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Fungal Planet description sheets: 1182-1283

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Crous, P. W., Cowan, D. A., Maggs‐Kölling, G., Yilmaz, N., Thangavel, R., Wingfield, M. J., Noordeloos, M. E., Dima, B., Brandrud, T. E., Jansen, G. M., Morozova, O. V., Vila, J., Shivas, R. G., Tan, Y. P., Bishop‐Hurley, S., Lacey, E., Marney, T. S., Larsson, E., Le Floch, G., Lombard, L., Nodet, P., Hubka, V., Alvarado, P., Berraf‐Tebbal, A., Reyes, J. D., Delgado, G., Eichmeier, A., Jordal, J. B., Kachalkin, A. V., Kubátová, A., Maciá‐Vicente, J. G., Malysheva, E. F., Papp, V., Rajeshkumar, K. C., Sharma, A., Spetik, M., Szabóová, D., Tomashevskaya, M. A., Abad, J. A., Abad, Z. G., Alexandrova, A. V., Anand, G., Arenas, F., Ashtekar, N., Balashov, S., Bañares, Á., Baroncelli, R., Bera, I., Biketova, A. Y., Blomquist, C. L., Boekhout, T., Boertmann, D., Bulyonkova, T. M., Burgess, T. I., Carnegie, A. J., Cobo‐Diaz, J. F., Corriol, G., Cunnington, J. H., da Cruz, M. O., Damm, U., Davoodian, N., de A. Santiago, A. L. C. M., Dearnaley, J., de Freitas, L. W. S., Dhileepan, K., Dimitrov, R., Di Piazza, S., Fatima, S., Fuljer, F., Galera, H., Ghosh, A., Giraldo, A., Glushakova, A. M., Gorczak, M., Gouliamova, D. E., Gramaje, D., Groenewald, M., Gunsch, C. K., Gutiérrez, A., Holdom, D. G., Houbraken, J., Ismailov, A. B., Istel, Ł., Iturriaga, T., Jeppson, M., Jurjević, Ž., Kalinina, L. B., Kapitonov, V. I., Kautmanova, I., Khalid, A. N., Kiran, M., Kiss, L., Kovács, Á., Kurose, D., Kusan, I., Lad, S., Læssøe, T., Lee, H. B., Luangsa‐ard, J. J., Lynch, M., Mahamedi, A. E., Malysheva, V. F., Mateos, A., Matočec, N., Mešić, A., Miller, A. N., Mongkolsamrit, S., Moreno, G., Morte, A., Mostowfizadeh‐Ghalamfarsa, R., Naseer, A., Navarro‐Ródenas, A., Nguyen, T. T. T., Noisripoom, W., Ntandu, J. E., Nuytinck, J., Ostrý, V., Pankratov, T. A., Pawłowska, J., Pecenka, J., Pham, T. H. G., Polhorský, A., Posta, A., Raudabaugh, D. B., Reschke, K., Rodríguez, A., Romero, M., Rooney‐Latham, S., Roux, J., Sandoval‐Denis, M., Smith, M. T., Steinrucken, T. V., Svetasheva, T. Y., Tkalčec, Z., van der Linde, E. J., v.d. Vegte, M., Vauras, J., Verbeken, A., Visagie, C. M., Vitelli, J. S., Volobuev, S. V., Weill, A., Wrzosek, M., Zmitrovich, I. V., Zvyagina, E. A. and Groenewald, J. Z. (2021) Fungal Planet description sheets: 1182-1283. Persoonia - Molecular Phylogeny and Evolution of Fungi, 46 (1). pp. 313-528.

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Article Link(s): https://doi.org/10.3767/persoonia.2021.46.11

Publisher URL: https://www.ingentaconnect.com/content/nhn/pimj/2021/00000046/00000001/art00011https://doi.org/10.3767/persoonia.2021.46.11

