Skip to main content Skip to main navigation menu Skip to site footer
Type: Article
Published: 2021-06-25
Page range: 93–105
Abstract views: 28
PDF downloaded: 1

Pestalotiopsis abietis sp. nov. from Abies fargesii in China

The Key Laboratory for Silviculture and Conservation of the Ministry of Education, Beijing Forestry University, Beijing 100083, China
Beihai Park, Beijing 100034, China
Beijing Ming Tombs Forest Centre, Beijing 100085, China
The Key Laboratory for Silviculture and Conservation of the Ministry of Education, Beijing Forestry University, Beijing 100083, China
The Key Laboratory for Silviculture and Conservation of the Ministry of Education, Beijing Forestry University, Beijing 100083, China
1 new species Phylogeny Sporocadaceae Taxonomy Fungi

Abstract

Pestalotiopsis is a common genus worldwide and causes diseases on many plant hosts. During our investigation on plant diseases in Qinling Mountain in China, Pestalotiopsis species on needles of Abies fargesii was discovered. Based on the phylogeny of combined ITS, TEF and TUB genes, three Pestalotiopsis isolates from present study cluster into a distinct clade close to P. parva in the genus. However, conidia of Pestalotiopsis abietis are obviously larger than those from P. parva. Hence, Pestalotiopsis abietis sp. nov. is introduced herein.

References

<p>Akinsanmi, O.A., Nisa, S., Jeff-Ego, O.S., Shivas, R.G. &amp; Drenth, A. (2017) Dry flower disease of <em>Macadamia</em> in Australia caused by <em>Neopestalotiopsis</em> <em>macadamiae</em> <em>sp. nov.</em> and <em>Pestalotiopsis macadamiae</em> <em>sp. nov.</em> <em>Plant disease</em> 101 (1): 45–53. https://doi.org/10.1094/PDIS-05-16-0630-RE</p>
<p>Alves A, Crous P.W., Correia A. &amp; Phillips A.J.L. (2008) Morphological and molecular data reveal cryptic speciation in <em>Lasiodiplodia theobromae</em>. <em>Fungal Diversity </em>28: 1–13.</p>
<p>Bate-Smith, E.C. &amp; Metcalfe, C.R. (1957) Leuco-anthocyanins. 3. the nature and systematic distribution of tannins in dicotyledonous plants. <em>Botanical Journal of the Linnean Society </em>55 (362): 669–705. https://doi.org/10.1111/j.1095-8339.1957.tb00030.x</p>
<p>Crous, P.W., Gams, W., Stalpers, J.A., Robert, V. &amp; Stegehuis, G. (2004) Mycobank: an online initiative to launch mycology into the 21st century. <em>Studies in Mycology</em> 50: 19–22.</p>
<p>Dang, H., Zhang, Y., Zhang, Y., Zhang, K. &amp; Zhang, Q. (2015) Variability and rapid response of subalpine fir (<em>Abies fargesii</em>) to climate warming at upper altitudinal limits in north-central China. <em>Trees </em>29 (3): 785–795. https://doi.org/10.1007/s00468-015-1156-9</p>
<p>Das, R., Chutia, M., Das, K. &amp; Jha, D.K. (2010) Factors affecting sporulation of <em>Pestalotiopsis disseminat</em>a causing grey blight disease of <em>Persea bombycina</em> Kost., the primary food plant of muga silkworm. <em>Crop Protection</em> 29 (9): 963–968. https://doi.org/10.1016/j.cropro.2010.05.012</p>
<p>Doyle, J.J. &amp; Doyle, J.L. (1990) Isolation of plant DNA from fresh tissue. <em>Focus</em> 12 (13): 39–40.</p>
<p>Felsenstein, J. (1985) Confidence limits on phylogenies: An approach using the bootstrap. <em>Evolution</em> 39: 783–791. https://doi.org/10.1111/j.1558-5646.1985.tb00420.x</p>
<p>Fu, L., Chen, T., Lang, K. &amp; Hong T (2000) <em>The Higher Plants of China</em>, Volume 3. Qingdao Ocean Press, pp. 21–22.</p>
