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March 21, 2026ZooKeys0 citationsOpen Access

Assessing patterns of extinction risk among mammal species in Nigeria: A comparative analysis of human impact

BABernard Asanbe

Key Points

  • The aim is to assess how biological traits affect extinction risk in Nigeria's mammals and how they interact with human-induced threats.
  • Performed a comparative analysis using phylogenetic logistic regression.
  • Evaluated five biological traits: body mass, brain mass, generation time, current geographic range, and historical range contraction.
  • Utilized standardized models to assess trait sensitivity across nine IUCN threat categories.
  • Brain mass was identified as the most significant predictor of extinction risk.
  • Species with larger brains, particularly primates and carnivores, showed high vulnerability.
  • Geographic range size negatively predicted extinction risk, with range-restricted species being more susceptible.
  • Generation time had a positive association with risk under human pressures but an inverse relationship under climate threats.
  • The highest number of species at risk was linked to human activities rather than climate change or pollution.

Abstract

This study aimed to evaluate how biological traits influence extinction risk among mammal species in Nigeria, and how these traits interact with specific anthropogenic threats such as agriculture, urbanization and climate change. Focusing on mammal species in Nigeria, we used phylogenetic logistic regression to test the influence of five biological traits: body mass, brain mass, generation time, current geographic range and historical range contraction, on extinction risk across 9 IUCN threat categories. Standardized models were used to compare trait sensitivity across threats. Brain mass emerged as the most consistent and influential predictor of extinction risk, particularly under threats such as agriculture, biological resource use and urban development. Species with larger brains, often primates and carnivores, were highly vulnerable. Geographic range size was a strong negative predictor of risk across most models, with range-restricted species more susceptible to habitat loss and fragmentation. Generation time was positively associated with risk under direct human pressures but inversely linked under climate threats. Body mass showed weak and inconsistent effects, which suggests its influence may be secondary to cognitive or spatial traits. The number of species affected was highest under human threats, compared to climate change or pollution. Extinction risk in Nigerian mammals is shaped by intrinsic traits that interact predictably with human pressures. Species with large brains, small ranges and slow reproduction are at greatest risk. Trait-based models can improve conservation planning by identifying vulnerable species before population declines become critical, especially in regions facing intensive land-use change.

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Cite This Study

Bernard Asanbe (2026) studied this question.

synapsesocial.com/papers/69be35166e48c4981c6732aehttps://doi.org/10.3897/arphapreprints.e191826
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