The Wolf Intelligencer

Switzerland – Schweiz

ECOREGIONS OF SWITZERLAND

SWITZERLAND

Alps conifer and mixed forests ecoregion (temperate coniferous forests Biome) (Palearctic Realm)
Po Basin mixed forests ecoregion (temperate coniferous forests Biome) (Palearctic Realm)
Western European broadleaf forests ecoregion
(Temperate broadleaf and mixed forests Biome) (Palearctic Realm)

Gray Wolf (Canis lupus)
Eurasion Wolf (Canis lupus lupus)
Italian Wolf (Canis lupus italicus)
graue Wölfe

Population Statistics [30-35 in 2016] [approximately 80 in 2020]
Bevölkerungsstatistik

Legal Status; Protected, unless an animal kills over 20 sheep in a single month, or if it loses its fear of humans.
Rechtsstellung

Resources
Ressourcen
Informationen des BAFU zum Wolf
Wolf – Swiss National Parc

Organizations
Organisationen
KORA:
Gruppe Wolf Schweiz | CHWOLF.org
WWF Schweiz – Grossraubtiere in der Schweiz
Herdenschutz Schweiz
Der Wolf in der Schweiz, Wildtier Schweiz Uni Zürich
MAVA

News Resources & Publications
Nachrichten Ressourcen und Publikationen
SwissInfo

pinterest-icon LATEST SWISS NEWS
pinterest-icon LATEST EUROPEAN NEWS

Wolf and Wildlife News from Switzerland – Schweiz

Journal Article

High prevalence of Sarcocystis spp. in the Eurasian wolf (Canis lupus lupus): Third-generation sequencing resolves mixed infections. Lückner S, Moré G, Marti I, Frey CF, Fernandez JE, Belhout C, Basso W. International Journal for Parasitology: Parasites and Wildlife. 2025 Sep

ABSTRACT

Abstract
Sarcocystis spp. (Apicomplexa: Coccidia) are obligate heteroxenous protozoa that infect a wide range of host species. Transmission follows a predator-prey cycle involving an intermediate host (IH) and a definitive host (DH). For many species, only IHs have been identified, while DHs remain unknown. DHs can be infected with multiple Sarcocystis spp. at the same time, which complicates species identification. We aimed to determine the prevalence and species diversity of Sarcocystis infections in free-ranging wolves in Switzerland using both coprological and molecular methods. A further goal was to evaluate the utility of Third-generation sequencing for resolving mixed infections. A total of 87 wolf intestinal content samples were collected between 2017 and 2023 and analyzed coproscopically by a sedimentation-flotation method. Sarcocystis oocysts/sporocysts were detected in 76 % (66/87). DNA was obtained from 57/66 positive samples and 55/57 resulted positive in a Sarcocystis 18S rRNA screening PCR. Additionally, mitochondrial cytochrome c oxidase subunit I (COI) gene PCR and a real-time PCR targeting S. cruzi were performed. PCR products from conventional PCRs were submitted for Sanger sequencing. Monoinfections were identified in 16 % (9/55) and mixed infections in 84 % (46/55) of the samples. A subset of five samples was analyzed by Third-generation sequencing (Pacific Biosciences) of the 18S rRNA full-length and COI fragment PCR products. BLAST and phylogenetic analysis were used to validate taxonomic classification. Molecular analysis identified nine known Sarcocystis species: S. tenella, S. arieticanis, S. capreolicanis, S. linearis, S. gracilis, S. cruzi, S. capracanis, S. iberica, and S. venatoria. Newly developed pipelines for the Third-generation sequencing data provided high-resolution species-level identification in samples with mixed infections. These findings confirm the Eurasian wolf as natural DH for multiple Sarcocystis species for the first time, including S. linearis, S. iberica, and S. venatoria. Further complementary studies on prey species are needed to clarify host-parasite dynamics.

Two decades of non-invasive genetic monitoring of the grey wolves recolonizing the Alps support very limited dog introgression. Dufresnes C, Remollino N, Stoffel C, Manz R, Weber JM, Fumagalli L. Scientific reports. 2019 Jan

Combining human acceptance and habitat suitability in a unified socio‐ecological suitability model: a case study of the wolf in Switzerland. Behr DM, Ozgul A, Cozzi G. Journal of applied ecology. 2017 Dec

Diet of wolves Canis lupus recolo-nizing Switzerland: A preliminary approach. Weber JM, Hofer B. Revue Suisse de Zoologie. 2010 Jun

Long-distance wolf recolonization of France and Switzerland inferred from non-invasive genetic sampling over a period of 10 years. Valière N, Fumagalli L, Gielly L, Miquel C, Lequette B, Poulle ML, Weber JM, Arlettaz R, Taberlet P. InAnimal Conservation forum 2003 Feb

A wolf habitat suitability prediction study in Valais (Switzerland). Glenz C, Massolo A, Kuonen D, Schlaepfer R. Landscape and Urban planning. 2001 Jun

Save

Save

Save