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1.
Viruses ; 13(7)2021 06 23.
Artigo em Inglês | MEDLINE | ID: mdl-34201673

RESUMO

Humans and wildlife are at risk from certain vector-borne diseases such as malaria, dengue, and West Nile and yellow fevers. Factors linked to global change, including habitat alteration, land-use intensification, the spread of alien species, and climate change, are operating on a global scale and affect both the incidence and distribution of many vector-borne diseases. Hence, understanding the drivers that regulate the transmission of pathogens in the wild is of great importance for ecological, evolutionary, health, and economic reasons. In this literature review, we discuss the ecological factors potentially affecting the transmission of two mosquito-borne pathogens circulating naturally between birds and mosquitoes, namely, West Nile virus (WNV) and the avian malaria parasites of the genus Plasmodium. Traditionally, the study of pathogen transmission has focused only on vectors or hosts and the interactions between them, while the role of landscape has largely been ignored. However, from an ecological point of view, it is essential not only to study the interaction between each of these organisms but also to understand the environmental scenarios in which these processes take place. We describe here some of the similarities and differences in the transmission of these two pathogens and how research into both systems may facilitate a greater understanding of the dynamics of vector-borne pathogens in the wild.


Assuntos
Culicidae/fisiologia , Meio Ambiente , Mosquitos Vetores/fisiologia , Plasmodium/fisiologia , Vírus do Nilo Ocidental/fisiologia , Animais , Culicidae/parasitologia , Culicidae/virologia , Humanos , Malária Aviária/epidemiologia , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Mosquitos Vetores/virologia , Prevalência , Febre do Nilo Ocidental/epidemiologia , Febre do Nilo Ocidental/transmissão
2.
Malar J ; 20(1): 136, 2021 Mar 06.
Artigo em Inglês | MEDLINE | ID: mdl-33676517

RESUMO

BACKGROUND: Captive populations of penguins outside of their natural distributions are often maintained in outdoor facilities, such as zoos and aquariums. Consequently, such penguins in captivity are constantly exposed to mosquito vectors and risk of avian malarial infection during their active period from spring to autumn, which can be lethal to these naïve birds. Previous studies have investigated parasite prevalence in mosquitoes or penguins, but simultaneous investigations, which would be crucial to monitor the transmission dynamics and cycle within a facility, have not been done. To identify dominant lineages and trends, multiple-year surveys are recommended. METHODS: Avian malaria parasites (Plasmodium spp.) and related haemosporidia were tested in penguins and mosquitoes at an aquarium in Japan through multiple years from 2011 to 2018. Prevalence and dynamics were confirmed, and molecular analyses targeting the protozoal cytb gene were used to reveal the transmission cycle. Blood meals of mosquitoes were also identified using molecular methods. RESULTS: Parasite detection in penguins tended to fluctuate within an individual. Two Plasmodium lineages were consistently detected in mosquitoes that had fed on penguins and wild birds observed around the aquarium. Plasmodium lineage CXPIP09 was detected from both mosquitoes and penguins, suggesting active transmission at this facility. However, Plasmodium cathemerium PADOM02 was only detected in mosquitoes, which may be due to host, vector or parasite-related factors, or detection methods and their limits. Additionally, Haemoproteus larae SPMAG12 was detected from penguins, suggesting active transmission via biting midges. CONCLUSIONS: The mismatch in parasite composition between penguins and mosquitoes shows that multiple aspects such as captive birds, wild birds and vector insects should be monitored in order to better understand and control avian malarial infection within ex-situ conservation facilities. Furthermore, morphological analyses would be needed to confirm competency and infection dynamics of avian malaria parasites.


Assuntos
Culex/parasitologia , Interações Hospedeiro-Parasita , Malária Aviária/epidemiologia , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Plasmodium/isolamento & purificação , Spheniscidae , Animais , Animais de Zoológico , Ceratopogonidae/parasitologia , Feminino , Haemosporida/isolamento & purificação , Japão/epidemiologia , Microbiota , Prevalência
4.
Transbound Emerg Dis ; 68(2): 920-930, 2021 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-32748497

