Skip to main content Skip to main navigation menu Skip to site footer
Type: Article
Published: 2023-02-14
Page range: 89–103
Abstract views: 56
PDF downloaded: 1

Morpho-phylogeny characterization of Linocarpon bambusina sp. nov. (Linocarpaceae, Chaetosphaeriales) associated with bamboo in Yunnan Province, China

Center for Yunnan Plateau Biological Resources Protection and Utilization, College of Biological Resource and Food Engineering, Qujing Normal University, Qujing, Yunnan 655011, P.R. China
Center for Yunnan Plateau Biological Resources Protection and Utilization, College of Biological Resource and Food Engineering, Qujing Normal University, Qujing, Yunnan 655011, P.R. China
Center for Yunnan Plateau Biological Resources Protection and Utilization, College of Biological Resource and Food Engineering, Qujing Normal University, Qujing, Yunnan 655011, P.R. China
Center for Yunnan Plateau Biological Resources Protection and Utilization, College of Biological Resource and Food Engineering, Qujing Normal University, Qujing, Yunnan 655011, P.R. China
Center for Yunnan Plateau Biological Resources Protection and Utilization, College of Biological Resource and Food Engineering, Qujing Normal University, Qujing, Yunnan 655011, P.R. China
Eudicots 1 new species Ascomycota Bambusa Sordariomycetes Taxonomy

Abstract

Yunnan Province (China) is one of the most bamboo-rich regions in the world. In this study, a saprophytic fungus was collected from dead bamboo in Yunnan Province. Based on molecular phylogenetic analyses of combined LSU, SSU, and tef1-α sequence data, our collections grouped within Linocarpon and formed a separate clade with high statistical support. The morphological comparison showed that our collections has some characteristics such as semi-immersed ascomata, fusiform asci, and ascospores with 28–30 septa, which are different from other species in Linocarpon. Therefore, based on morpho-phylogenetic evidence, our collection is identified as a new bambusicolous species in China and named Linocarpon bambusina sp. nov. A full description, photo plate, and a phylogenetic tree are provided for the new species.

References

<p>Bahl, J. (2006) Molecular evolution of three morphologically similar families in the Xylariomycetidae (Apiosporaceae, Clypeosphaeriaceae, Hyponectriaceae). <em>Hku Theses Online</em>. https://doi.org/10.5353/th_b3785674</p>
<p>Bamboo Botanicals (2016) Available from: http://www.bamboobotanicals.ca/index.html (accessed 17 June 2022)</p>
<p>Bhat, D., Jayarama, Yang, J., Hyde, K.D. &amp; Jones, E. (2016) New species of<em> Sporoschisma</em> (Chaetosphaeriaceae) from aquatic habitats in Thailand. <em>Phytotaxa</em> 289 (2): 147–157. https://doi.org/10.11646/phytotaxa.289.2.4</p>
<p>Bystriakova, N., Kapos, V., Lysenko, I. &amp; Stapleton, C.M.A. (2003) Distribution and conservation status of forest bamboo biodiversity in the Asia-Pacific Region. <em>Biodiversity and Conservation</em> 12: 1833–1841. https://doi.org/10.1023/A:1024139813651</p>
<p>Cai, L., Zhang, K., Mckenzie, E.H.C. &amp; Hyde, K.D. (2004) <em>Linocarpon bambusicola</em> sp. nov. and <em>Dictyochaeta curvispora</em> sp. nov. from bamboo submerged in freshwater. <em>Nova Hedwigia</em> 78 (3): 439–445. https://doi.org/10.1127/0029-5035/2004/0078-0439</p>
<p>Crous, P.W., Verkley, G., Christensen, M., Castaeda-Ruiz, R.F. &amp; Groenewald, J.Z. (2012) How important are conidial appendages?.<em> Persoonia - Molecular Phylogeny and Evolution of Fungi</em> 28 (1): 126–137. https://doi.org/10.3767/003158512X652624</p>
