New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).

Despite an increasing demand for Burgundy truffles (Tuber aestivum), gaps remain in our understanding of the fungus' overall lifecycle and ecology. Here, we compile evidence from three independent surveys in Hungary and Switzerland. First, we measured the weight and maturity of 2,656 T. aestivu...

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Main Authors: Ulf Büntgen, István Bagi, Oszkár Fekete, Virginie Molinier, Martina Peter, Richard Splivallo, Maryam Vahdatzadeh, Franck Richard, Claude Murat, Willy Tegel, Ulrich Stobbe, Fernando Martínez-Peña, Ludger Sproll, Lisa Hülsmann, Daniel Nievergelt, Barbara Meier, Simon Egli
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5268403?pdf=render
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spelling doaj-5934c045f66a418d8572e5f8f7d9485c2020-11-25T01:31:18ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01121e017037510.1371/journal.pone.0170375New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).Ulf BüntgenIstván BagiOszkár FeketeVirginie MolinierMartina PeterRichard SplivalloMaryam VahdatzadehFranck RichardClaude MuratWilly TegelUlrich StobbeFernando Martínez-PeñaLudger SprollLisa HülsmannDaniel NievergeltBarbara MeierSimon EgliDespite an increasing demand for Burgundy truffles (Tuber aestivum), gaps remain in our understanding of the fungus' overall lifecycle and ecology. Here, we compile evidence from three independent surveys in Hungary and Switzerland. First, we measured the weight and maturity of 2,656 T. aestivum fruit bodies from a three-day harvest in August 2014 in a highly productive orchard in Hungary. All specimens ranging between 2 and 755 g were almost evenly distributed through five maturation classes. Then, we measured the weight and maturity of another 4,795 T. aestivum fruit bodies harvested on four occasions between June and October 2015 in the same truffière. Again, different maturation stages occurred at varying fruit body size and during the entire fruiting season. Finally, the predominantly unrelated weight and maturity of 81 T. aestivum fruit bodies from four fruiting seasons between 2010 and 2013 in Switzerland confirmed the Hungarian results. The spatiotemporal coexistence of 7,532 small-ripe and large-unripe T. aestivum, which accumulate to ~182 kg, differs from species-specific associations between the size and ripeness that have been reported for other mushrooms. Although size-independent truffle maturation stages may possibly relate to the perpetual belowground environment, the role of mycelial connectivity, soil property, microclimatology, as well as other abiotic factors and a combination thereof, is still unclear. Despite its massive sample size and proof of concept, this study, together with existing literature, suggests consideration of a wider ecological and biogeographical range, as well as the complex symbiotic fungus-host interaction, to further illuminate the hidden development of belowground truffle fruit bodies.http://europepmc.org/articles/PMC5268403?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ulf Büntgen
István Bagi
Oszkár Fekete
Virginie Molinier
Martina Peter
Richard Splivallo
Maryam Vahdatzadeh
Franck Richard
Claude Murat
Willy Tegel
Ulrich Stobbe
Fernando Martínez-Peña
Ludger Sproll
Lisa Hülsmann
Daniel Nievergelt
Barbara Meier
Simon Egli
spellingShingle Ulf Büntgen
István Bagi
Oszkár Fekete
Virginie Molinier
Martina Peter
Richard Splivallo
Maryam Vahdatzadeh
Franck Richard
Claude Murat
Willy Tegel
Ulrich Stobbe
Fernando Martínez-Peña
Ludger Sproll
Lisa Hülsmann
Daniel Nievergelt
Barbara Meier
Simon Egli
New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).
PLoS ONE
author_facet Ulf Büntgen
István Bagi
Oszkár Fekete
Virginie Molinier
Martina Peter
Richard Splivallo
Maryam Vahdatzadeh
Franck Richard
Claude Murat
Willy Tegel
Ulrich Stobbe
Fernando Martínez-Peña
Ludger Sproll
Lisa Hülsmann
Daniel Nievergelt
Barbara Meier
Simon Egli
author_sort Ulf Büntgen
title New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).
title_short New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).
title_full New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).
title_fullStr New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).
title_full_unstemmed New Insights into the Complex Relationship between Weight and Maturity of Burgundy Truffles (Tuber aestivum).
title_sort new insights into the complex relationship between weight and maturity of burgundy truffles (tuber aestivum).
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Despite an increasing demand for Burgundy truffles (Tuber aestivum), gaps remain in our understanding of the fungus' overall lifecycle and ecology. Here, we compile evidence from three independent surveys in Hungary and Switzerland. First, we measured the weight and maturity of 2,656 T. aestivum fruit bodies from a three-day harvest in August 2014 in a highly productive orchard in Hungary. All specimens ranging between 2 and 755 g were almost evenly distributed through five maturation classes. Then, we measured the weight and maturity of another 4,795 T. aestivum fruit bodies harvested on four occasions between June and October 2015 in the same truffière. Again, different maturation stages occurred at varying fruit body size and during the entire fruiting season. Finally, the predominantly unrelated weight and maturity of 81 T. aestivum fruit bodies from four fruiting seasons between 2010 and 2013 in Switzerland confirmed the Hungarian results. The spatiotemporal coexistence of 7,532 small-ripe and large-unripe T. aestivum, which accumulate to ~182 kg, differs from species-specific associations between the size and ripeness that have been reported for other mushrooms. Although size-independent truffle maturation stages may possibly relate to the perpetual belowground environment, the role of mycelial connectivity, soil property, microclimatology, as well as other abiotic factors and a combination thereof, is still unclear. Despite its massive sample size and proof of concept, this study, together with existing literature, suggests consideration of a wider ecological and biogeographical range, as well as the complex symbiotic fungus-host interaction, to further illuminate the hidden development of belowground truffle fruit bodies.
url http://europepmc.org/articles/PMC5268403?pdf=render
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