Abstract

Novel species of fungi described in this study include those from various countries as follows: <b>Algeria</b>, <i>Phaeoacremonium adelophialidum</i> from <i>Vitis vinifera</i>. <b>Antarctica</b>, <i>Comoclathris antarctica</i> from soil. <b>Australia</b>, <i>Coniochaeta salicifolia</i> as endophyte from healthy leaves of <i>Geijera salicifolia</i>, <i>Eremothecium peggii</i> in fruit of <i>Citrus australis</i>, <i>Microdochium ratticaudae</i> from stem of <i>Sporobolus natalensis</i>, <i>Neocelosporium corymbiae</i> on stems of <i>Corymbia variegata</i>, <i>Phytophthora kelmanii</i> from rhizosphere soil of <i>Ptilotus pyramidatus</i>, <i>Pseudosydowia backhousiae</i> on living leaves of <i>Backhousia citriodora</i>, <i>Pseudosydowia indoor oopillyensis</i>, <i>Pseudosydowia louisecottisiae</i> and <i>Pseudosydowia queenslandica</i> on living leaves of <i> Eucalyptus</i> sp. <b>Brazil</b>, <i>Absidia montepascoalis</i> from soil. <b>Chile</b>, <i>Ilyonectria zarorii</i> from soil under <i>Maytenus boaria</i>. <b>Costa Rica</b>, <i>Colletotrichum filicis</i> from an unidentified fern. <b>Croatia</b>, <i>Mollisia endogranulata</i> on deteriorated hardwood. <b>Czech Republic</b>, <i>Arcopilus navicularis</i> from tea bag with fruit tea, <i>Neosetophoma buxi</i> as endophyte from <i>Buxus sempervirens</i>, <i>Xerochrysium bohemicum</i> on surface of biscuits with chocolate glaze and filled with jam. <b>France</b>, <i>Entoloma cyaneobasale</i> on basic to calcareous soil, <i>Fusarium aconidiale</i> from <i>Triticum aestivum</i>, <i>Fusarium juglandicola</i> from buds of <i>Juglans regia</i>. <b>Germany</b>, <i>Tetraploa endophytica</i> as endophyte from <i>Microthlaspi perfoliatum</i> roots. <b>India</b>, <i>Castanediella ambae</i> on leaves of <i>Mangifera indica</i>, <i>Lactifluus kanadii</i> on soil under <i>Castanopsis</i> sp., <i>Penicillium uttarakhandense</i> from soil. <b>Italy</b>, <i>Penicillium ferraniaense </i> from compost. <b>Namibia</b>, <i>Bezerromyces gobabebensis</i> on leaves of unidentified succulent, <i>Cladosporium stipagrostidicola</i> on leaves of <i>Stipagrostis</i> sp., <i>Cymostachys euphorbiae</i> on leaves of <i>Euphorbia</i> sp., <i>Deniquelata hypolithi</i> from hypolith under a rock, <i>Hysterobrevium walvisbayicola</i> on leaves of unidentified tree, <i>Knufia hypolithi</i> and <i>Knufia walvisbayicola</i> from hypolith under a rock, <i>Lapidomyces stipagrostidicola</i> on leaves of <i>Stipagrostis</i> sp., <i>Nothophaeotheca mirabibensis</i> (incl. <i>Nothophaeotheca</i> gen. nov.) on persistent inflorescence remains of <i>Blepharis obmitrata</i>, <i>Paramyrothecium salvadorae</i> on twigs of <i>Salvadora persica</i>, <i>Preussia procaviicola</i> on dung of <i>Procavia</i> sp., <i>Sordaria equicola</i> on zebra dung, <i>Volutella salvadorae</i> on stems of <i>Salvadora persica</i>. <b>Netherlands</b>, <i>Entoloma ammophilum</i> on sandy soil, <i>Entoloma pseudocruentatum</i> on nutrient poor(acid)soil, <i>Entoloma pudens</i> on plant debris, amongst grasses. <b>New Zealand</b>, <i>Amorocoelophoma neoregeliae</i> from leaf spots of <i>Neoregelia</i> sp., <i>Aquilomyces metrosideri</i> and <i>Septoriella callistemonis</i> from stem discolouration and leaf spots of <i>Metrosideros</i> sp., <i>Cadophora neoregeliae</i> from leaf spots of <i>Neoregelia</i> sp., <i>Flexuomyces asteliae</i> (incl. <i>Flexuomyces</i> gen. nov.) and <i>Mollisia asteliae</i> from leaf spots of <i>Astelia chathamica</i>, <i>Ophioceras freycinetiae</i> from leaf spots of <i>Freycinetia banksii</i>, <i>Phaeosphaeria caricis-sectae</i> from leaf spots of <i>Carex secta</i>. <b>Norway</b>, <i>Cuphophyllus flavipesoides</i> on soil in semi-natural grassland, <i>Entoloma coracis</i> on soil in calcareous <i>Pinus</i> and <i>Tilia</i> forests, <i> Entoloma cyaneolilacinum</i> on soil semi-natural grasslands, <i>Inocybe norvegica</i> on gravelly soil. <b>Pakistan</b>, <i>Butyriboletus parachinarensis</i> on soil in association