<p>Crous, P.W., Wingfield, M.J., Schumacher, R.K., Summerell, B.A., Giraldo, A., Gené, J., Guarro, J., Wanasinghe, D.N., Hyde, K.D., Camporesi, E., Garethjones, E.B., Thambugala, K.M., Malysheva, E.F., Malysheva, V.F., Acharya, K., Álvarez, J., Alvarado, P., Assefa, A., Barnes, C.W., Bartlett, J.S., Blanchette, R.A., Burgess, T.I., Carlavilla, J.R., Coetzee, M.P.A., Damm, U., Decock, C.A., Denbreeÿen, A., Devries, B., Dutta, A.K., Holdom, D.G., Rooney-Latham, S., Manjón, J.L., Marincowitz, S., Mirabolfathy, M., Moreno, G., Nakashima, C., Papizadeh, M., Shahzadehfazeli, S.A., Amoozegar, M.A., Romberg, M.K., Shivas, R.G., Stalpers, J.A., Stielow, B., Stukely, M.J.C., Swart, W.J., Tan, Y.P., Vanderbank, M., Wood, A.R., Zhang, Y. &amp; Groenewald, J.Z. (2014) Fungal planet description sheets: 281–319. <em>Persoonia-Molecular Phylogeny and Evolution of Fungi</em> 33: 212–289. https://doi.org/10.3767/003158514X685680</p>
<p>Crous, P.W., Wingfield, M.J., Burgess, T.I., Hardy, G.E.S.t.J., Crane, C., Barrett, S., Cano-Lira, J.F., Le Roux, 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-Suárez, 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., Loìpez-Villalba, Aì., 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., Sutton, D.A., Tamakeaw, N., Telleria, M.T., Valenzuela-Lopez, N., Viljoen, A., Visagie, C.M., Vizzini, A., Wartchow, F., Wingfield, B.D., Yurchenko, E., Zamora, J.C. &amp; Groenewald, J.Z. (2016) Fungal Planet description sheets: 469–557. <em>Persoonia - Molecular Phylogeny and Evolution of Fungi</em> 37 (1): 218–403. https://doi.org/10.3767/003158516X694499</p>
<p>Dai, D.Q., Phookamsak, R., Wijayawardene, N.N., Li, W.J., Bhat, D.J., Xu, J.C., Taylor, J.E., Hyde, K.D. &amp; Chukeatirote, E. (2017) Bambusicolous fungi.<em> Fungal Diversity</em> 82: 1–105. https://doi.org/10.1007/s13225-016-0367-8</p>
<p>Eriksson, O. &amp; Yue, J.Z. (1998) Bambusicolous Pyrenomycetes, an annotated check-list. <em>Myconet</em> 1 (2): 25–78.</p>
<p>Farr, D.F. &amp; Rossman, A.Y. (2022) Fungal Databases, U.S. National Fungus Collections, ARS, USDA. Available from: https://nt.ars-grin. gov/fungal databases/ (accessed 11 April 2022)</p>
<p>Fröhlich, J. &amp; Hyde, K.D. (2000) Palm microfungi. <em>Fungal Diversity Press</em> 3: 1–393.</p>
<p>GenBank (continuously updated) Available from: http://www.ncbi.nlm.nih.gov (accessed 17 September 2022)</p>
<p>Geneious (continuously updated) Available from: https://www.geneious.com/ (accessed 17 September 2022)</p>
<p>Glez-Peña, D., Gómez-Blanco, D., Reboiro-Jato, M., Fdez-Riverola, F. &amp; Posada, D. (2010) ALTER: program-oriented conversion of DNA and protein alignments. <em>Nucleic Acids Research</em> 38: 14–18. https://doi.org/10.1093/nar/gkq321</p>
<p>Gratani, L., Crescente, M.F., Varone, L., Fabrini, G. &amp; Digiulio, E. (2008) Growth pattern and photosynthetic activity of different bamboo species growing in the Botanical Garden of Rome. <em>Flora-Morphol Distrib Funct Ecol Plants</em> 203: 77–84. https://doi.org/10.1016/j.flora.2007.11.002</p>
<p>Hall, T.A. (1999) BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. <em>Nucleic Acids Symposium Series</em> 41 (41): 95–98. https://doi.org/10.1021/bk-1999-0734.ch008</p>
<p>Hansford, C.G. (1954) Australian Fungi. II. New species and revisions. <em>Proceedings of the Linnean Society of New South Wales</em> 79: 97–141.</p>
<p>Hashimoto, A., Sato, G., Matsuda, T., Matsumura, M., Hatakeyama, S., Harada, Y., Ikeda, H. &amp; Tanaka, K. (2015) Taxonomic revision of <em>Pseudolachnea</em> and <em>Pseudolachnella</em> and establishment of <em>Neopseudolachnella</em> and <em>Pseudodinemasporium</em> gen. nov. <em>Mycologia</em> 107 (2): 383–408. https://doi.org/10.3852/14-171</p>
<p>Hernandez-Restrepo, M., Schumacher, R.K., Wingfield, M.J., Ahmad, I., Cai, L., Duong, T.A., Edwards, J., Geneì, J., Groenewald, J.Z., Jabeen, S., Khalid, A.N., Lombard, L., Madrid, H., Marin-Felix, Y., Marincowitz, S., Miller, A.N., Rajeshkumar, K.C., Rashid, A., Sarwar, S., Stchigel, A.M., Taylor, P.W.J., Zhou, N. &amp; Crous, P.W. (2016) Fungal systematics and evolution: FUSE 2. <em>Sydowia</em> 68: 193–230.</p>
<p>Hernández-Restrepo, M., Gené, J., Castañeda-Ruiz, R.F., Mena-Portales, J., Crous, P.W. &amp; Guarro, J. (2017) Phylogeny of saprobic microfungi from Southern Europe. <em>Studies in Mycology</em> 86: 53–97. https://doi.org/10.1016/j.simyco.2017.05.002</p>
