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Type: Article
Published: 2023-05-12
Page range: 153-164
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Sulzbacheromyces leucodontium (Basidiomycota, Lepidostromataceae), a new species of basidiolichen widely distributed in the Neotropics

Jardín Botánico de Bogotá José Celestino Mutis. Bogotá D. C., Colombia.
Jardín Botánico de Bogotá José Celestino Mutis. Bogotá D. C., Colombia.
Universidad Veracruzana, Facultad de Ciencias Biológicas y Agropecuarias, Peñuela, 94945 Amatlán de los Reyes, Veracruz, México
Universidad de la Amazonia, Laboratorio de Agrobiodiversidad y Malherbologia LAMUA, Grupo de Investigación en Agroecosistemas y Conservación en Bosques Amazónicos - GAIA.
Universidad Nacional de Colombia (Sede Bogotá). Facultad de Ciencias, Instituto de Ciencias Naturales. Bogotá D. C., Colombia
Departamento de Biología, Facultad de Ciencias, Grupo de Investigación Ecología y Diversidad Vegetal, Universidad del Valle, Cali, Colombia.
Fort Worth Botanic Garden, 1700 University Drive, Fort Worth, TX 76107, USA.
The Field Museum, Science & Education, 1400 DuSable Lake Shore Drive, Chicago, IL 60605, USA.
Gelasia Iran Jolfa new species phylogeny Scorzonerinae taxonomy Eudicots

Abstract

As a result of botanical and lichenological expeditions in the Colombian Andean-Amazonian Piedmont, in the Brazilian Amazon, and in Veracruz, Mexico, a new species of Sulzbacheromyces was discovered and is here described based on morphological, anatomical, and molecular characters. S. leucodontium differs from other neotropical species in the genus by having white basidiomata and colonial algae in the thallus and represents the species with the widest distribution of the genus in the Americas, from Mexico to Brazil. In addition, the most complete phylogenetic reconstruction of the genus to date is presented as well as a key to the known species of Sulzbacheromyces in the Neotropics.

