Skip to main content Skip to main navigation menu Skip to site footer
Type: Article
Published: 2024-12-12
Page range: 66-76
Abstract views: 21
PDF downloaded: 2

A new species of Cyathus (Nidulariaceae, Basidiomycota) from Kalimantan, Borneo

Programa de Pós-graduação em Sistemática e Evolução, Centro de Biociências, Departamento de Botânica e Zoologia, Universidade Federal do Rio Grande do Norte, Av. Senador Salgado Filho 3000, Campus Universitário, Natal, RN, Brazil
Programa de Pós-graduação em Sistemática e Evolução, Centro de Biociências, Departamento de Botânica e Zoologia, Universidade Federal do Rio Grande do Norte, Av. Senador Salgado Filho 3000, Campus Universitário, Natal, RN, Brazil. Centro de Ciências Biológicas e da Saúde, Universidade Federal do Oeste da Bahia, Rua da Prainha 1326, Morada Nobre, Barreiras, Bahia, Brazil.
Programa de Pós-graduação em Sistemática e Evolução, Centro de Biociências, Departamento de Botânica e Zoologia, Universidade Federal do Rio Grande do Norte, Av. Senador Salgado Filho 3000, Campus Universitário, Natal, RN, Brazil. Departamento de Botânica e Zoologia, Universidade Federal do Rio Grande do Norte, Av. Senador Salgado Filho 3000, Campus Universitário, Natal, RN, Brazil.
Department of Botany, National Museum of Nature and Science, 4-1-1 Amakubo, Tsukuba, Ibaraki, Japan
biodiversity bird's nest fungi new taxa phylogeny systematics Fungi

Abstract

In this study, we present the first new species of Cyathus from Indonesia. Cyathus magnipilosus is characterized by having light-colored basidiomata, an exoperidium with long tomentum, single-layered cortex, black peridioles with a smooth surface and elongated basidiospores. The new species is presented with morphological illustrated description, and phylogenetic analyses using ITS and LSU sequences. Cyathus magnipilosus fits in the pallidum group, based on recent classifications. Comparative analyses with related taxa and a detailed discussion are provided as well as an identification key to the known species of Cyathus in the pallidum group for the world.

References

  1. Accioly, T., Sousa, J.O., Moreau, P.A., Lécuru, C., Silva, B.D.B., Roy, M., Gardes, M., Baseia, I.G. & Martín, M.P. (2019) Hidden fungal diversity from the Neotropics: Geastrum hirsutum, G. schweinitzii (Basidiomycota, Geastrales) and their allies. PLoS ONE 14 (2): e0211388. https://doi.org/10.1371/journal.pone.0211388
  2. Bas, C. (1969) Morphology and subdivision of Amanita and a monograph on its section Lepidella. Persoonia 5: 285–579.
  3. Berkeley, M.J. & Curtis, M.A. (1869) Fungi Cubenses (Hymenomycetes). Journal of the Linnean Society 10: 280–392. https://doi.org/10.1111/j.1095-8339.1868.tb00529.x
  4. Boedijn, K.B. (1932) The Phallineae of the Netherlands East Indies. Bulletin du Jardin Botanique de Buitenzorg III, 12: 71–103.
