Shrub expansion modulates belowground impacts of changing snow conditions in alpine grasslands

Research output: Contribution to journalArticlepeer-review

Electronic versions

DOI

  • Arthur A D Broadbent
    The University of Manchester
  • Michael Bahn
    Institut für Ökologie
  • William J Pritchard
    The University of Manchester
  • Lindsay K Newbold
    UK Centre for Ecology & Hydrology
  • Tim Goodall
    UK Centre for Ecology & Hydrology
  • Andrew Guinta
    Institut für Ökologie
  • Helen S K Snell
    The University of Manchester
  • Irene Cordero
    The University of Manchester
  • Antonios Michas
    Research Unit for Comparative Microbiome Analysis
  • Helen K Grant
    National Environmental Isotope Facility
  • David X Soto
    National Environmental Isotope Facility
  • Rüdiger Kaufmann
    Institut für Ökologie
  • Michael Schloter
    Research Unit for Comparative Microbiome Analysis
  • Robert I Griffiths
    UK Centre for Ecology & Hydrology
  • Richard D Bardgett
    The University of Manchester

Climate change is disproportionately impacting mountain ecosystems, leading to large reductions in winter snow cover, earlier spring snowmelt and widespread shrub expansion into alpine grasslands. Yet, the combined effects of shrub expansion and changing snow conditions on abiotic and biotic soil properties remains poorly understood. We used complementary field experiments to show that reduced snow cover and earlier snowmelt have effects on soil microbial communities and functioning that persist into summer. However, ericaceous shrub expansion modulates a number of these impacts and has stronger belowground effects than changing snow conditions. Ericaceous shrub expansion did not alter snow depth or snowmelt timing but did increase the abundance of ericoid mycorrhizal fungi and oligotrophic bacteria, which was linked to decreased soil respiration and nitrogen availability. Our findings suggest that changing winter snow conditions have cross-seasonal impacts on soil properties, but shifts in vegetation can modulate belowground effects of future alpine climate change.

Keywords

  • Climate Change, Ecosystem, Grassland, Seasons, Snow, Soil
Original languageEnglish
Pages (from-to)52-64
Number of pages13
JournalEcology Letters
Volume25
Issue number1
Early online date27 Oct 2021
DOIs
Publication statusPublished - 1 Jan 2022
Externally publishedYes
View graph of relations