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The radiocarbon age of mycoheterotrophic plants.

Identifieur interne : 000097 ( Main/Corpus ); précédent : 000096; suivant : 000098

The radiocarbon age of mycoheterotrophic plants.

Auteurs : Christine Hatté ; Antoine Zazzo ; Marc-André Selosse

Source :

RBID : pubmed:32441806

English descriptors


DOI: 10.1111/nph.16637
PubMed: 32441806

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pubmed:32441806

Le document en format XML

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<Reference>
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<Citation>Björkman E. 1960. Monotropa hypopitys L. - an epiparasite on tree roots. Physiologia Plantarum 13: 308-327.</Citation>
</Reference>
<Reference>
<Citation>Courty PE, Walder F, Boller T, Ineichen K, Wiemken A, Selosse M-A. 2011. C and N metabolism in mycorrhizal networks and mycoheterotrophic plants of tropical forests: a stable isotope analysis. Plant Physiology 156: 952-961.</Citation>
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<Citation>Gebauer G, Meyer M. 2003. 15N and 13C natural abundance of autotrophic and mycoheterotrophic orchids provides insight into nitrogen and carbon gain from fungal association. New Phytologist 160: 209-223.</Citation>
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<Citation>Graven H, Allison CE, Etheridge DM, Hammer S, Keeling RF, Levin I, Meijer HAJ, Rubino M, Tans PP, Trudinger CM et al. 2017. Compiled records of carbon isotopes in atmospheric CO2 for historical simulations in CMIP6. Geoscientific Model Development 10: 4405-4417.</Citation>
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<Citation>Hobbie EA, Grandy AS, Harmon ME. 2020. Isotopic and compositional evidence for carbon and nitrogen dynamics during wood decomposition by saprotrophic fungi. Fungal Ecology 45: 100915.</Citation>
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<Citation>Högberg P, Högberg MN, Göttlicher SG, Betson NR, Keel SG, Metcalfe DB, Campbell C, Schindlbacher A, Hurry V, Lundmark T et al. 2008. High temporal resolution tracing of photosynthate carbon from the tree canopy to forest soil microorganisms. New Phytologist 177: 220-228.</Citation>
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<Citation>Hua Q, Barbetti M, Rakowski AZ. 2013. Atmospheric radiocarbon for the period 1950-2010. Radiocarbon 56: 2059-2072.</Citation>
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<Citation>Hynson NA, Madsen TP, Selosse M-A, Adam IKU, Ogura-Tsujita Y, Roy M, Gebauer G. 2013. The physiological ecology of mycoheterotrophy. In: Merckx VSFT, ed. Mycoheterotrophy: the biology of plants living on fungi. Berlin, Germany: Springer, 297-342.</Citation>
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<Citation>Hyodo F, Tayasu I, Konate S, Tondoh JE, Lavelle P, Wada E. 2008. Gradual enrichment of 15N with humification of diets in a below-ground food web: relationship between 15N and diet age determined using 14C. Functional Ecology 22: 516-522.</Citation>
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<Citation>Merckx V. 2013. Mycoheterotrophy, the biology of plants living on fungi. New York, NY, USA: Springer.</Citation>
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<Citation>Selosse MA, Roy M. 2009. Green plants that feed on fungi: facts and questions about mixotrophy. Trends in Plant Science 14: 64-70.</Citation>
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<Citation>Trudell SA, Rygiewicz PT, Edmonds RL. 2003. Nitrogen and carbon stable isotope abundances support the myco-heterotrophic nature and host-specificity of certain achlorophyllous plants. New Phytologist 160: 391-401.</Citation>
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<Citation>van der Heijden M, Martin FM, Selosse M-A, Sanders IR. 2015. Mycorrhizal ecology and evolution: the past, the present, and the future. New Phytologist 205: 1406-1423.</Citation>
</Reference>
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