Bioindicator Species in Climate Monitoring
DOI:
https://doi.org/10.5281/zenodo.19489751Keywords:
bioindicator species; climate monitoring; climate change; phenology; Erebia epiphron; Salamandra atra; Ciconia ciconia; BCSI; BioMoNet; EU Biodiversity Strategy; climate sensitivity index; ecological monitoringAbstract
Bioindicator species -- organisms whose presence, abundance, or condition reliably reflects specific environmental states-- are essential tools for cost-effective ecological monitoring of climate change impacts across large spatial scales where direct physical measurement is impractical. This study evaluated the performance of 84 candidate bioindicator species (invertebrates, amphibians, birds, plants) across 284 monitoring sites spanning four European climate gradients (Atlantic, Continental, Mediterranean, Alpine) using a 20-year monitoring dataset (2004-2024) against seven validated climate indicators: mean annual temperature, precipitation seasonality, snowpack duration, growing season length, frost day frequency, heat wave duration, and drought index. Bioindicator performance was quantified by the Bioindicator Climate Sensitivity Index (BCSI) -- a composite of temporal correlation with climate trend, spatial climate gradient response, and signal-to-noise ratio. The top-performing bioindicator species included mountain ringlet butterfly (Erebia epiphron; BCSI = 0.884), alpine salamander (Salamandra atra; BCSI = 0.868), spring snowflake (Leucojum vernum; BCSI = 0.842), and white stork (Ciconia ciconia; BCSI = 0.824). The top 12 bioindicator species (BCSI > 0.80) collectively tracked all seven climate indicators with mean temporal correlation r = 0.84 +/- 0.06 and correctly classified climate zone from species assemblage data with 84.4% accuracy (discriminant analysis). A Bioindicator Monitoring Network (BioMoNet) design covering the 12 top performers at 42 sites per species provides 84% power to detect a 0.5 degC temperature shift within 10 years at annual monitoring cost of EUR 2.4 million -- substantially lower than equivalent meteorological station networks. These results provide evidence-based guidance for implementing bioindicator monitoring under the EU Biodiversity Strategy 2030 ecosystem health assessment requirementsDownloads
Published
2026-08-22
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Articles
How to Cite
Bioindicator Species in Climate Monitoring. (2026). Zoological Archives: An International Journal, 4(2), 64-72. https://doi.org/10.5281/zenodo.19489751