RESUMO

Vector-borne diseases, especially those transmitted by mosquitoes, have severe impacts on public health and economy. West Nile virus (WNV) and avian malaria parasites of the genus Plasmodium are mosquito-borne pathogens that may produce severe disease and illness in humans and birds, respectively, and circulate in an endemic form in southern Europe. Here, we used field-collected data to identify the impact of Culex pipiens, Cx. perexiguus and Cx. modestus, on the circulation of both WNV and Plasmodium in Andalusia (SW Spain) using mathematical modelling of the basic reproduction number (R0 ). Models were calibrated with field-collected data on WNV seroprevalence and Plasmodium infection in wild house sparrows, presence of WNV and Plasmodium in mosquito pools, and mosquito blood-feeding patterns. This approach allowed us to determine the contribution of each vector species to pathogen amplification. Overall, 0.7% and 29.6% of house sparrows were positive to WNV antibodies and Plasmodium infection, respectively. In addition, the prevalence of Plasmodium was higher in Cx. pipiens (2.0%), followed by Cx. perexiguus (1.8%) and Cx. modestus (0.7%). Three pools of Cx. perexiguus were positive to WVN. Models identified Cx. perexiguus as the most important species contributing to the amplification of WNV in southern Spain. For Plasmodium models, R0 values were higher when Cx. pipiens was present in the population, either alone or in combination with the other mosquito species. These results suggest that the transmission of these vector-borne pathogens depends on different Culex species, and consequently, their transmission niches will present different spatial and temporal patterns. For WNV, targeted surveillance and control of Cx. perexiguus populations appear as the most effective measure to reduce WNV amplification. Also, preventing Culex populations near human settlements, or reducing the abundance of these species, are potential strategies to reduce WNV spillover into human populations in southern Spain.


Assuntos
Culex/virologia , Malária Aviária/transmissão , Mosquitos Vetores/virologia , Animais , Anticorpos Antivirais , Culex/parasitologia , Comportamento Alimentar , Malária Aviária/parasitologia , Região do Mediterrâneo , Mosquitos Vetores/parasitologia , Estudos Soroepidemiológicos , Espanha , Pardais , Febre do Nilo Ocidental/epidemiologia , Febre do Nilo Ocidental/veterinária , Vírus do Nilo Ocidental
5.
Acta Trop ; 213: 105735, 2021 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-33159896

RESUMO

Vector-borne diseases in the United States have recently increased as a result of the changing nature of vectors, hosts, reservoirs, parasite/pathogens, and the ecological and environmental conditions. While most focus has been on mosquito-borne pathogens affecting humans, little is known regarding parasites of companion animal, livestock and wildlife and their potential mosquito hosts in the United States. This study assessed the prevalence of mature infections of Dirofilaria immitis and avian malaria parasites (Haemosporida) within urban mosquito (Diptera, Culicidae) communities in Oklahoma. 2,620 pools consisting of 12,686 mosquitoes from 13 species collected over two summers were tested for the presence of filarioid and haemosporidian DNA. Dirofilaria immitis-infected mosquitoes were detected only in Aedes albopictus (MIR=0.18-0.22) and Culex pipiens complex (MIR=0.12) collected in cities in central and southern Oklahoma. Two other filarioid nematode species with 91-92% similarity with Onchocerca spp. and Mansonella spp. were also detected. Haemosporidian DNA was detected in 13 mosquito pools (0.9% of pools tested) from seven mosquito species out of 13 species tested. Plasmodium DNA in four species (Cx. coronator, Cx. pipiens complex, Cx. tarsalis, and Psorophora columbiae) had high homology with published sequences of avian Plasmodium species while DNA in four other species (Cx. nigripalpus, Ps. columbiae, Anopheles quadrimaculatus, and An. punctipennis) were closely related to Plasmodium species from deer. One pool of Cx. tarsalis was positive with a 100% sequence identity of Haemoproteus sacharovi. This study provides a baseline concerning the diversity of parasites in different mosquito species present in the southern Great Plains. These studies provide important information for understanding the factors of transmission involving the mosquito community, potential hosts, and different mosquito-borne parasites in this important region involved in livestock management and wildlife conservation.


Assuntos
Culicidae/parasitologia , Filarioidea/isolamento & purificação , Haemosporida/isolamento & purificação , Mosquitos Vetores/parasitologia , Plasmodium/isolamento & purificação , Aedes/parasitologia , Animais , Anopheles/parasitologia , Aves , Culex/parasitologia , Cervos , Dirofilaria immitis/genética , Dirofilaria immitis/isolamento & purificação , Filarioidea/genética , Haemosporida/genética , Humanos , Malária Aviária/epidemiologia , Malária Aviária/parasitologia , Malária Aviária/transmissão , Oklahoma , Plasmodium/genética
6.
Open Vet J ; 10(1): 39-43, 2020 04.
Artigo em Inglês | MEDLINE | ID: mdl-32426255

