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Decline in epiphytic diversity (lichens and bryophytes) in response to air pollution in a high-altitude city

  • Ángel Benítez (First Author)
  • , Erika Natalia Yangua Solano
  • , James Calva
  • , Ana Lucia Astudillo Aleman
  • , Diana Lucia Moscoso Vanegas
  • , Gregorio Aragón (Last Author)
  • Universidad Técnica Particular de Loja
  • Universidad Rey Juan Carlos
  • Instituto de Investigación en Cambio Global

Research output: Contribution to journalArticlepeer-review

Abstract

Urban air pollution driven by vehicular traffic, land-use change and industrial activity poses a growing threat to biodiversity and human health. In this study, we evaluated the influence of atmospheric pollutants (PM1, PM2.5, PM10, SO2, CO, NO2, O3) and climatic factors (temperature, humidity, and wind) on the diversity and composition of epiphytic lichen, bryophyte and all cryptogam species across an urban-rural gradient in Cuenca, Ecuador. Species richness declined sharply from 56 in rural zones to 27 in urban areas, with a shift from
pollution-sensitive taxa to nitrophilous and acid-tolerant species. We found that species composition was primarily shaped by NO2, SO2, CO, and PM10 pollutants concentration. Temperature and humidity were positively associated with diversity, underscoring the buffering role of native vegetation. Our findings confirm that epiphytic cryptogam species (lichens and bryophytes) are effective, low-cost bioindicators of air quality and support their integration into urban environmental monitoring frameworks, particularly in high-altitude cities with limited instrumental networks.
Translated title of the contributionDisminución de la diversidad de epífitas (líquenes y briofitas) en respuesta a la contaminación atmosférica en una ciudad de gran altitud.
Original languageEnglish
Article number103030
Pages (from-to)1-9
Number of pages9
JournalAtmospheric Pollution Research
Volume17
Issue number7
DOIs
StatePublished - Jan 2026

Keywords

  • Air pollution
  • Bioindicators
  • Bryophytes
  • Epiphytic lichens
  • NO
  • PM
  • Urban ecology
  • NO2
  • PM10

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