FP7Реинтеграция2011–2014

PARIS · Parasite evolution on islands: Socotra reptiles and their parasites as a model study

7РП — „Хора“ (Действия „Мария Кюри“)

Период
2011-03-01 → 2014-02-28
Финансиране от ЕС
45 000 €
Участници
1
Схема
MC-ERG

Линиите свързват координатора с партньорите.

Накратко на български

Паразитите по ендемични ящери на Балеарските острови, като салмонела и кръвни паразити, се анализират за проследяване на разпространението им. Това помага да се оцени рискът от предаване на инфекции към други животни и хора.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Parasite evolution on islands: Socotra reptiles and their parasites as a model study

Island faunas offer ideal models to explore the evolutionary ecology and epizootiology of parasite assemblages. Island reptiles have been long considered model organisms for evolutionary studies, yet little work has been done on their parasites, despite important conservation and epidemiological implications. The Balearic archipelago (NE Mediterranean) is a popular tourist hotspot and herein the impact of human activities and biological invasions are of important concern for wildlife conservation and the emergence of infectious diseases. However, we know very little about the circulation of zoonoses in the endemic fauna of these islands. The general aim of the project was to investigate spatiotemporal dynamics of infection of pathogens circulating in reptile populations, to evaluate the effects on hosts, as well as to investigate their transmission routes in order to evaluate the risk of spill over to other wildlife species, domestic animals, and potentially humans. To answer this question we focused in a pair of endemic lizards, Podarcis lilfordii and P. pytiutensis, which are closely related, very abundant and widely distributed species in the Balearics, and so ideal systems where to investigate the disease ecology of parasitic infections. We first characterized the parasites circulating in these hosts in multiple islands across the Balearics. We found various species of haemoparasites including Hepatozoon and Eimeria, but no record of Plasmodium malaria parasites. Of importance, we detected enterobacteria of the genus Salmonella circulating in these two lizards. We are also now screening for the presence of malaria parasites of the genus Plasmodium in the mosquitoes as well as mosquito-borne flaviruses. We then went on to investigate spatiotemporal patterns of infection. For Hepatozoon we found that while prevalence was high and persistent, intensity of infection varied temporally across years and spatially among geographic locations. In the case of Salmonella, we found clear differences in prevalence between islands and localities. Second, we investigated the effects of parasite infection on host immunity and body condition. For Hepatozoon some host detrimental effects were apparent at the level of humoral immune responses. Finally, this project aimed to add insights into bridges between the various compartments for the circulation of these pathogens. For the food-borne bacterial pathogens isolated from reptiles, Salmonella spp., on-going analyses based on multilocus sequence typing, serotyping and antibiotic susceptibility testing; investigate the pathogenicity and assign the source for transmission by comparison with global public databases. Related to the vector-borne transmitted pathogens, we found high diversity of mosquitoes and identified potential bridges for transmission between reptiles and other wildlife based on blood-meal analyses of vectors. Overall, our results have important conservation implications given the high prevalence and abundance of the various parasites examined on the lizards, but also because of the bridge vectors and so the potential risk of spill over to other host species. More importantly, this study reveals for the first time the circulation of Salmonella enterobacteria in reptiles in the Balearic archipelago. Given the high abundance and distribution of the host species and the frequent contact with humans, our findings have potential implications for public health. Keywords: Islands, reptile parasites, Hepatozoon, Plasmodium, Salmonella, mosquito, detection, infection, epizootiology, transmission networks.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

Islands biotas have long fascinated biologists studying evolution. Yet studies focuses on parasites have by far lag behind those on free-living organisms. At present we know little about how parasites colonize, spread and adapt to islands, despite the implications this may have from a conservation and epidemiological perspective. Reptiles parasites are interesting systems to tackle such questions. Despite reptiles have been long-considered model organisms for evolutionary studies, little work has been done on their parasites, particularly those living on islands. And we know nothing about the role of these host-parasite systems in the maintenance and transmission of zoonotic diseases. Socotra is one of the most isolated landforms on Earth of continental origin, and a hallmark of biodiversity and endemicity. However, the archipelago remains largely unexplored to science as does the origin and evolution of its endemic fauna. But in investigating parasite evolution we can get further insights into the evolutionary history of the hosts. In this scientific context, this project aims to answer; 1) how host-parasite assemblages of Socotra have evolved, 2) which are the consequences of parasitism for its endemic reptile fauna, 3) which is the role of these reptile-vector pathosystems in the disease ecology of zoonotic agents and disease risk for humans.

Оригинален текст от CORDIS (на английски).

Участници

  • AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS · MadridКоординаторИспания

Връзки

Данни: CORDIS, © Европейски съюз