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The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe

Global warming is pushing populations outside their range of physiological tolerance. According to the environmental envelope framework, the most vulnerable populations occur near the climatic edge of their species' distributions. In contrast, populations from the climatic center of the species...

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Autores principales: Steidinger, Brian S., Büntgen, Ulf, Stobbe, Uli, Tegel, Willy, Sproll, Ludger, Haeni, Matthias, Moser, Barbara, Bagi, István, Bonet, José‐Antonio, Buée, Marc, Dauphin, Benjamin, Martínez‐Peña, Fernando, Molinier, Virginie, Zweifel, Roman, Egli, Simon, Peter, Martina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9828532/
https://www.ncbi.nlm.nih.gov/pubmed/36200354
http://dx.doi.org/10.1111/gcb.16424
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author Steidinger, Brian S.
Büntgen, Ulf
Stobbe, Uli
Tegel, Willy
Sproll, Ludger
Haeni, Matthias
Moser, Barbara
Bagi, István
Bonet, José‐Antonio
Buée, Marc
Dauphin, Benjamin
Martínez‐Peña, Fernando
Molinier, Virginie
Zweifel, Roman
Egli, Simon
Peter, Martina
author_facet Steidinger, Brian S.
Büntgen, Ulf
Stobbe, Uli
Tegel, Willy
Sproll, Ludger
Haeni, Matthias
Moser, Barbara
Bagi, István
Bonet, José‐Antonio
Buée, Marc
Dauphin, Benjamin
Martínez‐Peña, Fernando
Molinier, Virginie
Zweifel, Roman
Egli, Simon
Peter, Martina
author_sort Steidinger, Brian S.
collection PubMed
description Global warming is pushing populations outside their range of physiological tolerance. According to the environmental envelope framework, the most vulnerable populations occur near the climatic edge of their species' distributions. In contrast, populations from the climatic center of the species range should be relatively buffered against climate warming. We tested this latter prediction using a combination of linear mixed effects and machine learning algorithms on an extensive, citizen‐scientist generated dataset on the fruitbody productivity of the Burgundy (aka summer) truffle (Tuber aestivum Vittad.), a keystone, ectomycorrhizal tree‐symbiont occurring on a wide range of temperate climates. T. aestivum's fruitbody productivity was monitored at 3‐week resolution over up to 8 continuous years at 20 sites distributed in the climatic center of its European distribution in southwest Germany and Switzerland. We found that T. aestivum fruitbody production is more sensitive to summer drought than would be expected from the breadth of its species' climatic niche. The monitored populations occurring nearly 5°C colder than the edge of their species' climatic distribution. However, interannual fruitbody productivity (truffle mass year(−1)) fell by a median loss of 22% for every 1°C increase in summer temperature over a site's 30‐year mean. Among the most productive monitored populations, the temperature sensitivity was even higher, with single summer temperature anomalies of 3°C sufficient to stop fruitbody production altogether. Interannual truffle productivity was also related to the phenology of host trees, with ~22 g less truffle mass for each 1‐day reduction in the length of the tree growing season. Increasing summer drought extremes are therefore likely to reduce fruiting among summer truffle populations throughout Central Europe. Our results suggest that European T. aestivum may be a mosaic of vulnerable populations, sensitive to climate‐driven declines at lower thresholds than implied by its species distribution model.
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spelling pubmed-98285322023-01-10 The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe Steidinger, Brian S. Büntgen, Ulf Stobbe, Uli Tegel, Willy Sproll, Ludger Haeni, Matthias Moser, Barbara Bagi, István Bonet, José‐Antonio Buée, Marc Dauphin, Benjamin Martínez‐Peña, Fernando Molinier, Virginie Zweifel, Roman Egli, Simon Peter, Martina Glob Chang Biol Research Articles Global warming is pushing populations outside their range of physiological tolerance. According to the environmental envelope framework, the most vulnerable populations occur near the climatic edge of their species' distributions. In contrast, populations from the climatic center of the species range should be relatively buffered against climate warming. We tested this latter prediction using a combination of linear mixed effects and machine learning algorithms on an extensive, citizen‐scientist generated dataset on the fruitbody productivity of the Burgundy (aka summer) truffle (Tuber aestivum Vittad.), a keystone, ectomycorrhizal tree‐symbiont occurring on a wide range of temperate climates. T. aestivum's fruitbody productivity was monitored at 3‐week resolution over up to 8 continuous years at 20 sites distributed in the climatic center of its European distribution in southwest Germany and Switzerland. We found that T. aestivum fruitbody production is more sensitive to summer drought than would be expected from the breadth of its species' climatic niche. The monitored populations occurring nearly 5°C colder than the edge of their species' climatic distribution. However, interannual fruitbody productivity (truffle mass year(−1)) fell by a median loss of 22% for every 1°C increase in summer temperature over a site's 30‐year mean. Among the most productive monitored populations, the temperature sensitivity was even higher, with single summer temperature anomalies of 3°C sufficient to stop fruitbody production altogether. Interannual truffle productivity was also related to the phenology of host trees, with ~22 g less truffle mass for each 1‐day reduction in the length of the tree growing season. Increasing summer drought extremes are therefore likely to reduce fruiting among summer truffle populations throughout Central Europe. Our results suggest that European T. aestivum may be a mosaic of vulnerable populations, sensitive to climate‐driven declines at lower thresholds than implied by its species distribution model. John Wiley and Sons Inc. 2022-10-06 2022-12 /pmc/articles/PMC9828532/ /pubmed/36200354 http://dx.doi.org/10.1111/gcb.16424 Text en © 2022 The Authors. Global Change Biology published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Steidinger, Brian S.
Büntgen, Ulf
Stobbe, Uli
Tegel, Willy
Sproll, Ludger
Haeni, Matthias
Moser, Barbara
Bagi, István
Bonet, José‐Antonio
Buée, Marc
Dauphin, Benjamin
Martínez‐Peña, Fernando
Molinier, Virginie
Zweifel, Roman
Egli, Simon
Peter, Martina
The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe
title The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe
title_full The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe
title_fullStr The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe
title_full_unstemmed The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe
title_short The fall of the summer truffle: Recurring hot, dry summers result in declining fruitbody production of Tuber aestivum in Central Europe
title_sort fall of the summer truffle: recurring hot, dry summers result in declining fruitbody production of tuber aestivum in central europe
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9828532/
https://www.ncbi.nlm.nih.gov/pubmed/36200354
http://dx.doi.org/10.1111/gcb.16424
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