References

  1. Avellaneda, A., Monroy, K.F. & Cardona-Guzmán, D.P. (2016) Análisis socio ecológico de los sistemas agropecuarios en la Amazonia Colombiana, estudio de caso La Macarena-Meta, Colombia. Revista Iberoamericana de Economía Ecológica 26: 141–154.
    Ciontescu, N., Ortega, D., Guerrero, J. & Zambrano, H. (2019) Análisis de conectividad ecológica en el Piedemonte Andino Amazónico, Departamento del Caquetá. USAID, Patrimonio Natural y Conservación y Gobernanza. Bogotá. Available from: https://pdf.usaid.gov/pdf_docs/PA00X3PF.pdf (Accessed 25 January 2021)
    Coca, L.F., Lücking, R. & Moncada, B. (2018) Two new, sympatric and semi-cryptic species of Sulzbacheromyces (Lichenized Basidiomycota, Lepidostromatales) from the Chocó Biogeographic Region in Colombia. Bryologist 121: 297–305. https://doi.org/10.1639/0007-2745-121.3.297
    ColFungi. (2022) Useful Fungi of Colombia. Facilitated by the Royal Botanic Gardens, Kew. Available from: https://colfungi.org/ (Accessed: 18 October 2022).
    Corner, E.J.H. (1950) A monograph of Clavaria and allied genera. Annals of Botany Memoirs 1: 1–740.
    Delgado-Forero, D.A., Sandoval-Jurado, J-F., Vives, A.L. & Gómez, M. (2021) La siembra de cultivos de coca y la deforestación como hecho regional en los parques nacionales naturales: Caso Parque Nacional Natural Alto Fragua Indi Wasi. Available from: https://cider.uniandes.edu.co/sites/default/files/noticias/2021/noviembre/COCA-PARQUES-NACIONALES-NATURALES-2.pdf (accessed 25 January 2023)
    Dick, W.C. & Pennington, R.T. (2019) History and Geography of Neotropical Tree Diversity. Annual Review of Ecology, Evolution, and Systematics 50: 279–301. https://doi.org/10.1146/annurev-ecolsys-110617-062314
    Etter, A., McAlpine, C., Phinn, S., Pullar, D. & Possingham, H. (2006) Characterizing a tropical deforestation wave: a dynamic spatial analysis of a deforestation hotspot in the Colombian Amazon. Global Change Biology 12: 1409–1420. https://doi.org/10.1111/j.1365-2486.2006.01168.x
    Fries, E.M. (1825) Systema Orbis Vegetabilis I. Typographia Academica, Lund, 369 pp.
    Fryday, A.M., Beckett, R.P. & Kirika, P.M. (2022) Lichenology in Africa. Lichenologist 54: 227–230. https://doi.org/10.1017/S0024282922000329
    Gardes, M. & Bruns, T.D. (1993) ITS primers with enhanced specificity for basidiomycetes - application to the identification of mycorrhizae and rusts. Molecular Ecology 2: 113–118. https://doi.org/10.1111/j.1365-294X.1993.tb00005.x
    Graham, A. (1976) Studies in Neotropical Paleobotany. II. The Miocene Communities of Veracruz, Mexico. Annals of the Missouri Botanical Garden 63: 787–842. https://doi.org/10.2307/2395250
    Guio, C.A. & Rojas, A. (2019) Amazonia colombiana: dinámicas territoriales. Ideas Verdes, análisis político 22: 1–52.
    Hagen, O., Skeels, A., Onstein, R.E. & Pellissier, L. (2021) Earth history events shaped the evolution of uneven biodiversity across tropical moist forests. Proceedings of the National Academy of Sciences 118: e2026347118. https://doi.org/10.1073/pnas.2026347118
    Hernandez, J., Ortiz, R., Walschburger, T. & Hurtado, A. (1992) Estado de la biodiversidad en Colombia. In: Halffter, G. (ed.) La diversidad biologica de Iberomaerica I. Instituto de Ecología, Veracruz, pp. 123–124.
    Hodkinson, B.P., Moncada, B. & Lücking, R. (2014) Lepidostromatales, a new order of lichenized fungi (Basidiomycota, Agaricomycetes), with two new genera, Ertzia and Sulzbacheromyces, and one new species, Lepidostroma winklerianum. Fungal Diversity 64: 165–179. https://doi.org/10.1007/s13225-013-0267-0
    Jørgensen, P.M. (1998) Acantholichen pannarioides, a new basidiolichen from South America. Bryologist 101: 444–447. https://doi.org/10.2307/3244185
    Kattan, G., Franco, P., Rojas, V. & Morales, G. (2004) Biological diversification in a complex region: a spatial analysis of faunistic diversity and biogeography of the Andes of Colombia. Journal of Biogeography 31: 1829–1839. https://doi.org/10.1111/j.1365-2699.2004.01109.x
    Katoh, K. & Toh, M. (2005) MAFFT version 5: improvement in accuracy of multiple sequence alignment. Nucleic Acids Research 33: 511–518. https://doi.org/10.1093/nar/gki198
    Katoh, K., Asimenos, G. & Toh, H. (2009) Multiple alignment of DNA sequences with MAFFT. Methods in Molecular Biology 537: 39–64. https://doi.org/10.1007/978-1-59745-251-9_3
    Liu, D., Goffinet, B., Ertz, D., Kesel, A., Wang, X., Hur, J., Shi, H., Zhang, Y., Yang, M. & Wang, L. (2018) Circumscription and phylogeny of the Lepidostromatales (lichenized Basidiomycota) following discovery of new species from China and Africa. Mycologia 109: 730–748. https://doi.org/10.1080/00275514.2017.1406767
    Liu, D., Wang, X.Y, Wang, L.S., Maekawa, N. & Hur, J.S. (2019) Sulzbacheromyces sinensis, an Unexpected Basidiolichen, was Newly Discovered from Korean Peninsula and Philippines, with a Phylogenetic Reconstruction of Genus Sulzbacheromyces. Mycobiology 47 (2): 191–199. https://doi.org/10.1080/12298093.2019.1617825