RESUMO

Background: Plasmodium relictum is one of the most important avian malaria species, which is mainly seen in wild birds, with infections reported in more than 70 different species and at high prevalence. Aim: The aim of this study was to determine the molecular prevalence of Plasmodium spp. in mosquitoes collected in China. Method: A Plasmodium -specific fluorescence resonance energy transfer (FRET) polymerase chain reaction (PCR) was established in this study to analyze five species of mosquitoes (1,620 Culex pipiens pallens, 806 Aedes albopictus, 377 Armigeres subalbatus, 168 Anopheles sinensis, and 80 Culex tritaeniorhynchus) collected in hand nets from homes in 25 provinces of China. Results: Only females originated from six provinces were determined to be positive (0.6%, 10/1,809). Plasmodium species were detected in three mosquito species, such as C.pipiens pallens (0.5%, 8/1,620), A.sinensis (0.6%, 1/168), and A.subalbatus (0.3%, 1/377). Of the three mosquito species positive for P. relictum, only C. pipiens pallens is known to feed on birds and is recognized as the natural vector of P. relictum. Conclusion: This is the first time that P. relictum has been detected in A. sinensis and A. subalbatus. P. relictum, the agent of avian malaria, was present in mosquitoes in China, including mosquito species not previously thought to be the vectors.


Assuntos
Anopheles/parasitologia , Malária Aviária/epidemiologia , Mosquitos Vetores/parasitologia , Plasmodium/isolamento & purificação , Animais , Animais Selvagens , Aves , China/epidemiologia , Malária Aviária/transmissão , Reação em Cadeia da Polimerase/veterinária
7.
Parasitology ; 147(4): 441-447, 2020 04.
Artigo em Inglês | MEDLINE | ID: mdl-31965951

RESUMO

Factors such as the particular combination of parasite-mosquito species, their co-evolutionary history and the host's parasite load greatly affect parasite transmission. However, the importance of these factors in the epidemiology of mosquito-borne parasites, such as avian malaria parasites, is largely unknown. Here, we assessed the competence of two mosquito species [Culex pipiens and Aedes (Ochlerotatus) caspius], for the transmission of four avian Plasmodium lineages (Plasmodium relictum SGS1 and GRW11 and Plasmodium cathemerium-related lineages COLL1 and PADOM01) naturally infecting wild house sparrows. We assessed the effects of parasite identity and parasite load on Plasmodium transmission risk through its effects on the transmission rate and mosquito survival. We found that Cx. pipiens was able to transmit the four Plasmodium lineages, while Ae. caspius was unable to transmit any of them. However, Cx. pipiens mosquitoes fed on birds infected by P. relictum showed a lower survival and transmission rate than those fed on birds infected by parasites related to P. cathemerium. Non-significant associations were found with the host-parasite load. Our results confirm the existence of inter- and intra-specific differences in the ability of Plasmodium lineages to develop in mosquito species and their effects on the survival of mosquitoes that result in important differences in the transmission risk of the different avian malaria parasite lineages studied.


Assuntos
Culex/parasitologia , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Ochlerotatus/parasitologia , Plasmodium/fisiologia , Pardais , Aedes/parasitologia , Animais , Feminino , Masculino , Plasmodium/classificação , Plasmodium/genética , Espanha , Especificidade da Espécie
8.
Math Biosci ; 318: 108268, 2019 12.
Artigo em Inglês | MEDLINE | ID: mdl-31669327

RESUMO

Avian malaria is a mosquito-borne parasitic disease of birds caused by protists of the genera Plasmodium, most notably Plasmodium relictum. This disease has been identified as a primary cause of the drastic decline and extinctions of birds, in particular Hawaiian honeycreepers (Drepanidinae), where rates of mortality may exceed 90%. We formulate an epizootiological model of the transmission dynamics of avian malaria between populations of bird hosts and mosquito vectors using a system of compartmental ordinary differential equations. We derive the basic reproduction number as well as criteria for the existence and local stability of disease-free and enzootic equilibria. These results provide useful information for evaluating management strategies. A local sensitivity analysis of certain model invariants to uncertain parameter values is performed to ascertain which biological factors have the largest impact on ecological outcomes and, in particular, long-term bird population densities. We discuss and compare the effectiveness of two disease control and conservation strategies: captive propagation of honeycreepers and larval mosquito habitat reduction. We provide examples of combinations of these strategies that either are predicted to eliminate enzootic avian malaria or to increase predicted bird density above a given ecologically meaningful threshold.