<p>Huhndorf, S.M., Miller, A.N. &amp; Fernández, F.A. (2004) Molecular systematics of the Sordariales: the order and the family Lasiosphaeriaceae redefine. <em>Mycologia</em> 96: 368–387. https://doi.org/10.1080/15572536.2005.11832982</p>
<p>Huhndorf, S.M. &amp; Miller, A.N. (2011) A molecular re-appraisal of taxa in the Sordariomycetidae and a new species of <em>Rimaconus </em>from New Zealand. <em>Studies in Mycology</em> 68: 203–210. https://doi.org/10.3114/sim.2011.68.09</p>
<p>Hyde, K.D. (1992a) Fungi from decaying intertidal fronds of <em>Nypa fruticans</em>, including three new genera four new species. <em>Botanical Journal of the Linnean Society </em>110 (2): 95–110.&nbsp; https://doi.org/10.1111/j.1095-8339.1992.tb00284.x</p>
<p>Hyde, K.D. (1992b) Fungi from palms. I. The genus <em>Linocarpon</em>, a revision. <em>Sydowia</em> 44: 32–54.</p>
<p>Hyde, K.D. (1997) Additions to the genus <em>Linocarpon</em> (Ascomycetes: Hyponectriaceae). <em>Botanical Journal of the Linnean Society</em> 123 (2): 109–131.&nbsp; https://doi.org/10.1111/j.1095-8339.1997.tb01407.x</p>
<p>Hyde, K.D. &amp; Alias, S.A. (1999) <em>Linocarpon angustatum</em> sp. nov. and <em>Neolinocarpon nypicola</em> sp. nov. from petioles of <em>Nypa ruticans</em>, and a list of fungi from aerial parts of this host. <em>Mycoscience</em> 40 (2): 145–149. https://doi.org/10.1007/BF02464293</p>
<p>Hyde, K.D., Zhou, D.Q. &amp; Dalisay, T. (2002a) Bambusicolous fungi: A review. <em>Fungal Diversity</em> 9: 1–14.</p>
<p>Hyde, K.D., Zhou, D., McKenzie, E., Ho, W. &amp; Dalisay, T. (2002b) Vertical distribution of saprobic fungi on bamboo culms. <em>Fungal Diversity </em>11: 109–118.</p>
<p>Hyde, K.D. (2008) Additions to the genus <em>linocarpon</em> (Ascomycetes: Hyponectriaceae). <em>Botanical Journal of the Linnean Society.</em></p>
<p>Hyde, K.D., Norphanphoun, C., Maharachchikumbura, S.S.N., Bhat, D.J., Jones, E.B.G., Bundhun, D., Chen, Y.J., Bao, D.F., Boonmee, S., Calabon, M.S., Chaiwan, N., Chethana, K.W.T., Dai, D.Q., Dayarathne, M.C., Devadatha, B., Dissanayake, A.J., Dissanayake, L.S., Doilom, M., Dong, W., Fan, X.L., Goonasekara, I.D., Hongsanan, S., Huang, S.K., Jayawardena, R.S., Jeewon, R., Karunarathna, A., Konta, S., Kumar, V., Lin, C.G., Liu, J.K., Liu, N.G., Luangsa-ard, J., Lumyong, S., Luo, Z.L., Marasinghe, D.S., McKenzie, E.H.C., Niego, A.G.T., Niranjan, M., Perera, R.H., Phukhamsakda, C., Rathnayaka, A.R., Samarakoon, M.C., Samarakoon, S.M.B.C., Sarma, V.V., Senanayake, I.C., Shang, Q.J., Stadler, M., Tibpromma, S., Wanasinghe, D.N., Wei, D.P., Wijayawardene, N.N., Xiao, Y.P., Yang, J., Zeng, X.Y., Zhang, S.N. &amp; Xiang, M.M. (2020) Refined families of Sordariomycetes. <em>Mycosphere</em> 11 (1): 305–1059. https://doi.org/10.5943/mycosphere/11/1/7</p>
<p>Index Fungorum (2023) Available from: http://www.indexfungorum.org (accessed 7 January 2023)</p>
<p>Jayasiri, S.C., Hyde, K.D., Ariyawansa, H.A., Bhat, D.J., Buyck, B., Cai, L., Dai, Y.C., Abd-Elsalam, K.A., Ertz, D., Hidayat, I., Jeewon, R., Jones, E.B.G., Bahkali, A.H., Karunarathna, S.C., Liu, J.K., Luangsaard, J.J., Lumbsch, H.T., Maharachchikumbura, S.S.N., McKenzie, E.H.C., Moncalvo, J.M., Ghobad-Nejhad, M., Nilsson, H., Pang, K.L., Pereira, O.L., Phillips, A.J.L., Raspé, O., Rollins, A.W., Romero, A.I., Etayo, J., Selçuk, F., Stephenson, S.L., Suetrong, S., Taylor, J.E., Tsui, C.K.M., Vizzini, A., Abdel-Wahab, M.A., Wen, T.C., Boonmee, S., Dai, D.Q., Daranagama, D.A., Dissanayake, A.J., Ekanayaka, A.H., Fryar, S.C., Hongsanan, S., Jayawardena, R.S., Li, W.J., Perera, R.H., Phookamsak, R., de Silva, N.I., Thambugala, K.M., Tian, Q., Wijayawardene, N.N., Zhao, R.L., Zhao, Q., Kang, J.C. &amp; Promputtha, I. (2015) The Faces of Fungi database: fungal names linked with morphology, phylogeny and human impacts. <em>Fungal Diversity</em> 74: 3–18. https://doi.org/10.1007/s13225-015-0351-8</p>
