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Pisano, S. R. R.

Publications and source records attributed to Pisano, S. R. R..

3 recordsLinked to original sources

Pathologic and phylogenetic characterization of Usutu virus infections in free-ranging wild birds in Switzerland (2015-2020)

Usutu Virus (USUV) is an emerging flavivirus causing fatal disease in free-ranging and captive birds but also infecting mammals and representing a significant zoonotic agent in Europe, making monitoring and investigations of this viral agent crucial both for conservation and public health. We carried out a retrospective investigation focusing on free-ranging wild birds confirmed to be USUV infected examined at the Institute for Fish and Wildlife Health (FIWI), Switzerland. The pathology and virology findings together with the phylogeographic and environmental data were examined for underlying factors to the dynamics of the USUV infection in Switzerland, between 2015 and 2020, with particular focus to the major peak of 2018. USUV infection was confirmed by reverse transcription-PCR in 67 birds, with common blackbirds (Turdus merula, 73%; 49/67) being overrepresented, showing signs of diseases including poor body condition (84%; 56/67) and splenomegaly (75%; 50/67). Histology (n=34) revealed changes in the heart (58%; 19/33), the central nervous system (67%; 22/33) and the liver (62%; 21/34). Of interest, the splenic changes (86%, 25/29) showed different, but likely correlated phenotypes, characterized by the presence of discrete and/or diffuse histiocytic infiltrates in the congested and lymphoid depleted spleen parenchyma, possibly reflecting different stages of the disease. Phylogenetic analysis unambiguously revealed that the recent USUV infections were predominantly caused by strains of the Europe 3 lineage. USUV Africa 3 strains were detected exclusively from southern Switzerland in one location (two blackbirds). Our investigation revealed intralesional Usutu viral RNA consistent with infection in previously undescribed hosts (Corvus frugilegus, Cygnus olor) and provided new insights into the pathogenesis and the ecology of the disease. The environmental data suggested the occurrence of unique weather conditions, possibly boosting the mosquito population and favoring an unprecedented increase of cases in 2018. Finally, the increase in genetic diversity of the circulating strains might have contributed to the recorded high mortality in 2018. Author SummaryAt the end of the 20th century, Usutu virus (USUV) was associated for the first time with mass mortality in wild black birds in Italy. Shortly after, reports on avian fatalities associated with USUV all over Europe appeared. In 2018 an unprecedented high occurrence of Usutu virus disease (UVD) caused high mortalities in wild birds in Switzerland and other European countries. Here we examined deceased wild birds with UVD with an emphasis on pathological examination and identification of USUV strains. The spleen is one of the main organs affected and we propose a timeline of lesion progression correlating with early, intermediate and late changes. Whereas we mainly identified strains of the European 3 lineage, we also found a hotspot of African 3 lineage strains. This indicates multiple entries of USUV into Switzerland. Although the disease is especially fatal in Strigiformes and Passeriformes, we expanded the spectrum of bird species (mute swans, rooks) naturally infected with the USUV. Usutu virus is an arthropod-borne virus and transmission occurs mainly via blood feeding vectors such as mosquitoes. We discuss the influence of weather conditions on mosquito population and the potential role of invasive mosquito species, such as the Asian tiger mosquito and other Aedes spp., as additional vectors for disease.

microbiology↗

Towards an eco-epidemiological framework for managing freshwater crayfish communities confronted with crayfish plague

Wildlife diseases figure prominently among the main causes of biodiversity loss worldwide. Especially fungal and fungus-like pathogens are on the rise, wreaking havoc across the tree of life by threatening species persistence and destabilizing ecosystems. A worrisome example are freshwater crayfish species in Eurasia and Oceania, facing the dual challenge of introduced competitive crayfish species and an introduced water mold (Aphanomyces astaci) causing crayfish plague. A. astaci locally extinguishes susceptible native crayfish populations, while non-native individuals (mostly from North America) remain largely unaffected. Despite its significant impact and its [~]150 years of presence in Europe, studies and disease management recommendations for crayfish plague that are firmly rooted in epidemiological theory are scarce. Here, we present a practical eco-epidemiological framework to understand how multi-species crayfish communities react to crayfish plague introductions. The framework is based on the observation that the dynamics of crayfish communities are mainly determined by life-history characteristics, within- and among-species competition, effects of generalist predators (including fishing), and host-pathogen interactions. From this ecological and epidemiological context, we derive fundamental epidemiological metrics, single-host species and community-level basic reproduction numbers (R0). We investigate how host species densities affect the likelihood of a disease outbreak in a crayfish community, and we demonstrate that a communitys R0 value is simply the sum of the communitys single-host species R0 values, adjusted for competition and predation. We further demonstrate how R0 can be used to guide preventative and mitigation actions for crayfish communities. For example, we show how R0 expressions - even without a detailed parametrization - can be used to construct regional risk rankings for different crayfish communities, for an effective allocation of resources to local conservation plans. Our eco-epidemiological framework will also be of interest to the management of other aquatic host-pathogen systems with water-borne pathogen transmission as the main route of pathogen spread.

ecology↗

Analysis of a European general wildlife health surveillance program: chances, challenges and recommendations

In the context of a One Health perspective general wildlife health surveillance (GWHS) gains importance worldwide, as pathogen transmission among wildlife, domestic animals and humans raises health, conservation and economic concerns. However, GWHS programs operate in the face of legal, geographical, financial, or administrative conditions. The present study uses a multi-tiered approach to understand the current characteristics, strengths and gaps of a European GWHS that operates in a fragmented legislative and multi-stakeholder environment. The aim is to support the implementation or improvement of other GWHS systems by managers, surveillance experts, and administrations. To assess the current state of wildlife health investigations and trends within the GWHS, we analyzed 20 years of wildlife diagnostic data, conducted an online survey and phone interviews with official field partners (hunting administrators, game wardens and hunters), and performed a time-per-task analysis. Firstly, we found that infectious disease dynamics, the level of public awareness for specific diseases, research activities and increasing population sizes of in depth-monitored protected species, together with biogeographical and political boundaries all impacted case numbers and can present unexpected challenges to a GWHS. Secondly, we found that even a seemingly comprehensive GWHS can feature pronounced information gaps, with underrepresentation of common or easily recognizable diseases, blind spots in non-hunted species and only a fraction of discovered carcasses being submitted. Thirdly, we found that substantial amounts of wildlife health data may be available at local hunting administrations or disease specialist centers, but outside the reach of the GWHS and its processes. In conclusion, we recommend that fragmented and federalist GWHS programs like the one addressed require a central, consistent and accessible collection of wildlife health data. Also, considering the growing role of citizen observers in environmental research, we recommend using online reporting systems to harness decentrally available information and fill wildlife health information gaps.

zoology↗