Symbiotic Germination Technique of an Endangered Epiphytic Orchid Dendrobium sinominutiflorum: A Promising Conservation Application

Han-Xiao Huang , Lu Tang , Xiang-Wan Yu , Yin-Ling Luo , Peng Chen , Yun-Hong Tan , Yan Luo

Integrative Conservation ›› 2026, Vol. 5 ›› Issue (2) : 192 -204.

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Integrative Conservation ›› 2026, Vol. 5 ›› Issue (2) :192 -204. DOI: 10.1002/inc3.70080
RESEARCH ARTICLE
Symbiotic Germination Technique of an Endangered Epiphytic Orchid Dendrobium sinominutiflorum: A Promising Conservation Application
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Abstract

Symbiotic fungi provide nutrients for orchid seed germination and seedling development, underpinning the long-term conservation and reintroduction. Dendrobium sinominutiflorum is a critically endangered orchid species, with limited natural populations and the role of symbiotic fungi in seed germination is still unclear. To ensure more effective conservation strategies for this endangered orchid species, this study developed a symbiotic seed germination and seedling development protocol. Using seed baiting technique, the in situ germinated protocorms were obtained. A compatible mycorrhizal fungus, Tulasnella sp. (strain MHSH), was isolated and identified by morphological and molecular analysis. Compared with asymbiotic seed germination on 1/2 Murashige and Skoog (1/2 MS) medium, symbiotic seed germination of D. sinominutiflorum by co-culturing with the MHSH strain on Oatmeal Agar (OMA) medium showed a higher protocorm growth rate and seedling formation rate. Transmission electron microscopy revealed that the infected cortical cells of symbiotic protocorms lacked distinct organelles and were colonized by fungal hyphae. The fungal hyphae penetrated, proliferated, and were subsequently digested within the protocorm cells, indicating that symbiotic protocorms exhibit a heterotrophic life and efficiently utilize fungal hyphae to support their growth and development. In contrast, asymbiotic protocorms contained abundant chloroplasts and amyloplasts, suggesting their capacity for autotrophic growth dependent on exogenous nutrients to sustain protocorm development. The symbiotic germination technique is a resource-saving and highly efficient propagation method, making it a promising ex situ conservation strategy. This study presents a technical protocol for screening seed germination-promoting fungi and establishing a symbiotic germination system, offering a feasible solution for the conservation of rare and endangered orchid species.

Keywords

Dendrobium sinominutiflorum / mycorrhizal fungi / seed germination / species conservation

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Han-Xiao Huang, Lu Tang, Xiang-Wan Yu, Yin-Ling Luo, Peng Chen, Yun-Hong Tan, Yan Luo. Symbiotic Germination Technique of an Endangered Epiphytic Orchid Dendrobium sinominutiflorum: A Promising Conservation Application. Integrative Conservation, 2026, 5 (2) : 192-204 DOI:10.1002/inc3.70080

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References

[1]

Bao, X. S., Q. S. Shun, and L. Z. Chen. 2001. The Medicinal Plants of Dendrobium (Shi-Hu) in China, A Coloured Atlas. Fudan University Press and Shanghai Medical University Press.

[2]

Brundrett, M. C., A. Scade, A. L. Batty, K. W. Dixon, and K. Sivasithamparam. 2003. “Development of In Situ and Ex Situ Seed Baiting Techniques to Detect Mycorrhizal Fungi From Terrestrial Orchid Habitats.” Mycological Research 107: 1210–1220. https://doi.org/10.1017/S0953756203008463.

[3]

Chamara, R. M. S. R., K. Miyoshi, T. Yukawa, N. Asai, and Y. Ogura-Tsujita. 2024. “Orchid Mycorrhizal Association of Cultivated Dendrobium Hybrid and Their Role in Seed Germination and Seedling Growth.” Microorganisms 12, no. 6: 1176. https://doi.org/10.3390/microorganisms12061176.

[4]

Chase, M. W., K. M. Cameron, J. V. Freudenstein, et al. 2015. “An Updated Classification of Orchidaceae.” Botanical Journal of the Linnean Society 177, no. 2: 151–174. https://doi.org/10.1111/boj.12234.

[5]

Chen, D. Y., X. J. Wang, T. Q. Li, N. Q. Li, and J. Y. Gao. 2021. “In Situ Seedling Baiting to Isolate Plant Growth-Promoting Fungi From Dendrobium officinale, An Over-Collected Medicinal Orchid in China.” Global Ecology and Conservation 28: e01659. https://doi.org/10.1016/j.gecco.2021.e01659.

[6]

Chen, J., H. Wang, S. S. Liu, Y. Y. Li, and S. X. Guo. 2014. “Ultrastructure of Symbiotic Germination of the Orchid Dendrobium officinale With Its Mycobiont, Sebacina sp.” Australian Journal of Botany 62, no. 3: 229–234. https://doi.org/10.1071/BT14017.