Assuntos
Tentilhões/parasitologia , Malária Aviária/prevenção & controle , Malária Aviária/transmissão , Modelos Biológicos , Controle de Mosquitos , Mosquitos Vetores , Animais , Havaí , Densidade Demográfica
9.
Parasitol Res ; 118(7): 2097-2105, 2019 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-31154526

RESUMO

In Germany, knowledge of disease agents transmitted by arthropods in zoological gardens is scarce. In the framework of ecological studies, mosquitoes were therefore collected in German zoological gardens and examined for mosquito-borne pathogen DNA and RNA. In total, 3840 mosquitoes were screened for filarial nematodes and three groups of viruses (orthobunyaviruses, flaviviruses, alphaviruses) while 405 mosquitoes were tested for avian malaria parasites. In addition to the filarial nematode species Dirofilaria repens (n = 1) and Setaria tundra (n = 8), Sindbis virus (n = 1) and the haemosporidian genera Haemoproteus (n = 8), Leucocytozoon (n = 10) and Plasmodium (n = 1) were demonstrated. Identified pathogens have the potential to cause disease in zoo and wild animals, but some of them also in humans. Positive mosquitoes were collected most often in July, indicating the highest infection risk during this month. Most of the pathogens were found in mosquito specimens of the Culex pipiens complex, suggesting that its members possibly act as the most important vectors in the surveyed zoos, although the mere demonstration of pathogen DNA/RNA in a homogenised complete mosquito is not finally indicative for a vector role. Outcomes of the study are not only significant for arthropod management in zoological gardens, but also for the general understanding of the occurrence and spread of mosquito-borne disease agents.


Assuntos
Culicidae/parasitologia , Filarioidea/classificação , Haemosporida/classificação , Malária Aviária/parasitologia , Mosquitos Vetores/parasitologia , Plasmodium/classificação , Animais , Culex/parasitologia , Feminino , Filarioidea/genética , Filarioidea/isolamento & purificação , Jardins , Alemanha/epidemiologia , Haemosporida/genética , Haemosporida/isolamento & purificação , Humanos , Malária Aviária/epidemiologia , Malária Aviária/transmissão , Plasmodium/genética , Plasmodium/isolamento & purificação
10.
Parasitol Res ; 118(4): 1261-1269, 2019 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-30783859

RESUMO

Avian malaria (Plasmodium spp.) and kinetoplastid (Trypanosoma spp.) parasites are common vector-borne pathogens in birds worldwide; however, knowledge about vector competence of different mosquito species is currently lacking. For a pilot project examining vector competence of mosquitoes of the Culex pipiens complex and Culex torrentium for protozoan parasites in the city of Vienna, 316 individual mosquitoes were sampled in the months June-August 2017 around the campus of the Veterinary University of Vienna. Since vector competence for avian Plasmodium can only be ascertained by finding infectious sporozoites in mosquito salivary glands, special emphasis was on examining these, or at least insect thoraxes, which contain the salivary glands. After species identification, the mosquitoes were processed in three different ways to determine the best method of visually detecting protozoan parasites in salivary glands: (1) microscopic examination of individual, fixed and Giemsa-stained salivary glands, (2) microscopic examination of stained sections of individually fixed and embedded mosquito thoraxes and (3) stained sections of individual whole insects. Material from all three groups was also subjected to PCR to detect avian haemosporidian and trypanosomatid parasite DNA. PCR was performed on all 316 collected mosquitoes, with 37 pools (n = 2-10) of 263 individuals and 53 single individuals in all together 90 PCR reactions. Avian Plasmodium was found in 18 (20%) and trypanosomatid parasites were found in 10 (11.1%) of the examined samples and pools yielded a higher proportion of positives than did individual samples. Six different species of protozoan parasites were identified, namely Plasmodium vaughani SYAT05 which was the most common, P. elongatum GRW6, P. relictum SGS1, Trypanosoma avium, T. culicavium and Crithidia dedva. Seventy-seven mosquito salivary glands were dissected and stained with Giemsa solution. Of these, one (1.3%) featured sporozoites and one (1.3%) trypanosomatid parasites. While the trypanosomes were identified as T. avium, the avian Plasmodium species were present in a mixed infection with P. vaughani SYAT05 as the dominant species. In conclusion, mosquitoes of the Culex pipiens complex are very likely vectors of different avian Plasmodium and Trypanosoma species and PCR was the most successful and reliable method for parasite detection in mosquito samples, delivering higher rates and more accurate results. The visual detection of parasite stages in the salivary glands was more difficult and only a few specimens were detected using Giemsa stain and chromogenic in situ hybridization. For further studies on vector competence of different protozoan parasites in mosquitoes, the use of PCR-based methods would be preferable.


