Movement behavior and passive dispersal of a reintroduced population of alligator snapping turtles

Ethan J. Kessler, Michael J. Dreslik

Research output: Contribution to journalArticlepeer-review

Abstract

Maladaptive movement behavior is a leading cause of failure for reptile reintroductions, thus characterizing movement for translocated populations is important to project success. From 2014–2016 we radio-tracked 183 immature reintroduced alligator snapping turtles (Macrochelys temminckii) using very high frequency telemetry in a stream in southern Illinois, USA. We assessed environmental, temporal, morphometric, and microhabitat factors influencing movement, including post-release dispersal from reintroduction sites, movement probability, and step length. We used directional statistics to investigate the effects of precipitation and age on directional movement in the stream. Numerous factors influenced active movement, including ambient temperatures, time since release, use of log jams, turtle size, and age. Precipitation had an age-biased effect on movement. Directional analyses suggested that movement was largely passive as turtles were swept downstream with increased discharge. Overall, the behavior of reintroduced alligator snapping turtles was similar to that reported in wild populations. Passive downstream transport has implications for reintroduced and natural populations as a force for unintentional emigration in channelized streams under current conditions and future high flow regimes.

Original languageEnglish (US)
Article numbere22511
JournalJournal of Wildlife Management
Volume88
Issue number1
DOIs
StatePublished - Jan 2024
Externally publishedYes

Keywords

  • Macrochelys
  • alligator snapping turtle
  • movement ecology
  • passive dispersal
  • radiotelemetry
  • reintroduction biology
  • reptile
  • turtle

ASJC Scopus subject areas

  • Ecology, Evolution, Behavior and Systematics
  • Ecology
  • Nature and Landscape Conservation

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