[7]

Chutima, R., B. Dell, S. Vessabutr, B. Bussaban, and S. Lumyong. 2011. “Endophytic Fungi From Pecteilis susannae (L.) Rafin (Orchidaceae), a Threatened Terrestrial Orchid in Thailand.” Mycorrhiza 21, no. 3: 221–229. https://doi.org/10.1007/s00572-010-0327-1.

[8]

Gao, X., Y. Wang, D. Deng, Y. Luo, S. Shao, and Y. Luo. 2023. “Morphogenesis Changes in Protocorm Development During Symbiotic Seed Germination of Dendrobium chrysotoxum (Orchidaceae) With Its Mycobiont, Tulasnella sp.” Horticulturae 9, no. 5: 531. https://doi.org/10.3390/horticulturae9050531.

[9]

Gao, Y., S. X. Guo, and X. K. Xing. 2019. “Fungal Diversity and Mechanisms of Symbiotic Germination of Orchid Seeds: A Review.” Mycosystema 38, no. 11: 1808–1825. https://doi.org/10.13346/j.mycosystema.190163.

[10]

Gao, Y., S. Peng, Y. Hang, G. Xie, N. Ji, and M. Zhang. 2022. “Mycorrhizal Fungus Coprinellus disseminatus Influences Seed Germination of the Terrestrial Orchid Cremastra appendiculata (D. Don) Makino.” Scientia Horticulturae 293: 110724. https://doi.org/10.1016/j.scienta.2021.110724.

[11]

Guo, S. X., and Q. Y. Wang. 2001. “Character and Action of Good Strain on Stimulating Germination of Gastrodia elata.” Mycosystema 20, no. 3: 408–412. https://doi.org/10.13346/j.mycosystema.2001.03.023.

[12]

Harzli, I., and Y. Ö. Kömpe. 2023. “Assessing the Effectiveness of In Vitro and In Situ Symbiotic Seed Germination: Case of Anacamptis papilionacea (L.) Rm Bateman, Pridgeon & Mw Chase.” Symbiosis 91, no. 1: 91–100. https://doi.org/10.1007/s13199-023-00950-8.

[13]

Hinsley, A., H. J. De Boer, M. F. Fay, et al. 2018. “A Review of the Trade in Orchids and Its Implications For Conservation.” Botanical Journal of the Linnean Society 186, no. 4: 435–455. https://doi.org/10.1093/botlinnean/box083.

[14]

IUCN Red List. 2024. Available at: https://www.iucnredlist.org/species/46664/11074229.

[15]

Jiang, J. H., Y. I. Lee, M. A. Cubeta, and L. C. Chen. 2015. “Characterization and Colonization of Endomycorrhizal Rhizoctonia Fungi in the Medicinal Herb Anoectochilus formosanus (Orchidaceae).” Mycorrhiza 25: 431–445. https://doi.org/10.1007/s00572-014-0616-1.

[16]

Jian-Sheng, J., W. Chun-Ling, and X. Wei. 2003. “A General Review of the Conservation Status of Chinese Orchids.” Biodiversity Science 11, no. 1: 70–77.

[17]

Johnson, T. R., S. L. Stewart, D. Dutra, M. E. Kane, and L. Richardson. 2007. “Asymbiotic and Symbiotic Seed Germination of Eulophia alta (Orchidaceae)—Preliminary Evidence for the Symbiotic Culture Advantage.” Plant Cell, Tissue and Organ Culture 90: 313–323. https://doi.org/10.1007/s11240-007-9270-z.

[18]

Jolman, D., M. I. Batalla, A. Hungerford, P. Norwood, N. Tait, and L. E. Wallace. 2022. “The Challenges of Growing Orchids From Seeds for Conservation: An Assessment of Asymbiotic Techniques.” Applications in Plant Sciences 10, no. 5: e11496. https://doi.org/10.1002/aps3.11496.

[19]

Laube, S., and G. Zotz. 2003. “Which Abiotic Factors Limit Vegetative Growth in a Vascular Epiphyte?” Functional Ecology 17, no. 5: 598–604. Digital Object Identifier https://doi.org/10.1046/j.1365-2435.2003.00760.x.

[20]

Liu, H., Y. Luo, and H. Liu. 2010. “Studies of Mycorrhizal Fungi of Chinese Orchids and Their Role in Orchid Conservation in China—A Review.” Botanical Review 76, no. 2: 241–262. https://doi.org/10.1007/s12229-010-9045-9.

[21]

McKendrick, S. L., J. R. Leake, and D. J. Read. 2000. “Symbiotic Germination and Development of Myco-Heterotrophic Plants in Nature: Transfer of Carbon From Ectomycorrhizal Salix repens and Betula pendula to the Orchid Corallorhiza trifida Through Shared Hyphal Connections.” New Phytologist 145, no. 3: 539–548. https://doi.org/10.1046/j.1469-8137.2000.00592.x.