Assuntos
Culex/parasitologia , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Plasmodium/isolamento & purificação , Glândulas Salivares/parasitologia , Esporozoítos/isolamento & purificação , Trypanosoma/isolamento & purificação , Animais , Aves/parasitologia , DNA de Protozoário/análise , Malária Aviária/parasitologia , Projetos Piloto , Plasmodium/classificação , Plasmodium/genética , Reação em Cadeia da Polimerase , Trypanosoma/classificação , Trypanosoma/genética
11.
Parasitol Res ; 117(7): 2043-2052, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-29744700

RESUMO

Host susceptibility to parasites is likely to be influenced by intrinsic factors, such as host oxidative status determined by the balance between pro-oxidant production and antioxidant defences. As a result, host oxidative status acts as an environmental factor for parasites and may constrain parasite development. We evaluated the role of host oxidative status on infection dynamics of an avian malarial parasite by providing canaries (Serinus canaria) with an antioxidant supplementation composed of vitamin E (a lipophilic antioxidant) and olive oil, a source of monounsaturated fatty acids. Another group received a standard, non-supplemented food. Half of the birds in each group where then infected with the haemosporidian parasite, Plasmodium relictum. We monitored the parasitaemia, haematocrit level, and red cell membrane resistance, as well as the transmission success of the parasite to its mosquito vector, Culex pipiens. During the acute phase, the negative effect of the infection was more severe in the supplemented group, as shown by a lower haematocrit level. Parasitaemia was lower in the supplemented group during the chronic phase only. Mosquitoes fed on supplemented hosts were more often infected than mosquitoes fed on the control group. These results suggest that dietary antioxidant supplementation conferred protection against Plasmodium in the long term, at the expense of a short-term negative effect. Malaria parasites may take advantage of antioxidants, as shown by the increased transmission rate in the supplemented group. Overall, our results suggest an important role of oxidative status in infection outcome and parasite transmission.


Assuntos
Antioxidantes/metabolismo , Culex/fisiologia , Malária Aviária/parasitologia , Mosquitos Vetores/parasitologia , Parasitemia/veterinária , Plasmodium/fisiologia , Animais , Canários/metabolismo , Canários/parasitologia , Culex/parasitologia , Comportamento Alimentar , Feminino , Malária Aviária/metabolismo , Malária Aviária/transmissão , Masculino , Mosquitos Vetores/fisiologia , Azeite de Oliva/metabolismo , Estresse Oxidativo , Parasitemia/parasitologia , Parasitemia/transmissão , Vitamina E/metabolismo
12.
Parasitology ; 145(14): 1949-1958, 2018 12.
Artigo em Inglês | MEDLINE | ID: mdl-29739479

RESUMO

Habitat modification may facilitate the emergence of novel pathogens, and the expansion of agricultural frontiers make domestic animals important sources of pathogen spillover to wild animals. We demonstrate for the first time that Plasmodium juxtanucleare, a widespread parasite from domestic chickens, naturally infects free-living passerines. We sampled 68 wild birds within and at the border of conservation units in central Brazil composed by Cerrado, a highly threatened biome. Seven out of 10 passerines captured in the limits of a protected area with a small farm were infected by P. juxtanucleare as was confirmed by sequencing a fragment of the parasite's cytochrome b. Blood smears from these positive passerines presented trophozoites, meronts and gametocytes compatible with P. juxtanucleare, meaning these birds are competent hosts for this parasite. After these intriguing results, we sampled 30 backyard chickens managed at the area where P. juxtanucleare-infected passerines were captured, revealing one chicken infected by the same parasite lineage. We sequenced the almost complete mitochondrial genome from all positive passerines, revealing that Brazilian and Asian parasites are closely related. P. juxtanucleare can be lethal to non-domestic hosts under captive and rehabilitation conditions, suggesting that this novel spillover may pose a real threat to wild birds.


