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Trends in Ecology & Evolution · 2024 · Vol. 39 · Issue 7 · Elsevier Current Trends
Aoife Leonard; Javier Abalos; Titus Adhola; Windsor Aguirre; Ostaizka Aizpurua; Shahzad Ali; Franco Andreone; Fabien Aubret; Hefer D. Ávila-Palma; Lizbeth Fabiola Bautista Alcantara; Juan F. Beltrán; Rachel Berg; Thomas Bjørneboe Berg; Sandro Bertolino; Daniel T. Blumstein; Bazartseren Boldgiv; Zbigniew Borowski; Jean Philippe Boubli; Sven Büchner; Carlos Cabido; Carlos Camacho; Juan C. Chaparro; Anne Charmantier; Guillermo D'Elía; Luis P. da Silva; Bo Dalsgaard; Christophe de Franceschi; Ferran de la Cruz; Noé U. de la Sancha; Mathieu Denoël; Raphael Eisenhofer; Nathalie Feiner; Joana M. Fernandes; Jordi Figuerola; Leonida Fusani; Laura Gangoso; Roberto García-Roa; Stefania Gasperini; Nanna Gaun; M. Thomas; P. Gilbert; Ivan Gomez-Mestre; Gary R. Graves; Jim Groombridge; Emilie A. Hardouin; Mauricio Hernández; L. Gerardo Herrera M.; Kathy Hodder; Peter A. Hosner; Natali Hurtado; Javier Juste; Sarah C.L. Knowles; Kevin D. Kohl; Carmi Korine; Yurii V. Kornilev; Stephanie Kramer-Schadt; Xavier Lambin; Ella Z. Lattenkamp; Jonas Lauritsen; Guoliang Li; Celeste María López; Adrià López Baucells; Tali Magory Cohen; Emiliano Manzo; Mélanie Marteau; Lynn B. Martin; Garazi Martin Bideguren; Maria Vittoria Mazzamuto; Ara Monadjem; Pirmin Nietlisbach; Daniel Bilyeli Øksnebjerg; Jasmin G. Packer; Michael L. Pepke; Juan M. Peralta-Sánchez; Adrián Perdomo; Guillem Pérez i de Lanuza; Carlotta Pietroni; Mathilde Poyet; Carsten Rahbek; Thiruvarangan Ramaraj; Yuliaxis Ramayo Caldas; Orly Razgour; Hugo Rebelo; Jiří Reif; Rebecca Rimbach; Ricardo Rocha; Rita G. Rocha; Carlos Rodríguez Fernandes; Claudia Romeo; Suvi Ruuskanen; Scott K. Sakaluk; Francesca Santicchia; Tom Sarraude; Rune Sørås; Martina Spada; Michael A. Steele; Mason R. Stothart; Emina Sunje; Alex O. Sutton; Marta Szulkin; Yu Takahata; Charles F. Thompson; Kasper Thorup; Geizecler Tomazetto; Laura Torrent; Nia Toshkova; Claudia Tranquillo; Manfredo Alejandro Turcios-Casco; Tobias Uller; Isolde van Riemsdijk; Guillermo Velo-Antón; Goedele Verbeylen; Elin Videvall; Christian C. Voigt; Lucas A. Wauters; Maren Wellenreuther; Alexey Yanchukov; Antton Alberdi
Molecular Ecology · 2018 · Vol. 27 · Issue 21 · Wiley
Strongly selected characters can be transferred from one lineage to another with limited genetic exchange, resulting in asymmetric introgression and a mosaic genome in the receiving population. However, systems are rarely sufficiently well studied to link the pattern of introgression to its underlying process. Male common wall lizards in western Italy exhibit exaggeration of a suite of sexually selected characters that make th...
Molecular Ecology · 2016 · Vol. 25 · Issue 17 · Wiley
Many populations are small and isolated with limited genetic variation and high risk of mating with close relatives. Inbreeding depression is suspected to contribute to extinction of wild populations, but the historical and demographic factors that contribute to reduced population viability are often difficult to tease apart. Replicated introduction events in non‐native species can offer insights into this problem because they...
Ecology Letters · 2015 · Vol. 18 · Issue 12 · Wiley
Hybridisation is increasingly recognised as an important cause of diversification and adaptation. Here, we show how divergence in male secondary sexual characters between two lineages of the common wall lizard ( Podarcis muralis ) gives rise to strong asymmetries in male competitive ability and mating success, resulting in asymmetric hybridisation upon secondary contact. Combined with no negative effects of hybridisation on su...
Molecular Ecology · 2015 · Vol. 24 · Issue 11 · Wiley
Establishing the introduction pathways of alien species is a fundamental task in invasion biology. The common wall lizard, Podarcis muralis, has been widely introduced outside of its native range in both Europe and North America, primarily through escaped pets or deliberate release of animals from captive or wild populations. Here, we use Bayesian clustering, approximate Bayesian computation ( ABC ) methods and network analyse...
Molecular Ecology · 2014 · Vol. 23 · Issue 3 · Wiley
Population viscosity can have major consequences for adaptive evolution, in particular for phenotypes involved in social interactions. For example, population viscosity increases the probability of mating with close kin, resulting in selection for mechanisms that circumvent the potential negative consequences of inbreeding. Female promiscuity is often suggested to be one such mechanism. However, whether avoidance of geneticall...
Molecular Ecology · 2008 · Vol. 17 · Issue 11 · Wiley
The evolution of female promiscuity poses an intriguing problem as benefits of mating with multiple males often have to arise via indirect, genetic, effects. Studies on birds have documented that multiple paternity is common in natural populations but strong evidence for selection via female benefits is lacking. In an attempt to evaluate the evidence more broadly, we review studies of multiple paternity in natural populations...
Molecular Ecology · 2007 · Vol. 16 · Issue 24 · Wiley
In polymorphic male painted dragon lizards ( Ctenophorus pictus ), red males win staged contests for females over yellow males, and yellow males have greater success in staged sperm competition trials than red males. This predicts different reproductive strategies in the wild with red males being more coercive or better mate guarders than yellow males. Yellow males would be expected to sire more offspring per copulation and ha...