[22]

Ormerod, P., H. Kurzweil, and S. Watthana. 2021. “Annotated List of Orchidaceae for Myanmar.” Phytotaxa 481, no. 1: 25. https://doi.org/10.11646/phytotaxa.481.1.1.

[23]

Pereira, O. L., M. C. M. Kasuya, C. L. Rollemberg, and A. C. Borges. 2005. “Indução In Vitro Da Germinação De Sementes De Oncidium Flexuosum (Orchidaceae) Por Fungos Micorrízicos Rizoctonióides.” Revista Brasileira de Ciência do Solo 29: 199–206. https://doi.org/10.1590/S0100-06832005000200005.

[24]

Ponert, J., J. Šoch, S. Vosolsobě, K. Čiháková, and H. Lipavská. 2021. “Integrative Study Supports the Role of Trehalose in Carbon Transfer From Fungi to Mycotrophic Orchid.” Frontiers in Plant Science 12: 793876. https://doi.org/10.3389/fpls.2021.793876.

[25]

Quijia-Lamina, P. H., L. E. Baquero, M. E. Kane, and L. W. Zettler. 2023. “Asymbiotic and Symbiotic Seed Culture of Polystachya concreta (Jacq.) Garay & Hr Sweet From Ecuador.” South African Journal of Botany 159: 164–178. https://doi.org/10.1016/j.sajb.2023.05.046.

[26]

Rasmussen, H. N., K. W. Dixon, J. Jersáková, and T. Těšitelová. 2015. “Germination and Seedling Establishment in Orchids: A Complex of Requirements.” Annals of Botany 116, no. 3: 391–402. https://doi.org/10.1093/aob/mcv087.

[27]

Rasmussen, H. N., and F. N. Rasmussen. 2009. “Orchid Mycorrhiza: Implications of a Mycophagous Life Style.” Oikos 118, no. 3: 334–345. https://doi.org/10.1111/j.1600-0706.2008.17116.x.

[28]

Shao, S. C., K. S. Burgess, J. M. Cruse-Sanders, et al. 2017. “Using In Situ Symbiotic Seed Germination to Restore Over-Collected Medicinal Orchids in Southwest China.” Frontiers in Plant Science 8: 888. https://doi.org/10.3389/fpls.2017.00888.

[29]

Shao, S. C., Y. Luo, and H. Jacquemyn. 2022. “Successful Reintroduction Releases Pressure on China's Orchid Species.” Trends in Plant Science 27, no. 3: 211–213. https://doi.org/10.1016/j.tplants.2021.11.018.

[30]

Shao, S. C., Q. X. Wang, K. C. Beng, D. K. Zhao, and H. Jacquemyn. 2020. “Fungi Isolated From Host Protocorms Accelerate Symbiotic Seed Germination in an Endangered Orchid Species (Dendrobium chrysotoxum) From Southern China.” Mycorrhiza 30, no. 4: 529–539. https://doi.org/10.1007/s00572-020-00964-w.

[31]

Smith, S. E.1967. “Carbohydrate Translocation in Orchid Mycorrhizas.” New Phytologist 66, no. 3: 371–378. https://doi.org/10.1111/j.1469-8137.1967.tb06016.x.

[32]

Smith, Z., E. James, and C. Mclean. 2007. “Experimental Reintroduction of the Threatened Terrestrial Orchid Diuris Fragrantissima.” Lankesteriana 7, no. 1/2: 377–380. https://doi.org/10.15517/lank.v7i1-2.19569.

[33]

Stewart, S. L., and M. E. Kane. 2006. “Asymbiotic Seed Germination and In Vitro Seedling Development of Habenaria macroceratitis (Orchidaceae), a Rare Florida Terrestrial Orchid.” Plant Cell, Tissue and Organ Culture 86, no. 2: 147–158. https://doi.org/10.1007/s11240-006-9098-y.

[34]

Stewart, S. L., L. W. Zettler, J. Minso, and P. M. Brown. 2003. “Symbiotic Germination and Reintroduction of Spiranthes brevilabris Lindley, an Endangered Orchid Native to Florida.” Selbyana 1: 64–70. https://www.jstor.org/stable/41750957.

[35]

Sanchez, M. S., G. F. Bills, and I. Zabalgogeazcoa. 2008. “Diversity and Sstructure of the Fungal Endophytic Assemblages From Two Sympatric Coastal Grasses.” Fungal Diversity 33: 87–100. https://doi.org/10.1016/j.funeco.2021.101088.

[36]

Teoh, E. S.2016. Medicinal Orchids of Asia. Springer.

