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Stable isotope signatures and specific mycobionts reveal the mycoheterotrophic nutrient acquisition of Danxiaorchis yangii

Title data

Han, Zhoudong ; Zahn, Franziska E. ; Jiang, Hong ; Lee, Yung-I ; Gebauer, Gerhard:
Stable isotope signatures and specific mycobionts reveal the mycoheterotrophic nutrient acquisition of Danxiaorchis yangii.
In: Mycorrhiza. Vol. 36 (2026) . - 44.
ISSN 1432-1890
DOI: https://doi.org/10.1007/s00572-026-01288-x

Project information

Project title:
Project's official title
Project's id
Untersuchungen zu Mykorrhiza-Partnern und Nährstoffquellen von mykoheterotrophen Orchideen in Taiwan
405009566

Project financing: Deutsche Forschungsgemeinschaft

Abstract in another language

Fully mycoheterotrophic orchids rely entirely on fungal symbionts for carbon acquisition, are often highly specialized in their fungal associations, and exhibit stable isotope signatures distinct from autotrophic plants. Danxiaorchis yangii is a rare, leafless orchid endemic to subtropical China whose nutritional ecology has not been previously examined. We combined high-throughput fungal community profiling with multi-element stable isotope natural abundance analyses (δ¹³C, δ¹⁵N, δ²H, δ¹⁸O) to investigate fungal associations and nutrient acquisition in D. yangii. Mycorrhizal rhizomes were dominated by a single operational taxonomic unit affiliated with the wood-decaying saprotroph Candolleomyces candolleanus (Psathyrellaceae), with additional low-abundance taxa related to Ramariopsis (Clavariaceae). Stable isotope signatures showed strong enrichment in ¹³C, ¹⁵N, and ²H relative to co-occurring autotrophic plants, confirming a fully mycoheterotrophic nutritional mode. Notably, the magnitude of nitrogen isotope enrichment differed from that reported for other Psathyrellaceae-associated orchids, suggesting greater complexity in nitrogen acquisition within saprotroph-based
mycoheterotrophic systems.

Further data

Item Type: Article in a journal
Refereed: Yes
Keywords: Mycoheterotrophy; Mycorrhiza; Orchidaceae; Danxiaorchis; Stable isotopes; Saprotrophic fungi
Institutions of the University: Faculties > Faculty of Biology, Chemistry and Earth Sciences > Department of Biology > Chair Fungal Ecology
Profile Fields
Profile Fields > Advanced Fields
Profile Fields > Advanced Fields > Ecology and the Environmental Sciences
Research Institutions > Central research institutes > Bayreuth Center of Ecology and Environmental Research- BayCEER
Result of work at the UBT: Yes
DDC Subjects: 500 Science > 580 Plants (Botany)
Date Deposited: 06 Jul 2026 11:41
Last Modified: 06 Jul 2026 11:41
URI: https://eref.uni-bayreuth.de/id/eprint/98978