Dynamics of Sylvatic Chagas Disease Vectors in Coastal Ecuador Is Driven by Changes in Land Cover

被引:25
作者
Grijalva, Mario J. [1 ,2 ]
Teran, David [1 ]
Dangles, Olivier [3 ,4 ,5 ,6 ]
机构
[1] Pontif Catholic Univ Ecuador, Sch Biol Sci, Ctr Infect Dis Res, Quito, Ecuador
[2] Ohio Univ, Trop Dis Inst, Dept Biomed Sci, Heritage Coll Osteopath Med, Athens, OH 45701 USA
[3] Pontif Catholic Univ Ecuador, Entomol Lab, Sch Biol Sci, Quito, Ecuador
[4] CNRS, IRD, Lab Evolut Genomes & Speciat, UR 072,UPR 9034, Gif Sur Yvette, France
[5] Univ Paris 11, Orsay, France
[6] Univ Mayor San Andres, Inst Ecol, La Paz, Bolivia
关键词
TRYPANOSOMA-CRUZI INFECTION; RHODNIUS-ECUADORIENSIS; RISK-FACTORS; TRIATOMA-INFESTANS; HOUSE INFESTATION; POPULATIONS; REDUVIIDAE; HEMIPTERA; LANDSCAPE; ECOLOGY;
D O I
10.1371/journal.pntd.0002960
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Background: Chagas disease is a serious public health problem in Latin America where about ten million individuals show Trypanosoma cruzi infection. Despite significant success in controlling domiciliated triatomines, sylvatic populations frequently infest houses after insecticide treatment which hampers long term control prospects in vast geographical areas where vectorial transmission is endemic. As a key issue, the spatio-temporal dynamics of sylvatic populations is likely influenced by landscape yet evidence showing this effect is rare. The aim of this work is to examine the role of land cover changes in sylvatic triatomine ecology, based on an exhaustive field survey of pathogens, vectors, hosts, and microhabitat characteristics' dynamics. Methodology and Principal Findings: The study was performed in agricultural landscapes of coastal Ecuador as a study model. Over one year, a spatially-randomized sampling design (490 collection points) allowed quantifying triatomine densities in natural, cultivated and domestic habitats. We also assessed infection of the bugs with trypanosomes, documented their microhabitats and potential hosts, and recorded changes in landscape characteristics. In total we collected 886 individuals, mainly represented by nymphal stages of one triatomine species Rhodnius ecuadoriensis. As main results, we found that 1) sylvatic triatomines had very high T. cruzi infection rates (71%) and 2) densities of T. cruzi-infected sylvatic triatomines varied predictably over time due to changes in land cover and occurrence of associated rodent hosts. Conclusion: We propose a framework for identifying the factors affecting the yearly distribution of sylvatic T. cruzi vectors. Beyond providing key basic information for the control of human habitat colonization by sylvatic vector populations, our framework highlights the importance of both environmental and sociological factors in shaping the spatio-temporal population dynamics of triatomines. A better understanding of the dynamics of such socio-ecological systems is a crucial, yet poorly considered, issue for the long-term control of Chagas disease.
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页数:11
相关论文
共 57 条
[1]   Field ecology of sylvatic Rhodnius populations (Heteroptera, Triatominae):: risk factors for palm tree infestation in western Ecuador [J].
Abad-Franch, F ;
Palomeque, FS ;
Aguilar, HM ;
Miles, MA .
TROPICAL MEDICINE & INTERNATIONAL HEALTH, 2005, 10 (12) :1258-1266
[2]   Household risk factors for Trypanosoma cruzi seropositivity in two geographic regions of Ecuador [J].
Black, Carla L. ;
Ocana, Sofia ;
Riner, Diana ;
Costales, Jaime A. ;
Lascano, Mauricio S. ;
Davila, Santiago ;
Arcos-Teran, Laura ;
Seed, J. Richard ;
Grijalva, Mario J. .
JOURNAL OF PARASITOLOGY, 2007, 93 (01) :12-16
[3]  
Carcavallo RU, 1998, ATLAS CHAGAS DIS VEC, P107
[4]   Hidden Sylvatic Foci of the Main Vector of Chagas Disease Triatoma infestans: Threats to the Vector Elimination Campaign? [J].
Ceballos, Leonardo A. ;
Piccinali, Romina V. ;
Marcet, Paula L. ;
Vazquez-Prokopec, Gonzalo M. ;
Victoria Cardinal, M. ;
Schachter-Broide, Judith ;
Dujardin, Jean-Pierre ;
Dotson, Ellen M. ;
Kitron, Uriel ;
Guertler, Ricardo E. .
PLOS NEGLECTED TROPICAL DISEASES, 2011, 5 (10)
[5]   Ecologic niche modeling and differentiation of populations of Triatoma brasiliensis neiva, 1911, the most important Chagas' disease vector in northeastern Brazil (hemiptera, reduviidae, triatominae) [J].
Costa, J ;
Peterson, AT ;
Beard, CB .
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 2002, 67 (05) :516-520
[6]  
D'Errico J., 2006, UNDERSTANDING GRIDFI
[7]   Temperature as a key driver of ecological sorting among invasive pest species in the tropical Andes [J].
Dangles, O. ;
Carpio, C. ;
Barragan, A. R. ;
Zeddam, J. -L. ;
Silvain, J. -F. .
ECOLOGICAL APPLICATIONS, 2008, 18 (07) :1795-1809
[8]   Predicting Triatoma dimidiata abundance and infection rate:: A risk map for natural transmission of Chagas disease in the Yucatan Peninsula of Mexico [J].
Dumonteil, E ;
Gourbière, S .
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 2004, 70 (05) :514-519
[9]  
Fox J, 2011, SEM STRUCTURAL EQUAT
[10]   Association of Anthropogenic Land Use Change and Increased Abundance of the Chagas Disease Vector Rhodnius pallescens in a Rural Landscape of Panama [J].
Gottdenker, Nicole L. ;
Calzada, Jose E. ;
Saldana, Azael ;
Carroll, C. Ronald .
AMERICAN JOURNAL OF TROPICAL MEDICINE AND HYGIENE, 2011, 84 (01) :70-77