Zur Hauptnavigation wechseln Zur Suche wechseln Zum Hauptinhalt wechseln

The invisible heterogeneity of forests ‑β‑diversity of volatiles

  • Lena Carlson
  • , Jörg Müller
  • , Christian Ammer
  • , Claus Bässler
  • , Mirjana Bevanda
  • , Peter H. W. Biedermann
  • , Pia M. Bradler
  • , Antonio Castaneda-Gómez
  • , Benjamin M. Delory
  • , Sebastian Dittrich
  • , Bronwyn Lira Dyson
  • , Andreas Fichtner
  • , Oliver Mitesser
  • , Goddert von Oheimb
  • , Luisa Pflumm
  • , Kerstin Pierick
  • , Julia Rothacher
  • , Michael Scherer-Lorenzen
  • , Jakob Schwalb-Willmann
  • , Martin Wegmann
  • Clara Wild, Thomas Schmitt

Publikation: Beiträge in ZeitschriftenZeitschriftenaufsätzeForschungBegutachtung

Abstract

Context
Volatile organic compounds (VOCs) create invisible chemical landscapes that influence ecosystem processes. Yet whether VOC β-diversity (i.e., variability in VOC composition between patches) responds to structural heterogeneity and reflects silvicultural habitat management remains unclear.
Objectives
In a large field experiment, we quantified how enhanced structural beta complexity (ESBC) affects VOC β-diversity patterns and investigated potential drivers and ecological effects in temperate production forests.
Methods
We sampled VOCs in ambient forest air using Tenax/Carboxen adsorbent traps at forest floor and 1 m heights across 234 treatment and control forest patches in six German regions. We analyzed VOCs via thermal desorption-gas chromatography mass-spectrometry (TD-GCMS) and examined environmental drivers including deadwood characteristics, canopy cover, tree species dissimilarity, and herb layer dissimilarity. We tested potential ecological relevance by analyzing saproxylic beetle community responses.
Results
VOC β-diversity increased significantly at 1 m height in heterogeneous forests compared to homogeneous forests, but we found no significant change at the forest floor. Deadwood volume and deadwood structural diversity, rather than canopy openness,
were identified as the main drivers of increasing VOC β-diversity. Dissimilarity in beetle community composition was associated with VOC β-diversity, but only for forest floor VOCs, suggesting these chemical patterns may correlate with variables beetles respond to.
Conclusions
Our findings suggest that volatile β-diversity represents an overlooked dimension of habitat heterogeneity, one that creates invisible chemical heterogeneity influencing inter- and intra-species interactions and ecosystem processes. We demonstrate
that enhancing forest heterogeneity through deadwood retention increases both structural heterogeneity and volatile β-diversity.
OriginalspracheEnglisch
Aufsatznummer62
ZeitschriftLandscape Ecology
Jahrgang41
Ausgabenummer4
Seitenumfang18
ISSN0921-2973
DOIs
PublikationsstatusErschienen - 04.2026

Bibliographische Notiz

Publisher Copyright:
© The Author(s) 2026.

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 15 – Lebensraum Land
    SDG 15 – Lebensraum Land

Fachgebiete und Schlagwörter

  • Ökosystemforschung
  • volatile organic compounds
  • β-diversity
  • heterogeneity
  • deadwood
  • forest management
  • forest ecology
  • chemical ecology
  • saproxylic beetles

ASJC Scopus Sachgebiete

  • Ökologie
  • Geografie, Planung und Entwicklung
  • Natur- und Landschaftsschutz

Fingerprint

Untersuchen Sie die Forschungsthemen von „The invisible heterogeneity of forests ‑β‑diversity of volatiles“. Zusammen bilden sie einen einzigartigen Fingerprint.

Dieses zitieren