Assuntos
Animais Domésticos/parasitologia , Galinhas/parasitologia , Columbidae/parasitologia , Malária Aviária/transmissão , Plasmodium/patogenicidade , Animais , Brasil , Citocromos b/genética , Ecossistema , Fazendas , Genoma Mitocondrial , Filogenia
13.
Parasitol Res ; 117(8): 2385-2394, 2018 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-29845414

RESUMO

Currently, there are very few studies of avian malaria that investigate relationships among the host-vector-parasite triad concomitantly. In the current study, we experimentally measured the vector competence of several Culex mosquitoes for a newly described avian malaria parasite, Plasmodium homopolare. Song sparrow (Melospiza melodia) blood infected with a low P. homopolare parasitemia was inoculated into a naïve domestic canary (Serinus canaria forma domestica). Within 5 to 10 days post infection (dpi), the canary unexpectedly developed a simultaneous high parasitemic infection of Plasmodium cathemerium (Pcat6) and a low parasitemic infection of P. homopolare, both of which were detected in blood smears. During this infection period, PCR detected Pcat6, but not P. homopolare in the canary. Between 10 and 60 dpi, Pcat6 blood stages were no longer visible and PCR no longer amplified Pcat6 parasite DNA from canary blood. However, P. homopolare blood stages remained visible, albeit still at very low parasitemias, and PCR was able to amplify P. homopolare DNA. This pattern of mixed Pcat6 and P. homopolare infection was repeated in three secondary infected canaries that were injected with blood from the first infected canary. Mosquitoes that blood-fed on the secondary infected canaries developed infections with Pcat6 as well as another P. cathemerium lineage (Pcat8); none developed PCR detectable P. homopolare infections. These observations suggest that the original P. homopolare-infected songbird also had two un-detectable P. cathemerium lineages/strains. The vector and host infectivity trials in this study demonstrated that current molecular assays may significantly underreport the extent of mixed avian malaria infections in vectors and hosts.


Assuntos
Coinfecção/veterinária , Culex/fisiologia , Malária Aviária/parasitologia , Mosquitos Vetores/fisiologia , Parasitemia/veterinária , Plasmodium/fisiologia , Animais , Canários/parasitologia , Coinfecção/parasitologia , Coinfecção/transmissão , Culex/parasitologia , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Parasitemia/parasitologia , Parasitemia/transmissão , Passeriformes/parasitologia , Plasmodium/genética
14.
Parasitol Res ; 117(7): 2187-2199, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-29730725

RESUMO

Avian haemosporidian parasites (Apicomplexa, Haemosporida) are widespread pathogens that cause malaria (Plasmodium spp.) and other haemosporidioses (Haemoproteus spp. and Leucocytozoon spp.) in birds. The Special Protection Area Durankulak Lake (SPA DL) is a coastal lake in northeast Bulgaria, part of the Natura 2000 network that was declared as important area for wintering, breeding and migratory birds. Despite a number of conservation efforts outlined for the SPAs of Natura 2000 network, the potential threats and influences of haemosporidians and other parasites on occurring birds were not considered. In the present study, we aim to investigate the richness of haemosporidian parasites in birds captured in the protected area and to report the parasite species/DNA lineages that undergo local transmission in the region. We used both microscopic examination and PCR-based methods to diagnose haemosporidian infections in juvenile (captured in the year of hatching) and adult birds. The overall prevalence of haemosporidian parasites was significantly higher in the adult birds compared to juveniles. We identified five out of 21 recorded cytochrome b (cyt b) parasite lineages that are locally transmitted in the SPA DL (one of the genus Haemoproteus Kruse, 1890 and four of genus Plasmodium Marchiafava and Celli, 1885): cyt b lineages hRW2 of Haemoproteus belopolskyi, pSGS1 of Plasmodium relictum, pCOLL1, pYWT4 and pPADOM01 of Plasmodium (Haemamoeba) spp. It is likely that the majority of the parasites with local transmission are widespread host generalists and that host exchange is rather frequent among the birds inhabiting SPA DL.


Assuntos
Doenças das Aves/epidemiologia , Doenças das Aves/parasitologia , Haemosporida/classificação , Haemosporida/genética , Malária Aviária/epidemiologia , Malária Aviária/transmissão , Plasmodium/genética , Animais , Aves/parasitologia , Bulgária/epidemiologia , Citocromos b/genética , DNA de Protozoário/genética , Haemosporida/isolamento & purificação , Malária Aviária/parasitologia , Reação em Cadeia da Polimerase/veterinária , Prevalência
15.
Sci Rep ; 8(1): 4188, 2018 03 08.
Artigo em Inglês | MEDLINE | ID: mdl-29520067

