Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/49932
Title: Dataset and R Analysis: 'Limited and idoisyncratic thermal acclimation in soil saptrotrohic fungi'
Data Creator - person: MORENO DRUET, Maria 
Kondrat, Anna Maria
De Laender, Frederik
SOUDZILOVSKAIA, Nadia 
Rineau , Francois
Data Creator - organization: Hasselt University
University of Namur
Rights Holder - person: MORENO DRUET, Maria 
Rights Holder - organization: University Hasselt
University of Namur
Publisher: Zenodo
Issue Date: 2026
Abstract: Increased soil microbial activity due to higher temperatures caused by heatwaves could lead to higher carbon losses from soil into the atmosphere, further accelerating climate change. Hence, knowing how soil microbes respond to higher temperatures is crucial for improving soil-atmosphere carbon circulation models in the context of climate change. Thermal acclimation may reduce carbon losses from soils by retarding increases in microbial activity in response to elevated temperatures. However, the capacity of soil microbes to acclimate to realistic soil temperatures in vitro, and our ability to predict this acclimation based on traits, remains poorly understood. We tested how submission to two previous temperature treatments or 'environmental histories' affected subsequent growth at two exposure temperatures for seven widespread soil saprotrophic fungi. We hypothesized that (1) soil fungi have higher intrinsic growth and weaker self-limitation after exposure to a colder environmental history, and (2) the response of fungal eco-physiological traits (pigmentation and spore load) to elevated temperature exposure predicts fungal acclimation in terms of growth. Our results showed that environmental history had limited impact on the tested fungi, and trait responses to history temperatures did not predict fungal growth after treatment with both history and exposure temperatures. We conclude that fungal thermal acclimation is limited and idiosyncratic.
Research Discipline: Natural sciences > Biological sciences > Ecology > Soil ecology (01060411)
Keywords: Temperature;Soil;Spores;Fungal;Soil Microbiology;Acclimatization;Fungi
DOI: 10.5281/zenodo.15010903
Link to publication/dataset: https://zenodo.org/doi/10.5281/zenodo.15010903
Source: Zenodo. 10.5281/zenodo.15010903 https://zenodo.org/doi/10.5281/zenodo.15010903
Publications related to the dataset: 10.1371/journal.pone.0349388
Publications related to the dataset: http://hdl.handle.net/1942/49274
License: Creative Commons Attribution 4.0 International (CC-BY-4.0)
Access Rights: Open Access
Category: DS
Type: Dataset
Appears in Collections:Datasets

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