    Mägdefrau, K. & Winkler, S. (1967) Lepidostroma terricolens n. g. n. sp., eine Basidiolichene der Sierra Nevada de Santa Marta (Kolumbien). Mitteilungen des Institute Colombo-Alemán. Investigaciones Científicas 1: 11–17. https://doi.org/10.25268/bimc.invemar.1967.1.0.600
    Martin, G.W. (1940) Some tropical American “Clavarias”. Lilloa 5: 191–196.
    Moncada, B., Coca, L.F., Díaz-Escandón, D., Jaramillo-Ciro, M. Simijaca-Salcedo, D., Soto Medina, E & Lücking, R. (2022) Diversity, Ecogeography, and Importance of Lichens of Colombia. In: de Almeida, R.F., Lücking, R., Vasco-Palacios, A.M., Gaya, E. & Diazgranados, M. (eds.) Catalogue of Fungi of Colombia. Kew Publishing, Royal Botanic Gardens, Kew, London, pp. 77–90.
    Morales, M.A. (2020) Lista de especies cinegéticas en tres sectores del parque Nacional Natural Alto Fragua Indi Wasi, Caquetá, Colombia. Rev Colombiana Cienc Anim. RECIA 12: e764. https://doi.org/10.24188/recia.v12.n2.2020.764
    Niño, I. (2014) WWF en el Piedemonte Andino-Amazónico de Colombia. Piedemonte. pp. 1–14.
    Oberwinkler, F. (1984) Fungus-alga interactions in basidiolichens. Beihefte zur Nova Hedwigia 79: 739–774.
    Petersen, R.H. (1967) Notes on clavarioid fungi. VII. Redefinition of the Clavaria vernalis C. mucida complex. The American Midland Naturalist 77: 205–221. https://doi.org/10.2307/2423440
    Petersen, R.H. & Zang, M. (1986) New or interesting clavarioid fungi from Yunnan, China. Acta Botanica Yunnanica 8: 2815–294.
    Redhead, S.A., Lutzoni, F., Moncalvo, J.M. & Vilgalys, R. (2002) Phylogeny of agarics: partial systematics solutions for core omphalinoid genera in the Agaricales (Euagarics). Mycotaxon 83: 19–57.
    Reid, D.A. (1965) A monograph of the stipitate stereoid fungi. Beihefte zur Nova Hedwigia 18: 1–382.
    Revelo, J. (2019) ¿Para qué sirven los parques naturales? Legibilidad estatal en el Parque Alto Fragua Indi Wasi, Colombia. Colombia Internacional 100: 121–145. https://doi.org/10.7440/colombiaint100.2019.06
    Robertson, K. & Castiblanco, M. (2011) Amenazas fluviales en el piedemonte amazónico Colombiano. Revista Colombiana de Geografia 20: 125–137. https://doi.org/10.15446/rcdg.v20n2.27185
    Rodriguez-Reyes, O., Estrada-Ruiz, E., Monje Dussan, C., Andrade Brito, L. & Terrazas, T. (2021) A new Oligocene-Miocene tree from Panama and historical Anacardium migration patterns. PLoS ONE 16: e0250721. https://doi.org/10.1371/journal.pone.0250721
    Rojas, M., Solano, A., Chitiva, L.Y., Jacanamejoy, C.J., Cuellar, M.P., Garcia, R., Sarmiento, I. & Suarez, J.C. (2005) Linea base para la planeación del manejo del Parque Nacional Natural (Nukanchipa Alpa) Alto Fragua Indi Wasi. Parques Nacionales Naturales de Colombia, direccción territorial Amazonia. Available from: https://www.parquesnacionales.gov.co/portal/wp-content/uploads/2020/10/pm-altofragua_2007.pdf (accessed: 25 January 2023).
    Rull, V. (2011) Neotropical biodiversity: timing and potential drivers. Trends in Ecology & Evolution 26: 508–513. https://doi.org/10.1016/j.tree.2011.05.011
    Schneider, C.A., Rasband, W.S. & Eliceiri, K.W. (2012) NIH Image to ImageJ: 25 years of image analysis. Nature Methods 9: 671–675. https://doi.org/10.1038/nmeth.2089
    Stamatakis, A. (2015) Using RAxML to Infer Phylogenies. Current Protocols in Bioinformatics 51: 6.14.1–6.14.14. https://doi.org/10.1002/0471250953.bi0614s51
    Sulzbacher, M., Baseia, I., Lücking, R., Parnmen, S. & Moncada, B. (2013) Unexpected discovery of a novel basidiolichen in the threatened Caatinga biome of northeastern Brazil. The Bryologist 115: 601–609. https://doi.org/10.1639/0007-2745-115.4.601
    Sulzbacher, M.A., Wartchow, F., Ovrebo, C.L., Sousa, J.O., Baseia, I.G., Moncada, B. & Lücking, R. (2016) Sulzbacheromyces caatingae: notes on its systematics, morphology and distribution based on ITS barcoding sequences. Lichenologist 48: 61–70. https://doi.org/10.1017/S0024282915000420
    Takhtajan, A. (1986) Floristic regions of the world. University of California Press, California, 247 pp. https://doi.org/10.5962/bhl.title.2741
    Tereg, E. (1923) Einige neue Grünalgen. Beihefte zum Botanischen Centralblatt 39: 179–195.
    Vainio, E.A. (1890) Étude sur la classification naturelle et la morphologie des Lichens du Brésil. Pars prima. Acta Societatis pro Fauna et Flora Fennica 7: 1–247.
    Vondrák, J., Říha, P., Arup, U. & Søchting, U. (2009) The taxonomy of the Caloplaca citrina group (Teloschistaceae) in the Black Sea region; with contributions to the cryptic species concept in lichenology. Lichenologist 41: 571–604. https://doi.org/10.1017/S0024282909008317
    White, T.J., Bruns, T., Lee, S.B. & Taylor, J.W. (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. Academic Press, San Diego, pp. 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1