  5. Bresadola, G. (1902) Basidiomycetes philippinenses. Series I. Hedwigia 51 (4): 306–326.
  6. Brodie, H.J. (1975) The bird’s nest fungi. Toronto, Canada: University of Toronto Press. https://doi.org/10.3138/9781442632516
  7. Brodie, H.J. (1984) More bird’s nest fungi (Nidulariaceae). A supplement to “the bird’s nest fungi” (1975). Lejeunia 112: 1–69. https://doi.org/10.3138/9781442632516
  8. Busch, J. & Amarjagal, O. (2020) authority of Second-Tier Governments to Reduce Deforestation in 30 Tropical Countries. Frontiers in Forests and Global Change 3: 1. https://doi.org/10.3389/ffgc.2020.00001
  9. Crous, P.W., Wingfield, M.J., Burgess, T.I., Hardy, G.E.St.J., Crane, C., Barrett, S., Cano-Lira, J.F., Leroux, J.J., Thangavel, R., Guarro, J., Stchigel, A.M., Martín, M.P., Alfredo, D.S., Barber, P.A., Barreto, R.W., Baseia, I.G., Cano-Canals, J., Cheewangkoon, R., Ferreira, R.J., Gené, J., Lechat, C., Moreno, G., Roets, F., Shivas, R.G., Sousa, J.O., Tan, Y.P., Wiederhold, N.P., Abell, S.E., Accioly, T., Albizu, J.L., Alves, J.L., Antoniolli, Z.I., Aplin, N., Araújo, J., Arzanlou, M., Bezerra, J.D.P., Bouchara, J.-P., Carlavilla, J.R., Castillo, A., Castroagudín, V.L., Ceresini, P.C., Claridge, G.F., Coelho, G., Coimbra, V.R.M., Costa, L.A., da cunha, K.C., da silva, S.S., Daniel, R., de beer, Z.W., Dueñas, M., Edwards, J., Enwistle, P., Fiuza, P.O., Fournier, J., García, D., Gibertoni, T.B., Giraud, S., Guevara-Suarez, M., Gusmão, L.F.P., Haituk, S., Heykoop, M., Hirooka, Y., Hofmann, T.A., Houbraken, J., Hughes, D.P., Kautmanová, I., Koppel, O., Koukol, O., Larsson, E., Latha, K.P.D., Lee, D.H., Lisboa, D.O., Lisboa, W.S., López-Villalba, Á., Maciel, J.L.N., Manimohan, P., Manjón, J.L., Marincowitz, S., Marney, T.S., Meijer, M., Miller, A.N., Olariaga, I., Paiva, L.M., Piepenbring, M., Poveda-Molero, J.C., Raj, K.N.A., Raja, H.A., Rougeron, A., Salcedo, I., Samadi, R., Santos, T.A.B., Scarlett, K., Seifert, K.A., Shuttleworth, L.A., Silva, G.A., Silva, M., Siqueira, J.P.Z., Souza-Motta, C.M. & Stephenson, S.L. (2016) Fungal Planet description sheets: 469–557. Persoonia 37: 218–403. https://doi.org/10.3767/003158516X694499
  10. Crous, P.W., Wingfield, M.J., Burgess, T.I., Hardy, G.E.St.J., Gené, J., Guarro, J., Baseia, I.G., García, D., Gusmão, L.F.P., Souza-Motta, C.M., Thangavel, R., Adamčík, S., Barili, A., Barnes, C.W., Bezerra, J.D.P., Bordallo, J.J., Cano-Lira, J.F., de Oliveira, R.J.V., Ercole, E., Hubka, V., Iturrieta-González, I., Kubátová, A., Martín, M.P., Moreau, P.-A., Morte, A., Ordoñez, M.E., Rodríguez, A., Stchigel, A.M., Vizzini, A., Abdollahzadeh, J., Abreu, V.P., Adamčíková, K., Albuquerque, G.M.R., Alexandrova, A.V., Álvarez Duarte, E., Armstrong-Cho, C., Banniza, S., Barbosa, R.N., Bellanger, J.-M., Bezerra, J.L., Cabral, T.S., Caboň, M., Caicedo, E., Cantillo, T., Carnegie, A.J., Carmo, L.T., Castañeda-Ruiz, R.F., Clement, C.R., Čmoková, A., Conceição, L.B., Cruz, R.H.S.F., Damm, U., da Silva, B.D.B., da Silva, G.A., da Silva, R.M.F., Santiago, A.L.C.M. de A., de Oliveira, L.F., de Souza, C.A.F., Déniel, F., Dima, B., Dong, G., Edwards, J., Félix, C.R., Fournier, J., Gibertoni, T.B., Hosaka, K., Iturriaga, T., Jadan, M., Jany, J.-L., Jurjević, Ž., Kolařík, M., Kušan, I., Landell, M.F., Leite Cordeiro, T.R., Lima, D.X., Loizides, M., Luo, S., Machado, A.R., Madrid, H., Magalhães, O.M.C., Marinho, P., Matočec, N., Mešić, A., Miller, A.N., Morozova, O.V., Neves, R.P., Nonaka, K., Nováková, A., Oberlies, N.H., Oliveira-Filho, J.R.C., Oliveira, T.G.L., Papp, V., Pereira, O.L., Perrone, G., Peterson, S.W., Pham, T.H.G., Raja, H.A., Raudabaugh, D.B., iŘehulka, J., Rodríguez-Andrade, E., Saba, M., Schauflerová, A., Shivas, R.G., Simonini, G., Siqueira, J.P.Z., Sousa, J.O., Stajsic, V., Svetasheva, T., Tan, Y.P., Tkalčec, Z., Ullah, S., Valente, P., Valenzuela-Lopez, N., Abrinbana, M., Viana Marques, D.A., Wong, P.T.W., Xavier de Lima, V. & Groenewald, J.Z. (2018) Fungal Planet description sheets: 716–784. Persoonia 40: 240–393. https://doi.org/10.3767/persoonia.2018.40.10
  11. Cruz, R.H.S.F. (2017) Revisão morfológica e molecular do gênero Cyathus Haller (Nidulariaceae, Agaricales, Basidiomycota). Centro de Biociências, Universidade Federal do Rio Grande do Norte, Natal.