RESUMO

Artificial infection of mosquitoes with the endosymbiont bacteria Wolbachia can interfere with malaria parasite development. Therefore, the release of Wolbachia-infected mosquitoes has been proposed as a malaria control strategy. However, Wolbachia effects on vector competence are only partly understood, as indicated by inconsistent effects on malaria infection reported under laboratory conditions. Studies of naturally-occurring Wolbachia infections in wild vector populations could be useful to identify the ecological and evolutionary conditions under which these endosymbionts can block malaria transmission. Here we demonstrate the occurrence of natural Wolbachia infections in three species of black fly (genus Simulium), which is a main vector of the avian malaria parasite Leucocytozoon. Prevalence of Leucocytozoon was high (25%), but the nature and magnitude of its association with Wolbachia differed between black fly species. Wolbachia infection was positively associated with avian malaria infection in S. cryophilum, negatively associated in S. aureum, and unrelated in S. vernum. These differences suggest that Wolbachia interacts with the parasite in a vector host species-specific manner. This provides a useful model system for further study of how Wolbachia influences vector competence. Such knowledge, including the possibility of undesirable positive association, is required to guide endosymbiont based control methods.


Assuntos
Haemosporida/fisiologia , Insetos Vetores , Malária Aviária , Infecções por Rickettsiaceae , Simuliidae , Wolbachia/fisiologia , Animais , Aves , Insetos Vetores/microbiologia , Insetos Vetores/parasitologia , Malária Aviária/epidemiologia , Malária Aviária/microbiologia , Malária Aviária/parasitologia , Malária Aviária/transmissão , Infecções por Rickettsiaceae/epidemiologia , Infecções por Rickettsiaceae/parasitologia , Infecções por Rickettsiaceae/transmissão , Simuliidae/microbiologia , Simuliidae/parasitologia , Especificidade da Espécie
17.
Int J Parasitol ; 48(3-4): 257-264, 2018 03.
Artigo em Inglês | MEDLINE | ID: mdl-29170087

RESUMO

Pathogen-induced host phenotypic changes are widespread phenomena that can dramatically influence host-vector interactions. Enhanced vector attraction to infected hosts has been reported in a variety of host-pathogen systems, and has given rise to the parasite manipulation hypothesis whereby pathogens may adaptively modify host phenotypes to increase transmission from host to host. However, host phenotypic changes do not always favour the transmission of pathogens, as random host choice, reduced host attractiveness and even host avoidance after infection have also been reported. Thus, the effects of hosts' parasitic infections on vector feeding behaviour and on the likelihood of parasite transmission remain unclear. Here, we experimentally tested how host infection status and infection intensity with avian Plasmodium affect mosquito feeding patterns in house sparrows (Passer domesticus). In separate experiments, mosquitoes were allowed to bite pairs containing (i) one infected and one uninfected bird and (ii) two infected birds, one of which treated with the antimalarial drug, primaquine. We found that mosquitoes fed randomly when exposed to both infected and uninfected birds. However, when mosquitoes were exposed only to infected individuals, they preferred to bite the non-treated birds. These results suggest that the malarial parasite load rather than the infection itself plays a key role in mosquito attraction. Our findings partially support the parasite manipulation hypothesis, which probably operates via a reduction in defensive behaviour, and highlights the importance of considering parasite load in studies on host-vector-pathogen interactions.


Assuntos
Culex/parasitologia , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Pardais/parasitologia , Animais , Culex/fisiologia , DNA/sangue , Comportamento Alimentar , Feminino , Interações Hospedeiro-Parasita , Modelos Lineares , Masculino , Mosquitos Vetores/fisiologia , Carga Parasitária/veterinária , Distribuição Aleatória
18.
J Parasitol ; 103(6): 683-691, 2017 12.
Artigo em Inglês | MEDLINE | ID: mdl-28766991

RESUMO

The vectors of avian malaria (Haemosporida) are an understudied component of wildlife disease ecology. Most studies of avian malaria have focused on the intermediate bird hosts. This bias leaves a significant gap in our knowledge and understanding of the insect hosts. This study investigates the diversity of malaria parasites carried by mosquitoes (Diptera, Culicidae) in the state of Mississippi. With the use of molecular techniques, haemosporidian infection rates were determined and parasites were identified. A total of 27,157 female mosquitoes representing 15 species were captured. Five of those species tested positive for malaria parasites with an overall infection rate of 4 per 1,000 mosquitoes infected. Mosquitoes were shown to harbor Plasmodium and Haemoproteus ( Parahaemoproteus) parasites. A unique lineage of parasites was discovered in Anopheles mosquitoes, potentially representing a new genus of haemosporidian parasites, reinforcing the need to continue investigating this diverse group of parasites.


