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Predation risk is a function of seasonality rather than habitat complexity in a tropical semiarid forest. | LitMetric

Predation risk is a function of seasonality rather than habitat complexity in a tropical semiarid forest.

Sci Rep

Departamento de Biologia, Universidade Federal de Sergipe - UFS, São Cristóvão, Sergipe, 49100-000, Brazil.

Published: August 2021

AI Article Synopsis

  • Predator-prey dynamics play a crucial role in ecological community structure and are complex processes that ecologists study.
  • The study used artificial lizard replicas to investigate predation risk based on habitat complexity and seasonal variations in a caatinga area of northeastern Brazil.
  • Findings revealed that predation risk is more influenced by seasonal factors than habitat structure, with higher attack rates observed during the dry season, indicating the importance of context in predator-prey interactions.

Article Abstract

Predator-prey dynamics are some of the most important species' interactions in the natural structuring of communities, and are among the more complex ecological processes studied by ecologists. We measured predation risk using artificial lizard replicas to test two competing hypotheses regarding predation pressure in semi-arid environments: (1) predation risk is dependent on the habitat structural complexity; and (2) predation risk is dependent on seasonality. We placed 960 lizard replicas along three sites with different physical structures and in both dry and rainy seasons for seven consecutive days in a caatinga area in northeastern Brazil at Grota do Angico Natural Monument (GANM). Birds were responsible for the majority of attacks and more frequently on artificial lizards placed in trees. Attacks focused on the most vulnerable areas of the body (head and torso), proving that were perceived by predators as true prey items. We found that predation risk is not dependent on the habitat structural complexity, but rather dependent on the caatinga seasonality, with the overall attack rate being 19% higher in the dry season. Our study suggests that potential predation risk is highly context-dependent and that seasonality consistently drives of trophic interactions strength in the caatinga, an important ecological finding that could contribute to better understanding the complex evolution of predator-prey interactions within communities of animals living in different habitats.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8371019PMC
http://dx.doi.org/10.1038/s41598-021-96216-8DOI Listing

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