<p>Jeewon, R., Liew, E. &amp; Hyde, K.D. (2003) Molecular systematics of the Amphisphaeriaceae based on cladistic analyses of partial LSU rDNA gene sequences. <em>Mycological Research </em>107 (12): 1392–1402. https://doi.org/10.1017/S095375620300875X</p>
<p>Jeewon, R., Yeung, S.Y.Q. &amp; Hyde, K.D. (2009) A novel phylogenetic group within <em>Thozetella </em>(Chaetosphaeriaceae): a new taxon based on morphology and DNA sequence analyses. <em>Canadian Journal of Microbiology </em>55 (6): 680–687. https://doi.org/10.1139/W08-148</p>
<p>Kelchner, S.A. &amp; Group, B.P. (2013) Higher level phylogenetic relationships within the bamboos (Poaceae: Bambusoideae) based on five plastid markers. <em>Molecular Phylogenetics and Evolution</em> 67: 404–413. https://doi.org/10.1016/j.ympev.2013.02.005</p>
<p>Konta, S., Hongsanan, S., Liu, J.K., Eungwanichayapant, P.D. &amp; Boonmee, S. (2017) <em>Leptosporella</em> (Leptosporellaceae fam. nov.) and <em>Linocarpon</em> and <em>Neolinocarpon</em> (Linocarpaceae fam. nov.) are accommodated in Chaetosphaeriales. <em>Mycosphere</em> 8 (10): 1943–1974. https://doi.org/10.5943/mycosphere/8/10/16</p>
<p>Lei, C., Jeewon, R. &amp; Hyde, K.D. (2006) Phylogenetic investigations of sordariaceae based on multiple gene sequences and morphology. <em>Mycological Research</em> 110 (2): 137–150.</p>
<p>Lin, C.G., McKenzie, E.H.C., Liu, J.K., Jones, E.B.G. &amp; Hyde, K.D. (2019) Hyaline-spored Chaetosphaeriaceous Hyphomycetes from Thailand and China, with a review of the family Chaetosphaeriaceae. <em>Mycosphere</em> 10 (1): 655–700. https://doi.org/10.5943/mycosphere/10/1/14</p>
<p>Liu, J.K., Hyde, K.D., Jones, E.B.G., Ariyawansa, H.A., Bhat, D.J., Boonmee, S., Maharachchikumbura, S.S.N., McKenzie, E.H.C., Phookamsak, R., Phukhamsakda, C., Shenoy, B.D., Abdel-Wahab, M.A., Buyck, B., Chen, J., Chethana, K.W.T., Singtripop, C., Dai, D.Q., Dai, Y.C., Daranagama, D.A., Dissanayake, A.J., Doliom, M., D’souza, M.J., Fan, X.L., Goonasekara, I.D., Hirayama, K., Hongsanan, S., Jayasiri, S.C., Jayawardena, R.S., Karunarathna, S.C., Li, W.J., Mapook, A., Norphanphoun, C., Pang, K.L., Perera, R.H., Peršoh, D., Pinruan, U., Senanayake, I.C., Somrithipol, S., Suetrong, S., Tanaka, K., Thambugala, K.M., Tian, Q., Tibpromma, S., Udayanga, D., Wijayawardene, N.N., Wanasinghe, D., Wisitrassameewong, K., Zeng, X.Y., Abdel-Aziz, F.A., Adamčiìk, S., Bahkali, A.H., Boonyuen, N., Bulgakov, T., Callac, P., Chomnunti, P., Greiner, K., Hashimoto, A., Hofstetter, V., Kang, J.C., Lewis, D., Li, X.H., Liu, Z.Y., Liu, Z.Y., Matumura, M., Mortimer, P.E., Rambold, R., Randrianjohany, E., Sato, G., Indrasutdhi, V.S., Tian, C.M., Verbeken, A., Brackel, W., Wang, Y., Wen, T.C., Xu, J.C., Yan, J.Y., Zhao, R.L. &amp; Camporesi, E. (2015) Fungal Diversity Notes 1–100: Taxonomic and phylogenetic contributions to fungal species. <em>Fungal Diversity</em> 72: 1–197. https://doi.org/10.1007/s13225-015-0324-y</p>
<p>Liu, J.K., Yang, J., Maharachchikumbura, S.S.N., McKenzie, E.H.C., Jones, E.B.G., Hyde, K.D. &amp; Liu, Z.Y. (2016) Novel Chaetosphaeriaceous Hyphomycetes from aquatic habitats. <em>Mycological Progress</em> 15 (10): 1157–1167. https://doi.org/10.1007/s11557-016-1237-1</p>
<p>Lu, Y.Z., Liu, K.J., Hyde, K.D., Bhat, D.J. &amp; Kang, J.C. (2016) <em>Brunneodinemasporium jonesii</em> and <em>Tainosphaeria jonesii</em> spp. nov. (Chaetosphaeriaceae, Chaetosphaeriales) from southern China. <em>Mycos</em> 7 (9): 1322–1331. https://doi.org/10.5943/mycosphere/7/9/6</p>
<p>Ma, Y.R., Xia, J.W., Gao, J.M., Li, Z. &amp; Zhang, X.G. (2016) <em>Anacacumisporium</em>, a New Genus Based on Morphology and Molecular Analyses from Hainan, China. <em>Cryptogamie Mycologie</em> 37 (1): 45–59. https://doi.org/10.7872/crym/v37.iss1.2016.45</p>
