Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia

Background: Oligoryzomys longicaudatus (colilargo) is the rodent responsible for hantavirus pulmonary syndrome (HPS) in Argentine Patagonia. In past decades (1967-1998), trends of precipitation reduction and surface air temperature increase have been observed in western Patagonia. We explore how the...

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Publicado: 2009
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_1476072X_v8_n1_p_Carbajo
http://hdl.handle.net/20.500.12110/paper_1476072X_v8_n1_p_Carbajo
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spelling paper:paper_1476072X_v8_n1_p_Carbajo2023-06-08T16:18:00Z Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia air temperature climate change disease transmission environmental effect modeling precipitation (climatology) probability rodent sensitivity analysis spatial distribution surface temperature trend analysis virus Patagonia South America Hantavirus Oligoryzomys longicaudatus Rodentia animal Argentina article comparative study demography disease transmission environmental monitoring greenhouse effect Hantavirus Hantavirus pulmonary syndrome methodology rodent Sigmodontinae statistical model Animals Argentina Demography Environmental Monitoring Greenhouse Effect Hantavirus Hantavirus Pulmonary Syndrome Models, Statistical Rodentia Sigmodontinae Background: Oligoryzomys longicaudatus (colilargo) is the rodent responsible for hantavirus pulmonary syndrome (HPS) in Argentine Patagonia. In past decades (1967-1998), trends of precipitation reduction and surface air temperature increase have been observed in western Patagonia. We explore how the potential distribution of the hantavirus reservoir would change under different climate change scenarios based on the observed trends. Methods: Four scenarios of potential climate change were constructed using temperature and precipitation changes observed in Argentine Patagonia between 1967 and 1998: Scenario 1 assumed no change in precipitation but a temperature trend as observed; scenario 2 assumed no changes in temperature but a precipitation trend as observed; Scenario 3 included changes in both temperature and precipitation trends as observed; Scenario 4 assumed changes in both temperature and precipitation trends as observed but doubled. We used a validated spatial distribution model of O. longicaudatus as a function of temperature and precipitation. From the model probability of the rodent presence was calculated for each scenario. Results: If changes in precipitation follow previous trends, the probability of the colilargo presence would fall in the HPS transmission zone of northern Patagonia. If temperature and precipitation trends remain at current levels for 60 years or double in the future 30 years, the probability of the rodent presence and the associated total area of potential distribution would diminish throughout Patagonia; the areas of potential distribution for colilargos would shift eastwards. These results suggest that future changes in Patagonia climate may lower transmission risk through a reduction in the potential distribution of the rodent reservoir. Conclusion: According to our model the rates of temperature and precipitation changes observed between 1967 and 1998 may produce significant changes in the rodent distribution in an equivalent period of time only in certain areas. Given that changes maintain for 60 years or double in 30 years, the hantavirus reservoir Oligoryzomys longicaudatus may contract its distribution in Argentine Patagonia extensively. © 2009 Carbajo et al; licensee BioMed Central Ltd. 2009 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_1476072X_v8_n1_p_Carbajo http://hdl.handle.net/20.500.12110/paper_1476072X_v8_n1_p_Carbajo
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic air temperature
climate change
disease transmission
environmental effect
modeling
precipitation (climatology)
probability
rodent
sensitivity analysis
spatial distribution
surface temperature
trend analysis
virus
Patagonia
South America
Hantavirus
Oligoryzomys longicaudatus
Rodentia
animal
Argentina
article
comparative study
demography
disease transmission
environmental monitoring
greenhouse effect
Hantavirus
Hantavirus pulmonary syndrome
methodology
rodent
Sigmodontinae
statistical model
Animals
Argentina
Demography
Environmental Monitoring
Greenhouse Effect
Hantavirus
Hantavirus Pulmonary Syndrome
Models, Statistical
Rodentia
Sigmodontinae
spellingShingle air temperature
climate change
disease transmission
environmental effect
modeling
precipitation (climatology)
probability
rodent
sensitivity analysis
spatial distribution
surface temperature
trend analysis
virus
Patagonia
South America
Hantavirus
Oligoryzomys longicaudatus
Rodentia
animal
Argentina
article
comparative study
demography
disease transmission
environmental monitoring
greenhouse effect
Hantavirus
Hantavirus pulmonary syndrome
methodology
rodent
Sigmodontinae
statistical model
Animals
Argentina
Demography
Environmental Monitoring
Greenhouse Effect
Hantavirus
Hantavirus Pulmonary Syndrome
Models, Statistical
Rodentia
Sigmodontinae
Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia
topic_facet air temperature
climate change
disease transmission
environmental effect
modeling
precipitation (climatology)
probability
rodent
sensitivity analysis
spatial distribution
surface temperature
trend analysis
virus
Patagonia
South America
Hantavirus
Oligoryzomys longicaudatus
Rodentia
animal
Argentina
article
comparative study
demography
disease transmission
environmental monitoring
greenhouse effect
Hantavirus
Hantavirus pulmonary syndrome
methodology
rodent
Sigmodontinae
statistical model
Animals
Argentina
Demography
Environmental Monitoring
Greenhouse Effect
Hantavirus
Hantavirus Pulmonary Syndrome
Models, Statistical
Rodentia
Sigmodontinae
description Background: Oligoryzomys longicaudatus (colilargo) is the rodent responsible for hantavirus pulmonary syndrome (HPS) in Argentine Patagonia. In past decades (1967-1998), trends of precipitation reduction and surface air temperature increase have been observed in western Patagonia. We explore how the potential distribution of the hantavirus reservoir would change under different climate change scenarios based on the observed trends. Methods: Four scenarios of potential climate change were constructed using temperature and precipitation changes observed in Argentine Patagonia between 1967 and 1998: Scenario 1 assumed no change in precipitation but a temperature trend as observed; scenario 2 assumed no changes in temperature but a precipitation trend as observed; Scenario 3 included changes in both temperature and precipitation trends as observed; Scenario 4 assumed changes in both temperature and precipitation trends as observed but doubled. We used a validated spatial distribution model of O. longicaudatus as a function of temperature and precipitation. From the model probability of the rodent presence was calculated for each scenario. Results: If changes in precipitation follow previous trends, the probability of the colilargo presence would fall in the HPS transmission zone of northern Patagonia. If temperature and precipitation trends remain at current levels for 60 years or double in the future 30 years, the probability of the rodent presence and the associated total area of potential distribution would diminish throughout Patagonia; the areas of potential distribution for colilargos would shift eastwards. These results suggest that future changes in Patagonia climate may lower transmission risk through a reduction in the potential distribution of the rodent reservoir. Conclusion: According to our model the rates of temperature and precipitation changes observed between 1967 and 1998 may produce significant changes in the rodent distribution in an equivalent period of time only in certain areas. Given that changes maintain for 60 years or double in 30 years, the hantavirus reservoir Oligoryzomys longicaudatus may contract its distribution in Argentine Patagonia extensively. © 2009 Carbajo et al; licensee BioMed Central Ltd.
title Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia
title_short Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia
title_full Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia
title_fullStr Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia
title_full_unstemmed Hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in Argentine Patagonia
title_sort hantavirus reservoir oligoryzomys longicaudatus spatial distribution sensitivity to climate change scenarios in argentine patagonia
publishDate 2009
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_1476072X_v8_n1_p_Carbajo
http://hdl.handle.net/20.500.12110/paper_1476072X_v8_n1_p_Carbajo
_version_ 1768546554482786304