  12. Cruz, R.H.S.F., Góis, J.S., Marinho, P., Baseia, I.G. & Hosaka, K. (2023) Rearranging the Bird’s Nest Fungi: molecular review of internal clades in Cyathus (Nidulariaceae, Basidiomycota). IMA Fungus 14: 8. https://doi.org/10.1186/s43008-023-00111-y
  13. Darriba, D., Taboada, G.L., Doallo, R. & Posada, D. (2012) jModelTest2: more models, new heuristics and parallel computing. Nature Methods 9: 772. https://doi.org/10.1038/nmeth.2106
  14. Dissing, H. & Lange, M. (1964) Gasteromycetales II. Flore Iconographique des Champignons du Congo. Bulletin Jardin Botanique de L’état 13: 249–251.
  15. Dring, D.M. (1980) Contributions towards a rational arrangement of the Clathraceae. Kew Bulletin 35: 1–96. https://doi.org/10.2307/4117008
  16. Duan, Z.Y., Yang, X., Liu, C.M. & Zhao, C.L. (2023a) Morphological characteristics and phylogenetic analyses revealed two additional taxa in Cyathus (Agaricales, Basidiomycota). Phytotaxa 598 (1): 1–20. https://doi.org/10.11646/phytotaxa.598.1.1
  17. Duan, Z.Y., Yang, X., Li, Q., Yao, L. & Zhao, C.L. (2023b) Cyathus tongxinianus sp. nov. (Basidiomycota) from China. Phytotaxa 622 (1): 1–16. https://doi.org/10.11646/phytotaxa.622.1.1
  18. Fan, L., Liu, B. & Liu, Y.H. (1994) The Gasteromycetes of China – A supplement to Nova Hedwigia Beiheft 76. Nova Hedwigia Beihefte 108, 72 pp.
  19. Fayod, V. (1889) Prodrome d’une histoire naturelle des Agaricinés. Annales des Sciences Naturelles Botanique 9 (3–6): 181–411.
  20. Frederick, W.H. & Worden, R.L. (1993) Indonesia: A Country Study. Area Handbook Series. Vol. 550. Washington, D.C.: Federal Research Division, Library of Congress, 98 pp.
  21. Haller, A.V. (1768) Historia stirpium indigenarum Helvetiae inchoata. Synopsis Methodica Fvngorvm 3: 1–204.
  22. Hastuti, L. (2004) A Revision of genus Cyathus (Nidulariaceae) in Indonesia. USU Repository, Indonesia, 33 pp.
  23. Hastuti, L.D.S., Hartanto, A. & Wirandi, D. (2019) Cyathus montagnei of North Sumatera (Basidiomycota: Nidulariaceae). The 4th International Conference on Biological Sciences and Biotechnology. IOP Conference Series: Earth and Environmental Science 305: 012023. https://doi.org/10.1088/1755-1315/305/1/012023
  24. Hermawan, R. & Putra, I.P. (2018) Calvatia pyriformis: A New Record in Indonesia. Justek: Jurnal Sains Dan Teknologi 1 (2): 26–29. https://doi.org/10.31764/justek.v1i2.3737
  25. Hosaka, K. (2009) Phylogeography of the genus Pisolithus revisited with some additional taxa from New Caledonia and Japan. Bulletin of the National Museum of Nature and Science, Series B (Botany) 35 (3): 151–167.
  26. Hosaka, K. & Castellano, M.A. (2008) Molecular phylogenetics of Geastrales with species emphasis on the position of Sclerogaster. Bulletin of the National Museum of Nature and Science, Series B (Botany) 34 (4): 161–173.
  27. Hui, N., Liu, X., Jumpponen, A., Setälä, H., Kotze, D.J., Biktasheva, L. & Romantschuk, M. (2018) Over twenty years farmland reforestation decreases fungal diversity of soils, but stimulates the return of ectomycorrhizal fungal communities. Plant Soil 427: 231–244. https://doi.org/10.1007/s11104-018-3647-0
  28. Kambly, P.E. & Lee, R.E. (1936) The Gasteromycetes of Iowa. University of Iowa Studies in Natural History 17 (4): 121–185.