<p>Magyar, D., Shoemaker, R.A., Bobvos, J., Crous, P.W. &amp; Groenewald, J.Z. (2011) <em>Pyrigemmula</em>, a novel hyphomycete genus on grapevine and tree bark. <em>Mycological Progress</em> 10 (3): 307–314. https://doi.org/10.1007/s11557-010-0703-4</p>
<p>Miller, A.N. &amp; Huhndorf, S.M. (2004) A natural classification of <em>Lasiosphaeria</em> based on nuclear LSU rDNA sequences. <em>Mycological Research</em> 108 (1): 26–34. https://doi.org/10.1017/S0953756203008864</p>
<p>Miller, A.N., Huhndorf, S.M. &amp; Fournier, J. (2014) Phylogenetic relationships of five uncommon species of <em>Lasiosphaeria</em> and three new species in the Helminthosphaeriaceae (Sordariomycetes). <em>Mycologia</em> 106 (3): 505–524. https://doi.org/10.3852/13-223</p>
<p>Miller, M.A., Pfeiffer, W. &amp; Schwartz, T. (2010) Creating the CIPRES Science Gateway for inference of large phylogenetic trees. <em>Gateway Computing Environments Workshop (GCE): Louisiana, New Orleans:</em> 1–8. https://doi.org/10.1109/GCE.2010.5676129</p>
<p>Niranjan, M. &amp; Sarma, V.V. (2021) Four novel species of Sordariomycetes from Andaman Islands, India. <em>Kavaka</em> 56: 105–111.</p>
<p>Nylander, J.A.A. (2004) MrModeltest v2 Program Distributed by the Autho. Evol. Biol. Cent. Upps. Univ. Upps. Sweden.</p>
<p>Phookamsak, R., Jiang, H.B., Suwannarach, N., Lumyong, S., Xu, J.C., Xu, S., Liao, C.F. &amp; Chomnunti, P. (2022) Bambusicolous Fungi in Pleosporales: Introducing Four Novel Taxa and a New Habitat Record for <em>Anastomitrabeculia didymospora</em>. <em>Journal of Fungi</em> 6: 630.&nbsp; https://doi.org/10.3390/jof8060630</p>
<p>Phukhamsakda, C., McKenzie, E.H.C., Phillips, A.J.L., Jones, E.B.G., Bhat, D.J., Stadler, M., Bhunjun, C.S., Wanasinghe, D.N., Thongbai, B., Camporesi, E., Ertz, D., Jayawardena, R.S., Perera, R.H., Ekanayake, A.H., Tibpromma, S., Doilom, M., Xu, J.C. &amp; Hyde, K.D. (2020) Microfungi associated with Clematis (Ranunculaceae) with an integrated approach to delimiting species boundaries. <em>Fungal Diversity</em> 102: 1–203. https://doi.org/10.1007/s13225-020-00448-4</p>
<p>Poonyth, A.D., Hyde, K.D., Wong, S.W. &amp; Peerally, A. (2000) Ultrastructure of asci and ascospore appendages in <em>Linocarpon appendiculatum</em> and<em> L. nypae</em>. <em>Botanica Marina</em> 43: 213–221. https://doi.org/10.1515/BOT.2000.023</p>
<p>Prabhugaonkar, A. &amp; Bhat, D.J. (2009) <em>Rattania setulifera</em>, an undescribed endophytic hyphomycete on rattans from Western Ghats, India. <em>Mycotaxon</em> 108 (1): 217–222. https://doi.org/10.5248/108.217</p>
<p>Rambaut, A. (2012) FigTree v1. 4.0. A graphical viewer of phylogenetic trees.</p>
<p>Rannala, B. &amp; Yang, Z. (1996) Probability distribution of molecular evolutionary trees: a new method of phylogenetic inference.<em> Journal of Molecular Evolution</em> 43: 304–311. https://doi.org/10.1007/BF02338839</p>
<p>Réblová, M. &amp; Seifert, K.A. (2007) A new fungal genus, <em>Teracosphaeria</em>, with a phialophora-like anamorph (Sordariomycetes, Ascomycota). <em>Mycological Research</em> 111 (3): 287–298. https://doi.org/10.1016/j.mycres.2006.12.005</p>
<p>Réblova, M. &amp; Winka, K. (2001) Generic concepts an d correlations in Ascomycetes based on molecular and morphological data: <em>Lecythothecium duriligni</em> gen et sp. nov. with a <em>Sporidesmium</em> anamorph, and <em>Ascolacicola austriaca</em> sp. nov.. <em>Mycologia</em> 93 (3): 478–493. https://doi.org/10.2307/3761734</p>
<p>Rehner, S. (2001) Primers for elongation factor 1-α (EF1-α). [http://ocid. NACSE.ORG/research/deephyphae/EF1primer.pdf]</p>
<p>Sabine, M., Huhndorf, A.N., Miller, F.A. &amp; Fernández (2004) Molecular systematics of the sordariales: the order and the family Lasiosphaeriaceae redefined. <em>Mycologia </em>96 (2): 368–387. https://doi.org/10.2307/3762068</p>
