Deforestation: effects on vector-borne disease

Parasitology ◽  
1993 ◽  
Vol 106 (S1) ◽  
pp. S55-S75 ◽  
Author(s):  
J. F. Walsh ◽  
D. H. Molyneux ◽  
M. H. Birley

SUMMARYThis review addresses' changes in the ecology of vectors and epidemiology of vector-borne diseases which result from deforestation. Selected examples are considered from viral and parasitic infections (arboviruses, malaria, the leishmaniases, nlariases, Chagas Disease and schistosomiasis) where disease patterns have been directly or indirectly influenced by loss of natural tropical forests. A wide range of activities have resulted in deforestation. These include colonisation and settlement, transmigrant programmes, logging, agricultural activities to provide for cash crops, mining, hydropower development and fuelwood collection. Each activity influences the prevalence, incidence and distribution of vector-borne disease. Three main regions are considered – South America, West & Central Africa and South-East Asia. In each, documented changes in vector ecology and behaviour and disease pattern have occurred. Such changes result from human activity at the forest interface and within the forest. They include both deforestation and reafforestation programmes. Deforestation, or activities associated with it, have produced new habitats for Anopheles darlingi mosquitoes and have caused malaria epidemics in South America. The different species complexes in South-East Asia (A. dirus, A. minimus, A. balabacensis) have been affected in different ways by forest clearance with different impacts on malaria incidence. The ability of zoophilic vectors to adapt to human blood as an alternative source of food and to become associated with human dwellings (peridomestic behaviour) have influenced the distribution of the leishmaniases in South America. Certain species of sandflies (Lutzomyia intermedia, Lu. longipalpis, Lu. whitmani), which were originally zoophilic and sylvatic, have adapted to feeding on humans in peridomestic and even periurban situations. The changes in behaviour of reservoir hosts and the ability of pathogens to adapt to new reservoir hosts in the newly-created habitats also influence the patterns of disease. In anthroponotic infections, such as Plasmodium, Onchocerca and Wuchereria, changes in disease patterns and vector ecology may be more difficult to detect. Detailed knowledge of vector species and species complexes is needed in relation to changing climate associated with deforestation. The distributions of the Anopheles gambiae and Simulium damnosum species complexes in West Africa are examples. There have been detailed longitudinal studies of Anopheles gambiae populations in different ecological zones of West Africa. Studies on Simulium damnosum cytoforms (using chromosome identification methods) in the Onchocerciasis Control Programme were necessary to detect changes in distribution of species in relation to changed habitats. These examples underline the need for studies on the taxonomy of medically-important insects in parallel with long-term observations on changing habitats. In some circumstances, destruction of the forest has reduced or even removed disease transmission (e.g. S. neavei-transmitted Onchocerca in Kenya). Whilst the process of deforestation can be expected to continue, hopefully at a decreased rate, it is expected that unpredictable and sometimes rapid changes in disease patterns will pose problems for the public health services.

2021 ◽  
Vol 10 (1) ◽  
pp. 113-116
Author(s):  
Andrey Vladimirovich Mishchenko ◽  
Elena Aleksandrovna Artemyeva

The paper discusses the food supply of the vector of malaria mosquitoes of the genus Anopheles, which are birds of tropical regions of West Africa. Birds, as distant migrants, penetrate high latitudes and contribute to the spread of malaria in Europe and other countries of the northern hemisphere. The results of the studies show that the main role in the choice of prey objects by female Anopheles gambiae mosquitoes birds is played by the nesting and forage biotopes of birds, which are comfortable for mosquito breeding. Probably, female mosquitoes use non-feathered parts of the body of adult birds for feeding unfeathered or weakly feathered chicks in nests. The circulation of Plasmodium falciparum includes populations of birds, primarily water, near-water and marsh complexes, as well as birds, the development of which takes place in specific conditions of a closed space in holes, hollows and closed nests. The Anopheles gambiae mosquito in this system plays the role of a carrier of Plasmodium falciparum not only among populations of birds and mammals, but also among humans, which determines the range of tropical malaria, which is a natural focal vector-borne disease. The authors have identified 37 species of birds carriers of malaria in natural and anthropogenic biocoenoses of Mali (West Africa). The most numerous during the migration and nesting period are birds of the aquatic, near-water and meadow-bog complexes (herons, herons, waders) distant migrants on the territory of Russia and neighboring countries. The risk areas include, first of all, the southern regions Astrakhan Region, Rostov Region and Krasnodar Region.