  29. Kebert, M., Kostić, S., Zlatković, M., Stojnic, S., Čapelja, E., Zorić, M., Kiprovski, B., Budakov, D. & Orlović, S. (2022) Ectomycorrhizal fungi modulate biochemical response against Powdery Midew Disease in Querceus robur L. Forests 13 (9): 1491. https://doi.org/10.3390/f13091491
  30. Kirk, P.M., Cannon, P.F., Minter, D.W. & Stalpers, J.A. (2008) Ainsworth & Bisby’s Dictionary of the fungi. 10th edition, CAB International, Wallinford, 771 pp. https://doi.org/10.1079/9780851998268.0000
  31. Kornerup, A. & Wanscher, J.H. (1978) Methuen Handbook of Colour. 3rd ed. Eyre Methuen, London, UK.
  32. Kraisitudomsook, N., Healy, R.A. & Smith, M.E. (2021) Molecular systematics and taxonomic overview of the bird’s nest fungi (Nidulariaceae). Fungal Biology 125: 693–703. https://doi.org/10.1016/j.funbio.20
  33. Liu, B. (1984) The Gasteromcetes of China. Beihefte zur Nova Hedwigia 76: 1–235.
  34. Liu, B. & Cao, J.Z. (1987) A new species of the genus Cyathus. Acta Mycologica Sinica Supplement 1: 316–317.
  35. Liu, B. & Li, Y.M. (1989a) New species and new varieties of the genus Cyathus. Acta Mycologica Sinica 8 (2): 101–112.
  36. Liu, B. & Li, Y.M. (1989b) New species, new variety and new records of the genus Cyathus from China. Acta Mycologica Sinica 8 (4): 289–295.
  37. Liu, B., Shangguan, T.I. & Yuan, P.G. (1984) A new species of the genus Cyathus. Acta Mycologica Sinica 3: 196–198.
  38. Limaho, H., Sugiarto, Pramono, R. & Cristiawan, R. (2022) The Need for Global Green Marketing for the Palm Oil Industry in Indonesia. Sustainability 14 (14): 8621. https://doi.org/10.3390/su14148621
  39. Lloyd, C.G. (1906) The Nidulariaceae or “bird’s nest fungi”. Mycological Writings of CG Lloyd 2: 1–32.
  40. Miller, M.A., Pfeiffer, W. & Schwartz, T. (2010) Creating the CIPRES Science Gateway for inference of large phylogenetic trees. In: 2010 Gateway Computing Environments Workshop (GCE). New Orleans, LA, USA, pp. 1–8. https://doi.org/10.1109/GCE.2010.5676129
  41. Nugroho, J.D., Mansur, I., Purwito, A. & Suhendang, E. (2010) Morphological characteristics of ectomycorrhizas on Merbau [Intsia bijuga (Colebr.) O. Kuntze). HAYATI Journal of Biosciences 17 (2): 68–72. https://doi.org/10.4308/hjb.17.2.68
  42. Persoon, C.H. (1801) Synopsis Methodica Fungorum I. Gottingae: Apud Henricum Dieterich. 240 pp.
  43. Petrossian, G.A., Elwin, A., Sosnowski, M., Nunphong, T., Chiang, H.T., Riungu, J.K. & D’Cruze, N. (2024) A synthesis of wild animal-related trade laws in some of the world’s most biodiverse countries. Journal of Environmental Management 354: 120141. https://doi.org/10.1016/j.jenvman.2024.120141
  44. Ronquist, F., Teslenk, M., van der Mark, P., Ayres, D.L., Darling, A. Höhna, S., Larget, B, Liu, L., Suchard, M.A. & Huelsenbeck, J.P. (2012) MrBayes 3.2: Efficient Bayesian Phylogenetic Inference and Model Choice Across a Large Model Space. Systematic Biology (61)3: 539–542. https://doi.org/10.1093/sysbio/sys029
