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Adaptive evolution of stress response genes in parasites aligns with host niche diversity. <i>BMC Biology 23(1)</i>: 10. <a href=\"https://dx.doi.org/10.1186/s12915-024-02091-w\" target=\"_blank\">https://dx.doi.org/10.1186/s12915-024-02091-w</a>","AutID":498985,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":437528,"RR":"<b>Jorissen, M.W.P.; Vanschoenwinkel, B.; Pariselle, A.; Artois, T.; Danadu, C.; Huyse, T.; Kapepula Kasembele, G.; Muterezi Bukinga, F.; Šimková, A.; Snoeks, J.; Van Sever, W.; Vreven, E.J.; Wamuini Lunkayilakio, S.; Vanhove, M.P.M.</b> (2025). Do parasite communities differ between invasive and native fish hosts? A case of monogeneans infecting the gills of Nile tilapia. <i>Hydrobiologia 852(15)</i>: 3911-3928. <a href=\"https://dx.doi.org/10.1007/s10750-024-05789-8\" target=\"_blank\">https://dx.doi.org/10.1007/s10750-024-05789-8</a>","AutID":617094,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":437530,"RR":"<b>Kmentová, N.; Topic, M.; Vanhove, M.P.M.; Atkinson, S.D.</b> (2025). <i>Monomyxum ligophori</i> n. sp. in a ParasiteBlitz: monopisthocotylans as myxozoan hosts in South Carolina and monophyly of a cosmopolitan hyperparasitic clade. <i>J. 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Aligning EU policies to address biological invasions: assessing invasion impacts across sectors. <i>NeoBiota 102</i>: 295-312. <a href=\"https://dx.doi.org/10.3897/neobiota.102.152015\" target=\"_blank\">https://dx.doi.org/10.3897/neobiota.102.152015</a>","AutID":441615,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":437533,"RR":"<b>Monnens, M.; Artois, T.; Briscoe, A.; Diez, Y.L.; Fraser, K.P.P.; Leander, B.S.; Littlewood, D.T.J.; Santos, M.J.; Smeets, K.; Van Steenkiste, N.W.L.; Vanhove, M.P.M.</b> (2025). Signatures of endosymbiosis in mitochondrial genomes of rhabdocoel flatworms. <i>Mol. 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The role of systematics for understanding ecosystem functions: proceedings of the Zoologica Scripta Symposium, Oslo, Norway, 25 August 2022. <i>Zoologica Scri. 52(3)</i>: 187-214. <a href=\"https://dx.doi.org/10.1111/zsc.12593\" target=\"_blank\">https://dx.doi.org/10.1111/zsc.12593</a>","AutID":350054,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":366810,"RR":"<b>Gobbin, T.P.; Vanhove, M.P.M.; Veenstra, R.; Maan, M.E.; Seehausen, O.</b> (2023). Variation in parasite infection between replicates of speciation in Lake Victoria cichlid fish. <i>Evolution 77(7)</i>: 1682-1690. <a href=\"https://dx.doi.org/10.1093/evolut/qpad080\" target=\"_blank\">https://dx.doi.org/10.1093/evolut/qpad080</a>","AutID":441480,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":366812,"RR":"<b>Monnens, M.; Halajian, A.; Littlewood, D.T.J.; Briscoe, A.G.; Artois, T.; Vanhove, M.P.M.</b> (2023). Can avian flyways reflect dispersal barriers of clinostomid parasites? First evidence from the mitogenome of <i>Clinostomum complanatum</i>. <i>Gene 851</i>: 146952. <a href=\"https://dx.doi.org/10.1016/j.gene.2022.146952\" target=\"_blank\">https://dx.doi.org/10.1016/j.gene.2022.146952</a>","AutID":388685,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":360490,"RR":"<b>Phaka, F.M.; Vanhove, M.P.M.; du Preez, L.H.; Hugé, J.</b> (2023). Library books as environmental management capacity building opportunities exclude most South African languages. <i>Environ. Sci. Policy 141</i>: 61-68. <a href=\"https://dx.doi.org/10.1016/j.envsci.2022.12.020\" target=\"_blank\">https://dx.doi.org/10.1016/j.envsci.2022.12.020</a>","AutID":243061,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":354541,"RR":"<b>Cruz-Laufer, A.J.; Artois, T.; Koblmüller, S.; Pariselle, A.; Smeets, K.; Van Steenberge, M.; Vanhove, M.P.M.</b> (2022). Explosive networking: The role of adaptive host radiations and ecological opportunity in a species‐rich host–parasite assembly. <i>Ecol. Lett. 25(8)</i>: 1795-1812. <a href=\"https://dx.doi.org/10.1111/ele.14059\" target=\"_blank\">https://dx.doi.org/10.1111/ele.14059</a>","AutID":498985,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":354540,"RR":"<b>Cruz-Laufer, A.J.; Pariselle, A.; Jorissen, M.W.P.; Muterezi Bukinga, F.; Al Assadi, A.; Van Steenberge, M.; Koblmüller, S.; Sturmbauer, C.; Smeets, K.; Huyse, T.; Artois, T.; Vanhove, M.P.M.</b> (2022). 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Ecol. 31(12)</i>: 3304-3322. <a href=\"https://dx.doi.org/10.1111/mec.16479\" target=\"_blank\">https://dx.doi.org/10.1111/mec.16479</a>","AutID":441480,"MonDate":null,"AnaDate":2022,"PeerRev":1,"outputType":"1_A1","OpenAcc":0},{"BRefID":354564,"RR":"<b>Geraerts, M.; Huyse, T.; Barson, M.; Bassirou, H.; Bilong Bilong, C.F.; Bitja Nyom, A.R.; Chocha Manda, A.; Cruz-Laufer, A.J.; Kalombo Kabalika, C.; Kapepula Kasembele, G.; Muterezi Bukinga, F.; Njom, S.; Artois, T.; Vanhove, M.P.M.</b> (2022). Mosaic or melting pot: The use of monogeneans as a biological tag and magnifying glass to discriminate introduced populations of Nile tilapia in sub-Saharan Africa. <i>Genomics (S. 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Six new species of <i>Cichlidogyrus</i> Paperna, 1960 (Platyhelminthes: Monogenea) from the gills of cichlids (Teleostei: Cichliformes) from the Lomami River Basin (DRC: Middle Congo). <i>Parasites & Vectors 13(1)</i>: 187. <a href=\"https://dx.doi.org/10.1186/s13071-020-3927-4\" target=\"_blank\">https://dx.doi.org/10.1186/s13071-020-3927-4</a>","AutID":441480,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":354926,"RR":"<b>Gobbin, T.P.; Vanhove, M.P.M.; Pariselle, A.; Groothuis, T.G.G.; Maan, M.E.; Seehausen, O.</b> (2020). Temporally consistent species differences in parasite infection but no evidence for rapid parasite-mediated speciation in Lake Victoria cichlid fish. <i>J. Evolution. 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