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A reliance on human habitats is key to the success of an introduced predatory reptile

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  • Tom Major
  • Lauren Jeffrey
  • Guillem Limia Russel
  • Rebecca Bracegirdle
  • Antonio Gandini
  • Rhys Morgan
  • Benjamin Michael Marshall
  • John F Mulley
  • Wolfgang Wüster

Abstract

Understanding the success of animals in novel environments is increasingly important as human-mediated introductions continue to move species far beyond their natural ranges. Alongside these introductions, inhabited and agricultural areas are spreading, and correspondingly most animal introductions occur in populated areas. Commensal species which can live alongside humans by making use of specific conditions, structures, or prey, have a significant advantage. Introduced mammal species often use anthropogenic features in their environment and demonstrate a higher tolerance of human disturbance, but their importance remains understudied in ectotherms. The Aesculapian snake (Zamenis longissimus) is an ectotherm which has been introduced beyond the northern extremities of its natural range. To understand their persistence, we radio-tracked snakes daily over two active seasons, including high-frequency tracking of a subset of males. We investigated snake home range size using Autocorrelated Kernel Density Estimators (AKDE). Using AKDE-weighted Habitat Selection Functions we identified preferences for habitat features in a mosaic of habitats, and we used Integrated Step Selection Functions to further explore how these features influence movement. We revealed a particular preference for buildings in male snakes, while females preferred woodland. We demonstrate that the success of this ectothermic predator is likely tied to a willingness to use human features of the landscape.

Suggested Citation

  • Tom Major & Lauren Jeffrey & Guillem Limia Russel & Rebecca Bracegirdle & Antonio Gandini & Rhys Morgan & Benjamin Michael Marshall & John F Mulley & Wolfgang Wüster, 2025. "A reliance on human habitats is key to the success of an introduced predatory reptile," PLOS ONE, Public Library of Science, vol. 20(2), pages 1-22, February.
  • Handle: RePEc:plo:pone00:0310352
    DOI: 10.1371/journal.pone.0310352
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    References listed on IDEAS

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    1. Inês Silva & Matthew Crane & Pongthep Suwanwaree & Colin Strine & Matt Goode, 2018. "Using dynamic Brownian Bridge Movement Models to identify home range size and movement patterns in king cobras," PLOS ONE, Public Library of Science, vol. 13(9), pages 1-20, September.
    2. Michelle Marvier & Peter Kareiva & Michael G. Neubert, 2004. "Habitat Destruction, Fragmentation, and Disturbance Promote Invasion by Habitat Generalists in a Multispecies Metapopulation," Risk Analysis, John Wiley & Sons, vol. 24(4), pages 869-878, August.
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