Data for: Warming increases negative interactions of a juvenile fescue and nearby plants in a tundra, moss facilitates mycorrhizae

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Hauptverfasser: Gutierrez, Grace Rose, Loïez, Sidonie, Vandegehuchte, Martijn
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Veröffentlicht: Zenodo 2025
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author Gutierrez, Grace Rose
Loïez, Sidonie
Vandegehuchte, Martijn
author_facet Gutierrez, Grace Rose
Loïez, Sidonie
Vandegehuchte, Martijn
contents <p>In systems where low temperatures limit plant productivity, facilitative effects of surrounding vegetation on juvenile plants may outweigh effects of competition for resources, mainly through temperature buffering but also via increased availability of root mutualists such as mycorrhizal fungi. Climate warming could cause this balance between facilitation and competition to shift. We investigated how first-year plant performance, biomass allocation, and mycorrhizal colonization were affected by neighboring vegetation, both under ambient temperatures and under experimental warming. Juveniles of the grass species <em>Festuca ovina</em> (L., Poaceae) were planted into an alpine tundra ecosystem in central Norway, into one of four microsite types: a moss and lichen layer, other graminoids, both groups, or neither (bare soil). Half of the microsites experienced ambient conditions and half were located within open-top warming chambers. Warming increased shoot biomass of <em>F. ovina</em>, but only if planted in bare soil. Our results suggest that when abiotic stress was reduced by warming, the importance of competition among <em>F. ovina</em> juveniles and neighboring vegetation increased, in line with the Stress Gradient Hypothesis. These results indicate that climate warming may shift the balance from facilitation to competition among plants in cold ecosystems, although the resource(s) competed for remain to be identified. We also found that when moss and lichen were present, planted <em>F. ovina</em> were more likely to form mycorrhizae, yet had a significantly lower root biomass, both absolute and relative to their total biomass. Thus, at the juvenile stage, belowground competition and/or increased mycorrhization may decrease plant root production yet without detectable benefits to aboveground growth.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_14819408
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Data for: Warming increases negative interactions of a juvenile fescue and nearby plants in a tundra, moss facilitates mycorrhizae
Gutierrez, Grace Rose
Loïez, Sidonie
Vandegehuchte, Martijn
alpine tundra
bryophyte
competition
experimental warming
facilitation
mycorrhizae
plant-fungal interactions
plant-microbial
Tundra
<p>In systems where low temperatures limit plant productivity, facilitative effects of surrounding vegetation on juvenile plants may outweigh effects of competition for resources, mainly through temperature buffering but also via increased availability of root mutualists such as mycorrhizal fungi. Climate warming could cause this balance between facilitation and competition to shift. We investigated how first-year plant performance, biomass allocation, and mycorrhizal colonization were affected by neighboring vegetation, both under ambient temperatures and under experimental warming. Juveniles of the grass species <em>Festuca ovina</em> (L., Poaceae) were planted into an alpine tundra ecosystem in central Norway, into one of four microsite types: a moss and lichen layer, other graminoids, both groups, or neither (bare soil). Half of the microsites experienced ambient conditions and half were located within open-top warming chambers. Warming increased shoot biomass of <em>F. ovina</em>, but only if planted in bare soil. Our results suggest that when abiotic stress was reduced by warming, the importance of competition among <em>F. ovina</em> juveniles and neighboring vegetation increased, in line with the Stress Gradient Hypothesis. These results indicate that climate warming may shift the balance from facilitation to competition among plants in cold ecosystems, although the resource(s) competed for remain to be identified. We also found that when moss and lichen were present, planted <em>F. ovina</em> were more likely to form mycorrhizae, yet had a significantly lower root biomass, both absolute and relative to their total biomass. Thus, at the juvenile stage, belowground competition and/or increased mycorrhization may decrease plant root production yet without detectable benefits to aboveground growth.</p>
title Data for: Warming increases negative interactions of a juvenile fescue and nearby plants in a tundra, moss facilitates mycorrhizae
topic alpine tundra
bryophyte
competition
experimental warming
facilitation
mycorrhizae
plant-fungal interactions
plant-microbial
Tundra
url https://doi.org/10.5281/zenodo.14819408