<p>Schoch, C.L., Seifert, K.A., Huhndorf, S., Robert, V., Spouge, J.L., Levesque, C.A., Chen, W., Bolchacova, E., Voigt, K., Crous, P.W., Miller, A.N., Wingfield, M.J., Aime, M.C., An, K.-D., Bai, F.-Y., Barreto, R.W., Begerow, D., Bergeron, M.-J., Blackwell, M., Boekhout, T., Bogale, M., Boonyuen, N., Burgaz, A.R., Buyck, B., Cai, L., Cai, Q., Cardinali, G., Chaverri, P., Coppins, B.J., Crespo, A., Cubas, P., Cummings, C., Damm, U., de Beer, Z.W., de Hoog, G.S., Del-Prado, R., Dentinger, B., Dieguez-Uribeondo, J., Divakar, P.K., Douglas, B., Duenas, M., Duong, T.A., Eberhardt, U., Edwards, J.E., Elshahed, M.S., Fliegerova, K., Furtado, M., Garcia, M.A., Ge, Z.-W., Griffith, G.W., Griffiths, K., Groenewald, J.Z., Groenewald, M., Grube, M., Gryzenhout, M., Guo, L.-D., Hagen, F., Hambleton, S., Hamelin, R.C., Hansen, K., Harrold, P., Heller, G., Herrera, C., Hirayama, K., Hirooka, Y., Ho, H.-M., Hoffmann, K., Hofstetter, V., Hognabba, F., Hollingsworth, P.M., Hong, S.-B., Hosaka, K., Houbraken, J., Hughes, K., Huhtinen, S., Hyde, K.D., James, T., Johnson, E.M., Johnson, J.E., Johnston, P.R., Jones, E.B.G., Kelly, L.J., Kirk, P.M., Knapp, D.G., Koljalg, U., Kovacs, G.M., Kurtzman, C.P., Landvik, S., Leavitt, S.D., Liggenstoffer, A.S., Liimatainen, K., Lombard, L., Luangsa-ard, J.J., Lumbsch, H.T., Maganti, H., Maharachchikumbura, S.S.N., Martin, M.P., May, T.W., McTaggart, A.R., Methven, A.S., Meyer, W., Moncalvo, J.-M., Mongkolsamrit, S., Nagy, L.G., Nilsson, R.H., Niskanen, T., Nyilasi, I., Okada, G., Okane, I., Olariaga, I., Otte, J., Papp, T., Park, D., Petkovits, T., Pino-Bodas, R., Quaedvlieg, W., Raja, H.A., Redecker, D., Rintoul, T.L., Ruibal, C., Sarmiento-Ramirez, J.M., Schmitt, I., Schussler, A., Shearer, C., Sotome, K., Stefani, F.O.P., Stenroos, S., Stielow, B., Stockinger, H., Suetrong, S., Suh, S.-O., Sung, G.-H., Suzuki, M., Tanaka, K., Tedersoo, L., Telleria, M.T., Tretter, E., Untereiner, W.A. &amp; Urbina (2012) Nuclear ribosomal internal transcribed spacer (ITS) region as a universal DNA barcode marker for Fungi. <em>Proceedings of the National Academy of Sciences</em> 109 (16): 6241–6246.&nbsp; https://doi.org/10.1073/pnas.1117018109</p>
<p>Senwanna, C., Phookamsak, R., Bahkali, A.H., Elgorban, A.M., Cheewangkoon, R. &amp; Hyde, K.D. (2018) <em>Neolinocarpon phayaoense</em> sp. nov. (Linocarpaceae) from Thailand. <em>Phytotaxa</em> 362 (1): 77–86. https://doi.org/10.11646/phytotaxa.362.1.6</p>
<p>Senanayake, I.C., Bhat, D.J., Cheewangkoon, R. &amp; Ning X. (2020) Bambusicolous <em>Arthrinium</em> Species in Guangdong Province, China. <em>Frontiers in Microbiology</em> 11: 602773.&nbsp; https://doi.org/10.3389/fmicb.2020.602773</p>
<p>Shimokawa, T., Ishida, M., Yoshida, S. &amp; Nojiri, M. (2009) Effects of growth stage on enzymatic saccharification and simultaneous saccharification and fermentation of bamboo shoots for bioethanol production. <em>Bioresource Technology</em> 100: 6651–6654. https://doi.org/10.1016/j.biortech.2009.06.100</p>
<p>Song, X., Zhou, G.M., Jiang, H., Yu, S.Q., Fu, J.H., Li, W.Z., Wang, W.F., Ma, Z.H. &amp; Peng, C.H. (2011) Carbon sequestration by Chinese bamboo forests and their ecological benefits: assessment of potential, problems, and future challenges. <em>Environmental Reviews</em> 19: 418–428. https://doi.org/10.1139/a11-015</p>
<p>Stamatakis, A., Hoover, P. &amp; Rougemont, J. (2008) A rapid bootstrap algorithm for the ML web servers. <em>Systematic biology</em> 57: 758–771.&nbsp; https://doi org/10 1080/10635150802429642</p>
<p>Stamatakis, A. (2006) RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models. <em>Bioinformatics</em> 22 (21): 2688–2690. https://doi.org/10.1093/bioinformatics/btl446</p>
<p>Stamatakis, A. (2014) RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies. <em>Bioinformatics</em> 30 (9): 1312–1313.&nbsp; https://doi.org/10.1093/bioinformatics/btu033</p>
<p>Sydow, H. &amp; Sydow, P. (1917) Beitrag zur Kenntniss der Pilzflora der Philippinen-Inseln. <em>Annales Mycologici</em> 15 (3–4): 165–268.</p>
