Edyta Podmokła, Anna Dubiec, Bartosz Pluciński, Bartłomiej Zając, Lars Gustafsson
{"title":"多宿主禽类系统中的血寄生虫感染风险:综合分析。","authors":"Edyta Podmokła, Anna Dubiec, Bartosz Pluciński, Bartłomiej Zając, Lars Gustafsson","doi":"10.1017/S0031182024000994","DOIUrl":null,"url":null,"abstract":"<p><p>Avian blood parasites play a crucial role in wildlife health and ecosystem dynamics, exhibiting heterogeneous spatial distribution influenced by various factors. Although factors underlying heterogeneity in infection with blood parasites have been explored in many avian hosts, their importance in the context of host species and the parasite taxon remains poorly understood, particularly in cohabiting host species. Using next-generation sequencing for parasite screening, we investigate the association between <i>Haemoproteus</i>, <i>Plasmodium</i> and <i>Trypanosoma</i> infections in relation to individual parameters, host densities and landscape features in 3 cavity-nesting passerines: great tit (<i>Parus major</i>), blue tit (<i>Cyanistes caeruleus</i>) and collared flycatcher (<i>Ficedula albicollis</i>) in a highly fragmented forest habitat. Overall, <i>Haemoproteus</i> infections predominated, followed by <i>Plasmodium</i> and <i>Trypanosoma</i>, with great tits most and collared flycatchers least parasitized. There were no common patterns across host species in the probability of infection with locally transmitted parasites from each genus. Specifically, in all cases, the effect of particular parameters, if present, was observed only in 1 host species. Body condition influenced <i>Haemoproteus</i> and <i>Plasmodium</i> infections differently in tits. Host density, whether own species or all pooled, explained <i>Haemoproteus</i> infections in great tits and collared flycatchers, and <i>Plasmodium</i> in great tits. Landscape metrics, such as moisture index and distance to coast edge and pastures, affected infection probability in specific host–parasite combinations. Relative risk maps revealed infection risk gradients, but spatial variation repeatability over time was low. Our study highlights the complex dynamics of avian blood parasites in multi-host systems, shedding light on host–parasite interactions in natural ecosystems.</p>","PeriodicalId":19967,"journal":{"name":"Parasitology","volume":" ","pages":"1-12"},"PeriodicalIF":2.1000,"publicationDate":"2024-11-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Haemoparasite infection risk in multi-host avian system: an integrated analysis.\",\"authors\":\"Edyta Podmokła, Anna Dubiec, Bartosz Pluciński, Bartłomiej Zając, Lars Gustafsson\",\"doi\":\"10.1017/S0031182024000994\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Avian blood parasites play a crucial role in wildlife health and ecosystem dynamics, exhibiting heterogeneous spatial distribution influenced by various factors. Although factors underlying heterogeneity in infection with blood parasites have been explored in many avian hosts, their importance in the context of host species and the parasite taxon remains poorly understood, particularly in cohabiting host species. Using next-generation sequencing for parasite screening, we investigate the association between <i>Haemoproteus</i>, <i>Plasmodium</i> and <i>Trypanosoma</i> infections in relation to individual parameters, host densities and landscape features in 3 cavity-nesting passerines: great tit (<i>Parus major</i>), blue tit (<i>Cyanistes caeruleus</i>) and collared flycatcher (<i>Ficedula albicollis</i>) in a highly fragmented forest habitat. Overall, <i>Haemoproteus</i> infections predominated, followed by <i>Plasmodium</i> and <i>Trypanosoma</i>, with great tits most and collared flycatchers least parasitized. There were no common patterns across host species in the probability of infection with locally transmitted parasites from each genus. Specifically, in all cases, the effect of particular parameters, if present, was observed only in 1 host species. Body condition influenced <i>Haemoproteus</i> and <i>Plasmodium</i> infections differently in tits. Host density, whether own species or all pooled, explained <i>Haemoproteus</i> infections in great tits and collared flycatchers, and <i>Plasmodium</i> in great tits. Landscape metrics, such as moisture index and distance to coast edge and pastures, affected infection probability in specific host–parasite combinations. Relative risk maps revealed infection risk gradients, but spatial variation repeatability over time was low. 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Haemoparasite infection risk in multi-host avian system: an integrated analysis.
Avian blood parasites play a crucial role in wildlife health and ecosystem dynamics, exhibiting heterogeneous spatial distribution influenced by various factors. Although factors underlying heterogeneity in infection with blood parasites have been explored in many avian hosts, their importance in the context of host species and the parasite taxon remains poorly understood, particularly in cohabiting host species. Using next-generation sequencing for parasite screening, we investigate the association between Haemoproteus, Plasmodium and Trypanosoma infections in relation to individual parameters, host densities and landscape features in 3 cavity-nesting passerines: great tit (Parus major), blue tit (Cyanistes caeruleus) and collared flycatcher (Ficedula albicollis) in a highly fragmented forest habitat. Overall, Haemoproteus infections predominated, followed by Plasmodium and Trypanosoma, with great tits most and collared flycatchers least parasitized. There were no common patterns across host species in the probability of infection with locally transmitted parasites from each genus. Specifically, in all cases, the effect of particular parameters, if present, was observed only in 1 host species. Body condition influenced Haemoproteus and Plasmodium infections differently in tits. Host density, whether own species or all pooled, explained Haemoproteus infections in great tits and collared flycatchers, and Plasmodium in great tits. Landscape metrics, such as moisture index and distance to coast edge and pastures, affected infection probability in specific host–parasite combinations. Relative risk maps revealed infection risk gradients, but spatial variation repeatability over time was low. Our study highlights the complex dynamics of avian blood parasites in multi-host systems, shedding light on host–parasite interactions in natural ecosystems.
期刊介绍:
Parasitology is an important specialist journal covering the latest advances in the subject. It publishes original research and review papers on all aspects of parasitology and host-parasite relationships, including the latest discoveries in parasite biochemistry, molecular biology and genetics, ecology and epidemiology in the context of the biological, medical and veterinary sciences. Included in the subscription price are two special issues which contain reviews of current hot topics, one of which is the proceedings of the annual Symposia of the British Society for Parasitology, while the second, covering areas of significant topical interest, is commissioned by the editors and the editorial board.