[37]

Tian, F., X. F. Liao, L. H. Wang, et al. 2022. “Isolation and Identification of Beneficial Orchid Mycorrhizal Fungi in Paphiopedilum barbigerum (Orchidaceae).” Plant Signaling & Behavior 17, no. 1: 2005882. https://doi.org/10.1080/15592324.2021.2005882.

[38]

Uetake, Y., K. Kobayashi, and A. Ogoshi. 1992. “Ultrastructural Changes During the Symbiotic Development of Spiranthes sinensis (Orchidaceae) Protocorms Associated With Binucleate Rhizoctonia Anastomosis Group C.” Mycological Research 96, no. 3: 199–209. https://doi.org/10.1016/S0953-7562(09)80966-0.

[39]

Valencia-Glushchenko, N., C. G. Oña-Arias, M. Orellana, M. Ortega, A. Montero-Oleas, and M. de Lourdes Torres. 2024. “In Vitro Asymbiotic Seed Germination and Seedling Development of Four Endangered Ecuadorian Orchids: Epidendrum jamiesonis, Pleurothallis pulchella, Oncidium pentadactylon, and Elleanthus capitatus.” Plant Cell, Tissue and Organ Culture (PCTOC) 158, no. 3: 60. https://doi.org/10.1007/s11240-024-02841-2.

[40]

Wang, H., H. Fang, Y. Wang, L. Duan, and S. Guo. 2011. “In Situ Seed Baiting Techniques in Dendrobium officinale Kimuraet Migo and Dendrobium nobile Lindl.: the Endangered Chinese Endemic Dendrobium (Orchidaceae).” World Journal of Microbiology and Biotechnology 27: 2051–2059. https://doi.org/10.1007/s11274-011-0667-9.

[41]

White, T. J., T. Bruns, S. Lee, and J. W. Taylor. 1990. “Amplification and Direct Sequencing of Fungal Ribosomal RNA Genes for Phylogenetics.” In PCR Protocols: A Guide to Methods and Applications, edited by M. A. Innis, D. H. Gelfand, J. J. Sninsky, and T. J. White, 315–322. Academic Press.

[42]

Xu, J. T., and L. Fan. 2001. “Cytodifferentiation of the Seeds (Protocorms) and Vegetative Propagation Corms Colonized by Mycorrhizal Fungi.” Acta Botanica Sinica 43, no. 10: 1003–1010.

[43]

Yagame, T., and M. Yamato. 2013. “Mycoheterotrophic Growth of Cephalanthera falcata (Orchidaceae) in Tripartite Symbioses With Thelephoraceae Fungi and Quercus serrata (Fagaceae) in Pot Culture Condition.” Journal of Plant Research 126: 215–222. https://doi.org/10.1007/s10265-012-0521-7.

[44]

Yam, T. W., and J. Arditti. 2017. Micropropagation of Orchids. John Wiley & Sons Ltd.

[45]

Yang, S. J., M. Sun, Q. Y. Yang, R. Y. Ma, J. L. Zhang, and S. B. Zhang. 2016. “Two Strategies by Epiphytic Orchids for Maintaining Water Balance: Thick Cuticles in Leaves and Water Storage in Pseudobulbs.” AoB Plants 8: plw046. https://doi.org/10.1093/aobpla/plw046.

[46]

Zeng, S., K. Wu, J. A. Teixeira da Silva, et al. 2012. “Asymbiotic Seed Germination, Seedling Development and Reintroduction of Paphiopedilum wardii Sumerh., an Endangered Terrestrial Orchid.” Scientia Horticulturae 138: 198–209. https://doi.org/10.1016/j.scienta.2012.02.026.

[47]

Zhao, D. K., M. A. Selosse, L. Wu, Y. Luo, S. C. Shao, and Y. L. Ruan. 2021. “Orchid Reintroduction Based on Seed Germination-Promoting Mycorrhizal Fungi Derived From Protocorms or Seedlings.” Frontiers in Plant Science 12: 701152. https://doi.org/10.3389/fpls.2021.701152.

[48]

Zhu, G. H., Z. H. Ji, and H. P. Wood. 2009. “Dendrobium.” In Flora of China, edited by C. Y. Wu, P. H. Raven, and D. Y. Hong. Science Press.

[49]

Zi, X. M., C. L. Sheng, U. M. Goodale, S. C. Shao, and J. Y. Gao. 2014. “In Situ Seed Baiting to Isolate Germination-Enhancing Fungi for an Epiphytic Orchid, Dendrobium aphyllum (Orchidaceae).” Mycorrhiza 24, no. 7: 487–499. https://doi.org/10.1007/s00572-014-0565-8.

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2026 The Author(s). Integrative Conservation published by John Wiley & Sons Australia, Ltd on behalf of Xishuangbanna Tropical Botanical Garden (XTBG).

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