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. 2021 May;31(3):301-312.
doi: 10.1007/s00572-021-01032-7. Epub 2021 Apr 14.

Partial and full mycoheterotrophy in green and albino phenotypes of the slipper orchid Cypripedium debile

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Partial and full mycoheterotrophy in green and albino phenotypes of the slipper orchid Cypripedium debile

Kenji Suetsugu et al. Mycorrhiza. 2021 May.

Abstract

Most green orchids form mycorrhizal associations with rhizoctonia fungi, a polyphyletic group including Serendipitaceae, Ceratobasidiaceae, and Tulasnellaceae. Although accumulating evidence indicated that partial mycoheterotrophy occurs in such so-called rhizoctonia-associated orchids, it remains unclear how much nutrition rhizoctonia-associated orchids obtain via mycoheterotrophic relationships. We investigated the physiological ecology of green and albino individuals of a rhizoctonia-associated orchid Cypripedium debile, by using molecular barcoding of the mycobionts and stable isotope (13C and 15 N) analysis. Molecular barcoding of the mycobionts indicated that the green and albino individuals harbored Tulasnella spp., which formed a clade with the previously reported C. debile mycobionts. In addition, stable isotope analysis showed that both phenotypes were significantly enriched in 13C but not in 15 N. Therefore, green and albino individuals were recognized as partial and full mycoheterotrophs, respectively. The green variants were estimated to obtain 42.5 ± 8.2% of their C from fungal sources, using the 13C enrichment factor of albino individuals as a mycoheterotrophic endpoint. The proportion of fungal-derived C in green C. debile was higher than that reported in other rhizoctonia-associated orchids. The high fungal dependence may facilitate the emergence of albino mutants. Our study provides the first evidence of partial mycoheterotrophy in the subfamily Cypripedioideae. Partial mycoheterotrophy may be more general than previously recognized in the family Orchidaceae.

Keywords: 13C natural abundance; 15N natural abundance; DNA barcoding; Mixotrophy; Mycoheterotrophy; Orchidaceae; Saprotrophic fungi; Tulasnella.

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References

    1. Abadie JC, Püttsepp Ü, Gebauer G, Faccio A, Bonfante P, Selosse MA (2006) Cephalanthera longifolia (Neottieae, Orchidaceae) is mixotrophic: A comparative study between green and nonphotosynthetic individuals. Can J Bot 84:1462–1477
    1. Altschul SF, Madden TL, Schäffer AA, Zhang J, Zhang Z, Miller W, Lipman DJ (1997) Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Res 25:3389–3402 - PubMed - PMC
    1. Bellino A, Alfani A, Selosse MA, Guerrieri R, Borghetti M, Baldantoni D (2014) Nutritional regulation in mixotrophic plants: new insights from Limodorum abortivum. Oecologia 175:875–885 - PubMed
    1. Bidartondo MI (2005) The evolutionary ecology of myco-heterotrophy. New Phytol 167:335–352 - PubMed
    1. Bidartondo MI, Burghardt B, Gebauer G, Bruns TD, Read DJ (2004) Changing partners in the dark: isotopic and molecular evidence of ectomycorrhizal liaisons between forest orchids and trees. Proc Roy Soc B 271:1799–1806

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