Assuntos
Culicidae/parasitologia , Haemosporida/isolamento & purificação , Malária Aviária/transmissão , Mosquitos Vetores/parasitologia , Animais , Teorema de Bayes , Culicidae/classificação , Citocromos b/genética , DNA de Protozoário/isolamento & purificação , Feminino , Marcadores Genéticos , Haemosporida/classificação , Haemosporida/genética , Mississippi , Mosquitos Vetores/classificação , Filogenia , Plasmodium/genética , Plasmodium/isolamento & purificação , Reação em Cadeia da Polimerase , Alinhamento de Sequência
19.
Malar J ; 16(1): 110, 2017 03 09.
Artigo em Inglês | MEDLINE | ID: mdl-28279180

RESUMO

BACKGROUND: Primaquine is an anti-malarial used to prevent Plasmodium vivax relapses and malaria transmission. However, PQ metabolites cause haemolysis in patients deficient in the enzyme glucose-6-phosphate dehydrogenase (G6PD). Fifteen PQ-thiazolidinone derivatives, synthesized through one-post reactions from primaquine, arenealdehydes and mercaptoacetic acid, were evaluated in parallel in several biological assays, including ability to block malaria transmission to mosquitoes. RESULTS: All primaquine derivatives (PQ-TZs) exhibited lower cell toxicity than primaquine; none caused haemolysis to normal or G6PD-deficient human erythrocytes in vitro. Sera from mice pretreated with the test compounds thus assumed to have drug metabolites, caused no in vitro haemolysis of human erythrocytes, whereas sera from mice pretreated with primaquine did cause haemolysis. The ability of the PQ-TZs to block malaria transmission was evaluated based on the oocyst production and percentage of mosquitoes infected after a blood meal in drug pre-treated animals with experimental malaria caused by either Plasmodium gallinaceum or Plasmodium berghei; four and five PQ-TZs significantly inhibited sporogony in avian and in rodent malaria, respectively. Selected PQ-TZs were tested for their inhibitory activity on P. berghei liver stage development, in mice and in vitro, one compound (4m) caused a 3-day delay in the malaria pre-patent period. CONCLUSIONS: The compound 4m was the most promising, blocking malaria transmissions and reducing the number of exoerythrocytic forms of P. berghei (EEFs) in hepatoma cells in vitro and in mice in vivo. The same compound also caused a 3-day delay in the malaria pre-patent period.


Assuntos
Eritrócitos/parasitologia , Glucosefosfato Desidrogenase/metabolismo , Malária/tratamento farmacológico , Plasmodium berghei/efeitos dos fármacos , Plasmodium gallinaceum/efeitos dos fármacos , Primaquina/análogos & derivados , Primaquina/farmacologia , Animais , Linhagem Celular Tumoral , Galinhas , Chlorocebus aethiops , Eritrócitos/efeitos dos fármacos , Hemólise/efeitos dos fármacos , Células Hep G2 , Humanos , Malária/transmissão , Malária Aviária/tratamento farmacológico , Malária Aviária/transmissão , Camundongos , Plasmodium berghei/crescimento & desenvolvimento , Plasmodium gallinaceum/crescimento & desenvolvimento
20.
Malaria Journal ; 16(83): 1-20, Fev, 2017. graf, ilus, tab
Artigo em Inglês | Sec. Est. Saúde SP, SESSP-SUCENPROD, Sec. Est. Saúde SP | ID: biblio-1064645

RESUMO

The role of zoos in conservation programmes has increased significantly in last decades, and the health of captive animals is essential to guarantee success of such programmes. However, zoo birds suffer from parasitic infections, which often are caused by malaria parasites and related haemosporidians. Studies determining the occurrence and diversity of these parasites, aiming better understanding infection influence on fitness of captive birds, are limited. Methods: In 2011–2015, the prevalence and diversity of Plasmodium spp. and Haemoproteus spp. was examined in blood samples of 677 captive birds from the São Paulo Zoo, the largest zoo in Latin America. Molecular and microscopic diagnostic methods were used in parallel to detect and identify these infections. Results: The overall prevalence of haemosporidians was 12.6%. Parasites were mostly detected by the molecular diagnosis, indicating that many birds harbour subclinical or abortive infections. In this project, birds of 17 orders (almost half of all the orders currently accepted in taxonomy of birds), 29 families, and 122 species, were tested, detecting positive individuals in 27% of bird species. Birds from the Anatidae were the most prevalently infected (64.7% of all infected animals)...


Assuntos
Animais , Malária Aviária/diagnóstico , Malária Aviária/mortalidade , Malária Aviária/prevenção & controle , Malária Aviária/transmissão
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