<p>Tanaka, K., Harada, Y. &amp; Barr, M.E. (2005) Bambusicolous fungi in Japan (3): a new combination, <em>Kalmusia scabrispora</em>. <em>Mycoscience</em> 46 (2): 110–113.</p>
<p>Tanaka, K., Hirayama, K., Yonezawa, H., Hatakeyama, S., Harada, Y., Sano, T., Shirouzu, T. &amp; Hosoya, T. (2009) Molecular taxonomy of bambusicolous fungi: Tetraplosphaeriaceae, a new pleosporalean family with Tetraploa-like anamorphs. <em>Studies in Mycology</em> 64: 175–209.&nbsp; https://doi.org/10.3114/sim.2009.64.10</p>
<p>Thongkantha, S., Lumyong, S., Lumyong, P., Whitton, S., Mckenzie, E. &amp; Hyde, K.D. (2003) Microfungi on the Pandanaceae: <em>Linocarpon lammiae</em> sp. nov.<em> L. siamensis</em> sp. nov. and <em>L.</em> <em>suthepensis</em> sp. nov. are described with a key to <em>Linocarpon</em> species from the Pandanaceae. <em>Mycologia</em> 95 (2): 360–367. https://doi.org/10.1080/15572536.2004.11833122</p>
<p>Traves, D.M. (1954) Collenia frequens in upper proterozoic rocks in the Northern Territory of Australia. <em>Proceedings of the Linnean Society of New South Wales</em> 79: 95–96. [https://biostor.org/reference/68661]</p>
<p>Untereiner, W.A., Débois, V. &amp; Naveau, F.A. (2001) Molecular systematics of the ascomycete genus <em>Farrowia</em> (Chaetomiaceae). <em>Canadian Journal of Botany</em> 79 (3): 321–333. https://doi.org/10.1139/b01-009</p>
<p>Vilgalys, R. &amp; Hester, M. (1990) Rapid genetic identification and mapping of enzymatically amplified ribosomal DNA from several <em>Cryptococcus</em> species. <em>Journal of Bacteriology</em> 172: 4238–4246. https://doi.org/10.1128/jb.172.8.4238-4246.1990</p>
<p>Wei, M.J., Zhang, H., Dong, W., Boonmee, S. &amp; Zhang, D. (2018) Introducing <em>Dictyochaeta aquatica</em> sp. nov. and two new species of <em>Chloridium</em> (Chaetosphaeriaceae, Sordariomycetes) from aquatic habitats. <em>Phytotaxa</em> 362 (2): 187–199. https://doi.org/10.11646/phytotaxa.362.2.5</p>
<p>White, T.J., Bruns, T., Lee, S.J.W.T. &amp; Taylor, J.W. (1990) Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. <em>PCR protocols: a guide to methods and applications</em> 18: 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1</p>
<p>Wijayawardene, N.N., Hyde, K.D., Al-Ani, L.K.T., Tedersoo, L., Haelewaters, D., Rajeshkumar, K.C., Zhao, R.L., Aptroot, A., Leontyev, D.V., Saxena, R.K., Tokarev, Y.S., Dai, D.Q., Letcher, P.M., Stephenson, S.L., Ertz, D., Lumbsch, H.T., Kukwa, M., Issi, I.V., Madrid, H., Phillips, A.J.L., Selbmann, L., Pfliegler, W.P., Horváth, E., Bensch, K., Kirk, P.M., Kolaříková, K., Raja, H.A., Radek, R., Papp, V., Dima, B., Ma, J., Malosso, E., Takamatsu, S., Rambold, G., Gannibal, P.B., Triebel, D., Gautam, A.K., Avasthi, S., Suetrong, S., Timdal, E., Fryar, S.C., Delgado, G., Réblová, M., Doilom, M., Dolatabadi, S., Pawłowska, J.Z., Humber, R.A., Kodsueb, R., Sánchez-Castro, I., Goto, B.T., Silva, D.K.A., de Souza, F.A., Oehl, F., da Silva, G.A., Silva, I.R., Błaszkowski, J., Jobim, K., Maia, L.C., Barbosa, F.R., Fiuza, P.O., Divakar, P.K., Shenov, B.D., Castañeda-Ruiz, R.F., Somrithipol, S., Lateef, A.A., Karunarathna, S.C., Tibpromma, S., Mortimer, P.E., Wanasinghe, D.N., Phookamsak, R., Xu, J., Wang, Y., Tian, F., Alvarado, P., Li, D.W., Kušan, I., Matočec, N., Mešić, A., Tkalčec, Z., Maharachchikumbura, S.S.N., Papizadeh, M., Heredia, G., Wartchow, F., Bakhshi, M., Boehm, E., Youssef, N., Hustad, V.P., Lawrey, J.D., Santiago, A.L.C.M.A., Bezerra, J.D.P., Souza-Motta, C.M., Firmino, A.L., Tian, Q., Houbraken, J., Hongsanan, S., Tanaka, K., Dissanayake, A.J., Monteiro, J.S., Grossart, H.P., Suija, A., Weerakoon, G., Etayo, J., Tsurykau, A., Vázquez, V., Mungai, P., Damm, U., Li, Q.R., Zhang, H., Boonmee, S., Lu, Y.Z., Becerra, A.G., Kendrick, B., Brearley, F.Q., Motiejūnaitė, J., Sharma, B., Khare, R., Gaikwad, S., Wijesundara, D.S.A., Tang, L.Z., He, M.Q., Flakus, A., Rodriguez-Flakus, P., Zhurbenko, M.P., McKenzie, E.H.C., Stadler, M., Bhat, D.J., Liu, J.K., Raza, M., Jeewon, R., Nassonova, E.S., Prieto, M., Jayalal, R.G.U., Erdoğdu, M., Yurkov, A., Schnittler, M., Shchepin, O.N., Novozhilov, Y.K., Silva-Filho, A.G.S., Gentekaki, E., Liu, P., Cavender, J.C., Kang, Y., Mohammad, S., Zhang, L.F., Xu, R.F., Li, Y.M., Dayarathne, M.C., Ekanayaka, A.H., Wen, T.C., Deng, C.Y., Pereira, O.L., Navathe, S., Hawksworth, D.L., Fan, X.L., Dissanayake, L.S., Kuhnert, E., Grossart. H.P. &amp; Thines, M. (2020) Outline