<p>Glass, N.L. &amp; Donaldson, G. C. (1995) Development of primer sets designed for use with the PCR to amplify conserved genes from filamentous ascomycetes. <em>Applied and Environmental Microbiology</em> 61 (4): 1323–1330. https://doi.org/10.1128/AEM.61.4.1323-1330.1995</p>
<p>Geng, K., Zhang, B., Song, Y., Hyde, K.D., Kang, J.C. &amp; Wang, Y. (2013) A new species of <em>Pestalotiopsis</em> from leaf spots of <em>Licuala grandis</em> from Hainan, China. <em>Phytotaxa</em> 88 (3): 49–54.&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; https://doi.org/10.11646/phytotaxa.88.3.2</p>
<p>Guba, E.F. (1961) <em>Monograph of Monochaetia and Pestalotia.</em> Harvard University Press, Cambridge. https://doi.org/10.2307/3755860</p>
<p>Guindon, S., Dufayard, J.F., Lefort, V., Anisimova, M., Hordijk, W. &amp; Gascuel, O. (2010) New algorithms and methods to estimate maximum-likelihood phylogenies: assessing the performance of PhyML 3.0. <em>Systematic Biology</em> 59 (3): 307–321. https://doi.org/10.1093/sysbio/syq010</p>
<p>Hu, H., Jeewon, R., Zhou, D., Zhou, T. &amp; Hyde, K. D. (2007) Phylogenetic diversity of endophytic <em>Pestalotiopsis</em> species in <em>Pinus armandii</em> and <em>Ribes</em> spp.: evidence from rDNA and β-tubulin gene phylogenies. <em>Fungal Diversity</em> 24: 1–21.</p>
<p>Hyde, K.D., Hongsanan, S., Jeewon, R., Bhat, D.J., Mckenzie, E.H.C., Gareth, J.E.B., Phookamsak, R., Ariyawansa, H.A., Boonmee, S., Zhao, Q., Abdel-Aziz, F.A., Abdel-Waha, M.A., Banmai, S., Chomnunti, P., Cui, B.K., Daranagama, D., Das, K., Dayarathne, M.C., Silva, N.I.D., Dissanayake, A.J., Doilom, M., Ekanayaka, A.H., Gibertoni, T.B., Es-Neto, A.T.G., Huang, S.K., Jayasiri, S.C., Jayawardena, R.S., Konta, S., Lee, H.B., Li, W.J., Lin, C.G., Liu, J.K., Lu, Y.Z., Luo, Z.L., Manawasinghe, I.S., Manimohan, P., Mapook, A., Niskanen, T., Norphanphoun, C., Papizadeh, M., Perera, R.H., Phukhamsakda, C., Richter, C., Santiago, A.L.C.M.D.A., Drechsler-Santos, E.R., Senanayake, I.C. &amp; Tanaka, K. (2016) Fungal diversity notes 367–490: taxonomic and phylogenetic contributions to fungal taxa. <em>Fungal Diversity</em> 80: 1–270. https://doi.org/10.1007/s13225-016-0373-x</p>
<p>Jaklitsch, W.M., Gardiennet, A. &amp; Voglmayr, H. (2016) Resolution of morphology-based taxonomic delusions: <em>Acrocordiella</em>, <em>Basiseptospora</em>, <em>Blogiascospora</em>, <em>Clypeosphaeria</em>, <em>Hymenopleella</em>, <em>Lepteutypa</em>, <em>Pseudapiospora</em>, <em>Requienella</em>, <em>Seiridium</em> and <em>Strickeria</em>. <em>Persoonia</em> 37: 82–105. https://doi.org/10.3767/003158516X690475</p>
<p>Katoh, K. &amp; Toh, H. (2010) Parallelization of the MAFFT multiple sequence alignment program. <em>Bioinformatics </em>26 (15): 1899–1900. https://doi.org/10.1093/bioinformatics/btq224</p>
<p>Kohlmeyer, J. &amp; Volkmann-Kohlmeyer, B. (2001) Fungi on <em>Juncus roemerianus</em>. 16. More new Coelomycetes, including <em>Tetranacriella</em>, gen. nov. <em>Botanica Marina </em>44 (2): 147–156. https://doi.org/10.1515/BOT.2001.020</p>
