
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2015-04-05       Impact factor: 6.237

3.  Behavioral responses of Ixodes scapularis tick to natural products: development of novel repellents.

Authors:  Nicoletta Faraone; Samantha MacPherson; N Kirk Hillier
Journal:  Exp Appl Acarol       Date:  2019-09-28       Impact factor: 2.132

Review 4.  Patterns, Drivers, and Challenges of Vector-Borne Disease Emergence.

Authors:  Andrea Swei; Lisa I Couper; Lark L Coffey; Durrell Kapan; Shannon Bennett
Journal:  Vector Borne Zoonotic Dis       Date:  2019-12-03       Impact factor: 2.133

5.  Linkages of Weather and Climate With Ixodes scapularis and Ixodes pacificus (Acari: Ixodidae), Enzootic Transmission of Borrelia burgdorferi, and Lyme Disease in North America.

Authors:  Rebecca J Eisen; Lars Eisen; Nicholas H Ogden; Charles B Beard
Journal:  J Med Entomol       Date:  2016-03       Impact factor: 2.278

6.  Climate change influences on the annual onset of Lyme disease in the United States.

Authors:  Andrew J Monaghan; Sean M Moore; Kevin M Sampson; Charles B Beard; Rebecca J Eisen
Journal:  Ticks Tick Borne Dis       Date:  2015-05-15       Impact factor: 3.744

7.  Risk of malaria reemergence in southern France: testing scenarios with a multiagent simulation model.

Authors:  Catherine Linard; Nicolas Ponçon; Didier Fontenille; Eric F Lambin
Journal:  Ecohealth       Date:  2009-05-16       Impact factor: 3.184

Review 8.  Reviewing molecular adaptations of Lyme borreliosis spirochetes in the context of reproductive fitness in natural transmission cycles.

Authors:  Jean I Tsao
Journal:  Vet Res       Date:  2009-04-16       Impact factor: 3.683

9.  Climate change and the geographic distribution of infectious diseases.

Authors:  Joshua Rosenthal
Journal:  Ecohealth       Date:  2010-05-25       Impact factor: 3.184

10.  Meteorological influences on the seasonality of Lyme disease in the United States.

Authors:  Sean M Moore; Rebecca J Eisen; Andrew Monaghan; Paul Mead
Journal:  Am J Trop Med Hyg       Date:  2014-01-27       Impact factor: 2.345

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