  45. Saccardo, P.A. (1888) Sylloge Fungorum 7. Ann Arbor: V.W. Edwards, 882 pp.
  46. Sharvit, L., Bar-Shalim, R., Azzam, N., Yechiel, Y., Wasser, S. & Fares, F. (2021) Cyathus striatus extract induces apoptosis in human pancreatic cancer cells and inhibits xenograft tumor growth in vivo. Cancers 13 (9). https://doi.org/ 0.3390/cancers13092017
  47. Stamatakis, A. (2014) RAxML Version 8: A tool for Phylogenetic Analysis and Post-Analysis of Large Phylogenies. Bioinformatics 30 (9): 1312–1313. https://doi.org/10.1093/bioinformatics/btu033
  48. Suharno, S.S., Agustini, V. & Suwannasai, N. (2023) New records of the diversity of Scleroderma spp. from Papua, Indonesia. Biodiversitas 24 (8): 4269–4276. https://doi.org/10.13057/biodiv/d240808
  49. Tai, F.L. & Hung, C.S. (1948) Nidulariales of Yunnan. Scientific Reports of the National Tsing Hua University 3: 30–41.
  50. Tamura, K., Stecher, G. & Kumar, S. (2021) MEGA11: Molecular Evolutionary Genetics Analysis Version 11. Molecular Biology and Evolution (38)7: 3022–3027. https://doi.org/10.1093/molbev/msab120
  51. Tang, D., Xu, Y.Z., Wang, W.W., Yang, Z., Liu, B., Stadler, M., Liu, L.L. & Gao, J.M. (2019) Cyathane Diterpenes from Cultures of the Bird’s Nest Fungus Cyathus hookeri and their Neutrophic and Anti-neuroinflammatory Activities. Journal of Natural Products 82 (6): 1599–1608. https://doi.org/10.1021/acs.jnatprod.9b00091
  52. Tulasne, L.R. & Tulasne, C. (1844) Recherches sur l’organisation et le mode de frutification des champignons de la tribu des Nidulariées, suivies d’um essai monographique. Annales des Sciences Naturalles series 3 (1): 41–107.
  53. Tsukaya, H. & Okada, H. (2013) Two New Species of Sciaphila Blume (Triuridaceae) from Kalimantan, Borneo, with a New Record of S. thaidanica from Borneo. Systematic Botany 38 (3): 600–605. https://doi.org/10.1600/036364413X670476
  54. Van Overeem, C. & van Overeem-de Haas, D. (1922) Verzeichnis der in Niederländisch ost-Indien bis dem jahre 192 gefundenen Myxomycetes, Fungi, Lichenes. Bulletin du Jardin Botanique de Buitenzorg, 347 pp.
  55. Vijay, V., Pimm, S.L., Jenkins, C.N. & Smith, S.J. (2016) The impacts of Oil Palm on Recent Deforestation and Biodiversity loss. PlOS ONE 11 (7): e0159668. https://doi.org/10.1371/journal.pone.0159668
  56. White, V.S. (1902) The Nidulariaceae of North America. Bulletin of the Torrey Botanical Club 29: 251–280. https://doi.org/10.2307/2478721
  57. Willdenow, K.L. (1787) Florae Berolinensis prodomus. Berolini: Impensis Wilhelmi Viewgii, 482 pp.
  58. White, T.J., Bruns, T., Lee, S. & Taylor, J. (1990) Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In: Innis, M.A., Gelfand, D.H., Sninsky, J.J. & White, T.J. (Eds.) PCR protocols: A guide to methods and applications. Academic Press, San Diego, pp. 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1
  59. Wicklow, D.T., Langie, R.C., Crabtree, S. & Detroy, R.W. (1984) Degradation of lignocellulose in wheat straw versus hardwood by Cyathus and related species (Nidulariaceae). Canadian Journal of Microbiology 30: 632–636. https://doi.org/10.1139/m84-093
  60. Yin, X., Wei, J., Wang, W.W., Gao, Y.G., Stadler, M., Kou, R.W. & Gao, J.M. (2019) New cyathane diterpenoids with neutrophic and anti-neuroinflammatory activity from the bird’s nest fungus Cyathus africanus. Fitoterapia 134: 201–209. https://doi.org/10.1016/j.fitote.2019.02.013
  61. Zhao, R.L., Desjardin, D.E., Soytong, K. & Hyde, K.D. (2008) A new species of bird’s nest fungi: characterization of Cyathus subglobisporus sp. nov. based on morphological and molecular data. Persoonia 21: 71–76. https://doi.org/10.3767/003158508X3705
  62. Zhao, R.L., Jeewon, R., Desjardin, D.E., Soytong, K. & Hyde, K.D. (2007) Ribosomal DNA phylogenies of Cyathus: is the current infrageneric classification appropriate? Mycologia 99: 385–395. https://doi.org/10.3852/mycologia.99.3.385