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February 16, 2026Insect Conservation and Diversity0 citationsOpen Access

Critical tipping points in dung beetle communities: Implications for conservation in the Atlantic Forest biome

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PAPaula Ribeiro AnunciaçãoATAndré TavaresFVFernando Zagury Vaz‐de‐Mello

Key Points

  • The study aims to identify environmental drivers and critical thresholds affecting dung beetle communities.
  • Identified key ecological drivers impacting dung beetle communities.
  • Determined critical thresholds for compositional turnover in dung beetle diversity.
  • Explored taxonomic, functional, and phylogenetic patterns within dung beetle communities.
  • Minor land-use changes trigger significant biodiversity shifts in dung beetles.
  • Generalist species thrive while sensitive specialists face exclusion.
  • Thresholds for biodiversity shifts occur at lower habitat loss levels than previously recognized.

Abstract

Abstract Anthropogenic land‐use changes represent a significant but poorly understood threat to global biodiversity, particularly among invertebrates. Dung beetles, a diverse and widely distributed group, play key roles in ecosystem functioning and are highly sensitive to environmental changes, making them valuable bioindicators for assessing human impacts. One approach to understanding these impacts involves identifying ecological thresholds, which indicate nonlinear shifts in biodiversity along land‐use and land‐cover gradients. Identifying ecological thresholds offers critical insights into how species and ecosystems respond to human‐induced environmental changes. The Brazilian Atlantic Forest, a global biodiversity hotspot, is well suited for studies exploring ecological thresholds as it faces ongoing ecological transformations driven by deforestation, agricultural expansion and urbanization. In this study, we aimed to (i) identify key environmental drivers of shifts in dung beetle communities, (ii) determine critical thresholds for compositional turnover in these communities and (iii) explore patterns across taxonomic, functional and phylogenetic dimensions within this taxon. We found that even minor land‐use changes trigger abrupt biodiversity shifts across all diversity dimensions, consistently benefiting generalist species while excluding sensitive specialists. The observed shifts occurred at lower levels of environmental change rates than previously recognized, with significant changes evident after just 25% of habitat loss. Our results challenge existing conservation thresholds and provide an evidence‐based framework to update environmental laws, guide protected area expansion and direct targeted restoration efforts. We recommend conducting more comprehensive studies to assess ecological thresholds across a broader range of taxa and geographic regions within the Atlantic Forest biome. Advancing conservation strategies with improved threshold knowledge will be critical to maintain the forest's ecological resilience and functional integrity.

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Cite This Study

Anunciação et al. (2026) studied this question.

synapsesocial.com/papers/69926503eb1f82dc367a0d06https://doi.org/10.1111/icad.70061
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