<p>Li, G.J., Hyde, KD., Zhao, R.L., Hongsanan, S., Abdel-Aziz, F.A., Abdel-Wahab, M.A., Alvarado, P., Alves-Silva, G., Ammirati, J.F., Ariyawansa, H.A., Baghela, A., Bahkali, A.H., Beug, M., Bhat, D.J., Bojantchev, D., Boonpratuang, T., Bulgakov, T.S., Camporesi, E., Boro, M.C., Ceska, O., Chakraborty, D., Chen, J.J., Chethana, K.W.T., Chomnunti, P., Consiglio, G., Cui, B.K., Dai, D.Q., Dai, Y.C., Daranagama, D.A., Das, K., Dayarathne, M.C., de Crop, E., de Oliveira, R.J.V., de Souza, C.A.F, de Souza, J.I., Dentinger, B.T.M., Dissanayake, A.J., Doilom, M., Drechsler-Santos, E.R., Ghobad-Nejhad, M., Gilmore, S.P. &amp; Góes-Neto, A. (2016) Fungal diversity notes 253–366: taxonomic and phylogenetic contributions to fungal taxa. <em>Fungal diversity</em> 78 (1): 1–237. https://doi.org/10.1007/s13225-016-0366-9</p>
<p>Liu, F., Hou, L., Raza, M. &amp; Cai, L. (2017) <em>Pestalotiopsis</em> and allied genera from <em>Camellia</em>, with description of 11 new species from China. <em>Scientific Reports </em>7 (1): 1–19. https://doi.org/10.1038/s41598-017-00972-5</p>
<p>Liu, J.K., Hyde, K.D., E.B.G. Jones, Ariyawansa, H.A., Bhat, J.D., Boonmee, S., Maharachchikumbura, S., 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., Dai, Y., Daranagama, D.A., Dissanayake, A., Doilom, M., D’souza, M.J., Fan, X.L., Goonasekara, I.D., Hirayama, K., Hongsanan, S., Jayasiri, S.C., Jayawardena, R., Karunarathna, S.C., Li, W.J., Mapook, A., Norphanphoun, C., Pang, K.L., Perera, R.H., Peršoh, D., Pinruan, U., Senanayake, I., Somrithipol, S., Suetrong, S., Tanaka, K., Thambugala, K.M., Tian, Q., Tibpromma, S., Udayanga, D., Wijayawardene, N., Wanasinghe, D., Wisitrassameewong, K., Abdel-Aziz, F.A., Adamčík, 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, X.X., Liu, Z.Y., Matumura, M., Mortimer, P.E., Rambold, G., Randrianjohany, E., Sato, G., Indrasutdhi, V.S., Tian, C.M., Verbeken, A., von Brackel, W., Wang, Y., Wen, T.C., Xu, J.C., Yan, J.Y., Zhao, R.L. &amp; Camporesi, E. (2015) Fungal diversity notes 1–110: 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>Maharachchikumbura, S.S., Guo, L.D., Chukeatirote, E., Bahkali, A.H. &amp; Hyde, K.D. (2011) <em>Pestalotiopsis</em>—morphology, phylogeny, biochemistry and diversity. <em>Fungal Diversity</em> 50 (1): 167–187. https://doi.org/10.1007/s13225-011-0125-x</p>
<p>Maharachchikumbura, S.S.N., Guo, L.D., Cai, L., Chukeatirote, E., Wu, W.P., Sun, X., Crous, P.W., Bhat, D.J., McKenzie, E.H.C., Bahkali, A.H. &amp; Hyde, K.D. (2012) A multi-locus backbone tree for <em>Pestalotiopsis</em>, with a polyphasic characterization of 14 new species. <em>Fungal Diversity</em> 56 (1): 95–129. https://doi.org/10.1007/s13225-012-0198-1</p>
<p>Maharachchikumbura, S.S., Zhang, Y.M., Wang, Y. &amp; Hyde, K.D. (2013) <em>Pestalotiopsis anacardiacearum</em> <em>sp. nov.</em> Amphisphaeriaceae has an intricate relationship with <em>Penicillaria jocosatrix</em>, the mango tip borer. <em>Phytotax</em> 99 (2): 49–57. https://doi.org/10.11646/phytotaxa.99.2.1</p>
<p>Maharachchikumbura, S.S., Guo, L.D., Chukeatirote, E. &amp; Hyde, K.D. (2014a) Improving the backbone tree for the genus <em>Pestalotiopsis</em>; addition of <em>P. steyaertii</em> and<em> P. magna</em> <em>sp. nov. Mycological Progress </em>13 (3): 617–624. https://doi.org/10.1007/s11557-013-0944-0</p>
<p>Maharachchikumbura, S.S., Hyde, K.D., Groenewald, J.Z., Xu, J. &amp; Crous, P.W. (2014b) <em>Pestalotiopsis</em> revisited. <em>Studies in Mycology</em> 79: 121–186. https://doi.org/10.1016/j.simyco.2014.09.005</p>
<p>O’Donnell, K. &amp; Cigelnik, E. (1997) Two divergent intragenomic rDNA ITS2 types within a monophyletic lineage of the fungus <em>Fusarium </em>are nonorthologous. <em>Molecular Phylogenetics and Evolution</em> 7: 103–116. https://doi.org/10.1006/mpev.1996.0376</p>