2021 ◽  
Vol 14 (1) ◽  
Author(s):  
Nwamaka Oluchukwu Akpodiete ◽  
Frédéric Tripet

Abstract Background The sibling species of the malaria mosquito, Anopheles gambiae (sensu stricto) and Anopheles coluzzii co-exist in many parts of West Africa and are thought to have recently diverged through a process of ecological speciation with gene flow. Divergent larval ecological adaptations, resulting in Genotype-by-Environment (G × E) interactions, have been proposed as important drivers of speciation in these species. In West Africa, An. coluzzii tends to be associated with permanent man-made larval habitats such as irrigated rice fields, which are typically more eutrophic and mineral and ammonia-rich than the temporary rain pools exploited by An. gambiae (s.s.) Methods To highlight G × E interactions at the larval stage and their possible role in ecological speciation of these species, we first investigated the effect of exposure to ammonium hydroxide and water mineralisation on larval developmental success. Mosquito larvae were exposed to two water sources and increasing ammonia concentrations in small containers until adult emergence. In a second experiment, larval developmental success was compared across two contrasted microcosms to highlight G × E interactions under conditions such as those found in the natural environment. Results The first experiment revealed significant G × E interactions in developmental success and phenotypic quality for both species in response to increasing ammonia concentrations and water mineralisation. The An. coluzzii strain outperformed the An. gambiae (s.s.) strain under limited conditions that were closer to more eutrophic habitats. The second experiment revealed divergent crisscrossing reaction norms in the developmental success of the sibling species in the two contrasted larval environments. As expected, An. coluzzii had higher emergence rates in the rice paddy environment with emerging adults of superior phenotypic quality compared to An. gambiae (s.s.), and vice versa, in the rain puddle environment. Conclusions Evidence for such G × E interactions lends support to the hypothesis that divergent larval adaptations to the environmental conditions found in man-made habitats such as rice fields in An. coluzzii may have been an important driver of its ecological speciation.


2001 ◽  
Vol 10 (1) ◽  
pp. 9-18 ◽  
Author(s):  
A. della Torre ◽  
C. Fanello ◽  
M. Akogbeto ◽  
J. Dossou-yovo ◽  
G. Favia ◽  
...  

1980 ◽  
Vol 70 (4) ◽  
pp. 693-716 ◽  
Author(s):  
J. I. Magor ◽  
L. J. Rosenberg

AbstractReports of the presence and absence of biting by Simulium damnosum Theo. in the Volta River Basin in 1962, 1966 and 1975 were used to identify occasions when sites were invaded by parous and nulliparous females. Circumstantial evidence suggests that this insect is a wind-borne migrant, and the weather before and during some of these invasions was examined. Although most invasions studied took place south of the Inter-tropical Convergence Zone, for the first time evidence is presented suggesting that migration also takes place to the north of this zone. Immigrants were captured at the invaded sites only when light winds or calms were present. This cannot, however, be used as proof that S. damnosum migrates and lands only where winds are light or it is calm because host-seeking is inhibited by high winds and the time of arrival, as opposed to capture on a host, is unknown. Until the factors initiating emigration, as well as the height, duration and number of flights in each gonotrophic cycle and the time of immigration are known, the present findings cannot be tested rigorously nor can wind records be used to trace the source of immigrants.


Author(s):  
N. A. Yarmuhamedova ◽  
K. S. Djuraeva ◽  
U. X. Samibaeva ◽  
Z. D. Bahrieva ◽  
D. A. Shodieva

Brucellosis is a particularly dangerous and socially significant infection that causes considerable economic damage and leads to a high level of patients’ disability (Vershilova P. A., 1961, Beklemishev N. D., 1965). Brucellosis is a global problem for medical and veterinary health services (Corbel M. J., 1997, Boschiroli M. L., 2001). According to the information of WHO Joint Expert Committee on Brucellosis (1986), this disease is registered among animals in 155 countries around the world. Mostly Brucellosis is spread in the Mediterranean countries, Asia Minor, South and South-East Asia, Africa, Central and South America (Sauret I. M. E., 2002; Ergonul O. E. A., 2004; Karabay O. E. A., 2004; Getinkaua Z. E. A., 2005; Alim A., Tomul Z. D., 2005; Onishchenko G. G., 2005) These indices are ten times higher in countries of Central Asia. The registered cases of this disease here are compounded 116 cases per 1 million people in Kazakhstan and 362 in Kyrgyzstan. In Uzbekistan, there are 18 cases per 1 million people. In the Russian Federation there are 4.1 cases per 1 million people, Greece – 21 cases, Germany and the United Kingdom – 0.3 cases.


Heredity ◽  
1996 ◽  
Vol 77 (2) ◽  
pp. 192-200 ◽  
Author(s):  
Tovi Lehmann ◽  
William A Hawley ◽  
Luna Kamau ◽  
Didier Fontenille ◽  
Frederic Simard ◽  
...  

2018 ◽  
Vol 33 (1) ◽  
pp. 31-42 ◽  
Author(s):  
Hina Asad ◽  
David O. Carpenter

Abstract Zika is a vector-borne viral disease transmitted to humans primarily by Aedes aegypti mosquitoes. The increased climate instability has contributed to the emergence of infections carried by mosquitoes like dengue, chikungunya and zika. While infection with the zika virus is not new, the recent epidemic of microcephaly in Brazil and other countries in South America resulting from the infection of pregnant women with the zika virus raise a number of serious public health concerns. These include the question of how climate change affects the range of zika vectors, what can we do to shorten the length of mosquito season, how and why the symptoms of zika infection have changed and what can be done to reduce the burden of human disease from this infection? Another important question that needs to be answered is what are the factors that caused the zika virus to leave the non-human primates and/or other mammals and invade the human population?


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