Environmental conditions modulate warming effects on plant litter decomposition globally

  • Sarah Schwieger (Creator)
  • Judith Sarneel (Creator)
  • Ellen Dorrepaal (Creator)
  • Rien Aerts (Creator)
  • Evgenios Agathokleous (Creator)
  • Juha M. Alatalo (Creator)
  • Inge Althuizen (Creator)
  • Katrín Björnsdóttir (Creator)
  • Stef Bokhorst (Creator)
  • Matteo Petit Bon (Creator)
  • Michele Carbognani (Creator)
  • Angelica Casanova-Katny (Creator)
  • Casper T. Christiansen (Creator)
  • Karin Clark (Creator)
  • Rocío Alonso (Creator)
  • Nina Filippova (Creator)
  • Wang Genxu (Creator)
  • Ibrahim Hassan (Creator)
  • Annika Hofgaard (Creator)
  • Robert D. Hollister (Creator)
  • Ingibjörg Svala Jónsdóttir (Creator)
  • Ellen Karr (Creator)
  • Kari Klanderud (Creator)
  • Qi Li (Creator)
  • Jørn Olav Løkken (Creator)
  • Anders Michelsen (Creator)
  • Tariq Munir (Creator)
  • Isla Myers-Smith (Creator)
  • Alessandro Petraglia (Creator)
  • Maria Strack (Creator)
  • Satoshi Suzuki (Creator)
  • Takayoshi Koike (Creator)
  • Mariska Te Beest (Creator)
  • Haydn Thomas (Creator)
  • Fernando Valiño (Creator)
  • Vigdis Vandvik (Creator)
  • Susanna Venn (Creator)
  • Yan Yang (Creator)
  • Thomas W. Crowther (Creator)
  • Johan Van den hoogen (Creator)
  • Johan Asplund (Creator)
  • Elizabeth Le Roux (Creator)
  • Umeå University (Contributor)

Dataset

Description

Empirical studies worldwide show that warming has variable effects on plant litter decomposition, leaving the overall impact of climate change on decomposition uncertain. We conducted a meta-analysis of 109 experimental warming studies across seven continents, using natural and standardised plant material, to assess the overarching effect of warming on litter decomposition and identify potential moderating factors. We determined that at least 5.2 degrees of warming is required for a significant increase in decomposition. Overall, warming did not have a significant effect on decomposition at a global scale. However, we found that warming reduced decomposition in warmer, low-moisture areas, while it slightly increased decomposition in colder regions, although this increase was not significant. This is particularly relevant given the past decade's global warming trend at higher latitudes where a large proportion of terrestrial carbon is stored. Future changes in vegetation towards plants with lower litter quality, which we show were likely to be more sensitive to warming, could increase carbon release and reduce the amount of organic matter building up in the soil. Our findings emphasize the connection among warming responses, macro-environment and litter characteristics which can refine predictions of warming’s consequences on key ecosystem processes and its contextual dependence.

Data Citation

Schwieger, Sarah; Sarneel, Judith; Dorrepaal, Ellen et al. (2024). Environmental conditions modulate warming effects on plant litter decomposition globally [Dataset]. Dryad. https://doi.org/10.5061/dryad.p5hqbzkw5
Date made available14 Nov 2024
PublisherDryad

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