<p>Rannala, B., 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>Ronquist, F. &amp; Huelsenbeck, J.P. (2003) MrBayes 3: Bayesian phylogenetic inference under mixed models. <em>Bioinformatics</em> 19 (12): 1572–1574. https://doi.org/10.1093/bioinformatics/btg180</p>
<p>Silva, A.C., Diogo, E., Henriques, J., Ramos, A.P., Sandoval-Denis, M., Crous, P.W. &amp; Bragança, H. (2020) <em>Pestalotiopsis pini sp. nov.</em>, an emerging pathogen on stone pine (<em>Pinus pinea</em> L.). <em>Forests</em> 11 (8): 805. https://doi.org/10.3390/f11080805</p>
<p>Song, Y., Geng, K., Hyde, K.D., Zhao, W.S., Wei, J.G., Kang, J.C. &amp; Wang, Y. (2013) Two new species of <em>Pestalotiopsis</em> from Southern China. <em>Phytotaxa</em> 126 (1): 22–32. https://doi.org/10.11646/phytotaxa.126.1.2</p>
<p>Song, Y., Maharachchikumbura, S.S., Jiang, Y.L., Hyde, K.D. &amp; Wang, Y. (2014) <em>Pestalotiopsis keteleeria</em> <em>sp. nov.</em>, isolated from <em>Keteleeria pubescens</em> in China. <em>Chiang Mai Journal of Science</em> 41 (4): 885–893.</p>
<p>Steyaert, R.L. (1949) Contribution a l’etude monographique de <em>Pestalotia</em> de Not. et <em>Monochaetia</em> Sacc. (<em>Truncatella</em> gen. nov. et <em>Pestalotiopsis</em> gen. nov.).<em> Bulletin Jardin Botanique État Bruxelles</em> 19: 285–354. https://doi.org/10.2307/3666710</p>
<p>Swofford, D.L. (2002) Phylogenetic analysis using parsimony (and other methods). Version 4.0 b10.<em> Sunderland, Massachusetts: Sinauer Associates.</em></p>
<p>Tejesvi, M.V., Tamhankar, S.A., Kini, K.R., Rao, V.S. &amp; Prakash, H.S. (2009) Phylogenetic analysis of endophytic <em>Pestalotiopsis</em> species from ethnopharmaceutically important medicinal trees. <em>Fungal Diversity</em> 38: 167–183.</p>
<p>Venkatasubbaiah, P., Grand, L.F. &amp; Van Dyke, C.G. (1991) A new species of <em>Pestalotiopsis</em> on <em>Oenothera</em>. <em>Mycologia</em> 83 (4): 511–513. https://doi.org/10.1080/00275514.1991.12026042</p>
<p>Wei, J.G., Phan, C.K., Wang, L., Xu, T., Luo, J.T., Sun, X. &amp; Guo, L.D. (2013) <em>Pestalotiopsis yunnanensis</em> <em>sp. nov.</em>, an endophyte from <em>Podocarpus macrophyllus</em> (Podocarpaceae) based on morphology and ITS sequence data. <em>Mycological Progress</em> 12 (3): 563–568. https://doi.org/10.1007/s11557-012-0863-5</p>
<p>White, T.J., Bruns, T., Lee, S. &amp; Taylor, J. (1990) Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. <em>PCR Protocols: A Guide to Methods and Applications</em> 18 (1): 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1</p>
<p>Yasuda, F., Kobayashi, T., Watanabe, H. &amp; Izawa, H. (2003) Addition of <em>Pestalotiopsis</em> spp. to leaf spot pathogens of Japanese persimmon. <em>Journal of General Plant Pathology</em> 69 (1): 29–32. https://doi.org/10.1007/s10327-002-0011-1</p>
<p>Zhang, Y., Maharachchikumbura, S.S., Mckenzie, E.H. &amp; Hyde, K.D. (2012) A novel species of <em>Pestalotiopsis</em> causing leaf spots of <em>Trachycarpus fortunei</em>. <em>Cryptogamie Mycologie</em> 33 (3): 311–318. https://doi.org/10.7872/crym.v33.iss3.2012.311</p>
<p>Zhang, Y., Maharachchikumbura, S.S., Tian, Q. &amp; Hyde, K.D. (2013) <em>Pestalotiopsis</em> species on ornamental plants in Yunnan Province, China. <em>Sydowia</em> 65 (1): 113–128.</p>