of Fungi and fungi-like taxa. <em>Mycosphere</em> 11 (1): 1060–1456. https://doi.org/10.5943/mycosphere/11/1/8</p>
<p>Wijayawardene, N.N., Hyde, K.D., Dai, D.Q., Sanchez-Garcia, M., Goto, B.T., Saxena, R.K., Erdogdu, M., Selçuk, F., Rajeshkumar, K.C., Aptroot, A., Błaszkowski, J., Boonyuen, N., da Silva, G.A., de Souza, F.A., Dong, W., Ertz, D., Haelewaters, D., Jones, E.B.G., Karunarathna, S.C., Kirk, P.M., Kukwa, M., Kumla, J., Leontyev, D.V., Lumbsch, H.T., Maharachchikumbura, S.S.N., Marguno, F., Martínez-Rodríguez, P., Mešić, A., Monteiro, J.S., Oehl, F., Pawłowska, J., Pem, D., Pfliegler, W.P., Phillips, A.J.L., Pošta, A., He, M.Q., Li, J.X., Raza, M., Sruthi, O.P., Suetrong, S., Suwannarach, N., Tedersoo, L., Thiyagaraja, V., Tibpromma, S., Tkalčec, Z., Tokarev, Y.S., Wanasinghe, D.N., Wijesundara, D.S.A., Wimalaseana, S.D.M.K., Madrid, H., Zhang, G.Q., Gao, Y., Sánchez-Castro., Tang, L.Z., Stadler, M., Yurkov, A. &amp; Thines, M. (2022) Outline of Fungi and fungus-like taxa-2021. <em>Mycosphere</em> 13: 55–453. https://doi.org/10.5943/mycosphere/13/1/2</p>
<p>Wysocki, W.P., Clark, L.G., Attigala, L., Ruiz-Sanchez, E. &amp; Duvall, M.R. (2015) Evolution of the bamboos (Bambusoideae; Poaceae): a full plastome phylogenomic analysis. <em>BMC Evolutionary Biology</em> 15 (1): 1–12.&nbsp; https://doi.org/10.1186/s12862-015-0321-5</p>
<p>Xu, X.L., Yang, C.L., Jeewon, R., Wanasinghe, D.N., Liu X.L. &amp; Xiao, Q.G. (2020) Morpho-molecular diversity of Linocarpaceae (chaetosphaeriales):<em> Claviformispora</em> gen. nov. from decaying branches of <em>Phyllostachys</em> <em>heteroclada</em>. <em>MycoKeys</em> 69 (4): 113–129. https://doi.org/10.3897/mycokeys.69.54231</p>
<p>Yang, J., Liu, N.G., Liu, J.K., Hyde, K.D., Jones, E.B.G. &amp; Liu, Z.Y. (2018) Phylogenetic placement of <em>Cryptophiale</em>, <em>Cryptophialoidea</em>, <em>Nawawia</em>, <em>Neonawawia</em> gen. nov. and <em>Phialosporostilbe</em>. <em>Mycosphere</em> 9 (6): 1132–1150. https://doi.org/10.5943/mycosphere/9/6/5</p>
<p>Zelski, S.E., Balto, J.A., Do, C., Raja, H.A., Miller, A.N. &amp; Shearer, C.A. (2014) Some dematiaceous freshwater microfungi from Perú and their previously unknown phylogenetic relationships based on 28S nrDNA. <em>IMA Fungus</em> 5 (2): 425–438. https://doi.org/10.5598/imafungus.2014.05.02.07</p>
<p>Zeng, Q., Lv, Y.C., Xu, X.L., Deng, Y., Wang, F.H., Liu, S.Y., Liu, L.J., Yang, C.L. &amp; Liu, Y.G. (2022) Morpho-Molecular Characterization of Microfungi Associated with P<em>hyllostachys</em> (Poaceae) in Sichuan, China.<em> Journal of Fungi</em> 8 (7): 702.&nbsp; https://doi.org/10.3390/jof8070702</p>
<p>Zhang, L.Q. &amp; Wang, X.G. (1999) Fungus resource of bamboos in China. <em>Journal of Bamboo Research</em> 18: 66–72.</p>
<p>Zhaxybayeva, O. &amp; Gogarten, J.P. (2002) Bootstrap, Bayesian probability and maximum likelihood mapping: exploring new tools for comparative genome analyses. <em>BMC Genomics</em> 3 (1): 4. https://doi.org/10.1186/1471-2164-3-4</p>
<p>Zhou, D. &amp; Hyde, K.D. (2001) Host-specificity, host-exclusivity, and hostrecurrence in saprobic fungi. <em>Mycological Research </em>105: 1449–1457. https://doi.org/10.1017/S0953756201004713</p>
<p>Zhou, G.M., Meng, C.F., Jiang, P.K. &amp; Xu, Q.F. (2011) Review of carbon fixation in bamboo forests in china. <em>The Botanical Review </em>77 (3): 262–270. https://doi.org/10.1007/s12229-011-9082-z</p>