with <i>Quercus baloot</i>. <b>Poland</b>, <i>Hyalodendriella bialowiezensis </i> on debris be eath fallen bark of Norway spruce <i>Picea abies</i>. <b>Russia</b>, <i>Bolbitius sibiricus</i> on a moss covered rotting trunk of <i>Populus tremula</i>, <i>Crepidotus wasseri</i> on debris of <i>Populus tremula</i>, <i>Entoloma isborscanum</i> on soil on calcareous grasslands, <i>Entoloma subcoracis</i> on soil in subalpine grasslands, <i>Hydropus lecythiocystis</i> on rotted wood of <i>Betula pendula</i>, <i>Meruliopsis faginea</i> on fallen dead branches of <i>Fagus orientalis</i>, <i>Metschnikowia taurica</i> from fruits of <i>Ziziphus jujube</i>, <i>Suillus praetermissus</i> on soil, <i>Teunia lichenophila</i> as endophyte from <i>Cladonia rangiferina</i>. <b>Slovakia</b>, <i>Hygrocybe fulgens</i> on mowed grassland, <i>Pleuroflammula pannonica</i> from corticated branches of <i>Quercus </i> sp. <b>South Africa</b>, <i>Acrodontium burrowsianum</i> on leaves of unidentified <i>Poaceae</i>, <i>Castanediella senegaliae</i> on dead pods of <i>Senegalia ataxacantha</i>, <i>Cladophialophora behniae</i> on leaves of <i>Behnia</i> sp., <i>Colletotrichum cliviigenum</i> on leaves of <i>Clivia</i> sp., <i>Diatrype dalbergiae</i> on bark of <i>Dalbergia armata</i>, <i>Falcocladium heteropyxidicola</i> on leaves of <i>Heteropyxis canescens</i>, <i>Lapidomyces aloidendricola</i> as epiphyte on brown stem of <i>Aloidendron dichotomum</i>, <i>Lasionectria sansevieriae</i> and <i>Phaeosphaeriopsis sansevieriae</i> on leaves of <i>Sansevieria hyacinthoides</i>, <i>Lylea dalbergiae</i> on <i>Diatrype dalbergiae</i> on bark of <i>Dalbergia armata</i>, <i>Neochaetothyrina syzygii</i> (incl. <i>Neochaetothyrina</i> gen. nov.) on leaves of <i>Syzygium chordatum</i>, <i>Nothophaeomoniella ekebergiae</i> (incl. <i>Nothophaeomoniella</i> gen. nov.) on leaves of <i>Ekebergia pterophylla</i>, <i>Paracymostachys euphorbiae</i> (incl. <i>Paracymostachys</i> gen. nov.)on leaf litter of <i>Euphorbia ingens</i>, <i>Paramycosphaerella pterocarpi</i> on leaves of <i>Pterocarpus angolensis</i>, <i>Paramycosphaerella syzygii</i> on leaf litter of <i>Syzygium chordatum</i>, <i>Parateichospora phoenicicola </i> (incl. <i>Parateichospora</i> gen. nov.)on leaves of <i>Phoenix reclinata</i>, <i>Seiridium syzygii</i> on twigs of <i>Syzygium chordatum</i>, <i>Setophoma syzygii</i> on leaves of <i>Syzygium</i> sp., <i>Starmerella xylocopis</i> from larval feed of an Afrotropical bee <i>Xylocopa caffra</i>, <i>Teratosphaeria combreti</i> on leaf litter of <i>Combretum kraussii</i>, <i>Teratosphaericola leucadendri</i> on leaves of <i>Leucadendron</i> sp., <i>Toxicocladosporium pterocarpi</i> on pods of <i>Pterocarpus angolensis</i>. <b>Spain</b>, <i>Cortinarius bonachei</i> with <i>Quercus ilex</i> in calcareus soils, <i>Cortinarius brunneovolvatus</i> under <i>Quercus ilex</i> subsp. <i>ballota</i> in calcareous soil, <i>Extremopsis radicicola</i> (incl. <i>Extremopsis</i> gen. nov.) from root-associated soil in a wet heathland, <i>Russula quintanensis</i> on acidic soils, <i>Tubaria vulcanica</i> on volcanic lapilii material, <i>Tuber zambonelliae</i> in calcareus soil. <b>Sweden</b>, <i>Elaphomyces borealis</i> on soil under <i>Pinus sylvestris</i> and <i>Betula pubescens</i>. <b>Tanzania</b>, <i>Curvularia tanzanica</i> on inflorescence of <i>Cyperus aromaticus</i>. <b>Thailand</b>, <i>Simplicillium niveum</i> on <i>Ophiocordyceps camponoti-leonardi</i> on under side of unidentified dicotyledonous leaf. <b>USA</b>, <i>Calonectria californiensis</i> on leaves of <i>Umbellularia californica</i>, <i>Exophiala spartinae</i> from surface sterilised roots of <i>Spartina alterniflora</i>, <i>Neophaeococcomyces oklahomaensis</i> from outside wall of alcohol distillery. <b>Vietnam</b>, <i>Fistulinella aurantioflava</i> on soil. Morphological and culture characteristics are supported by DNA barcodes.

Item Type:Article
Business groups:Biosecurity Queensland
Keywords:SYSTEMATICS LSU ITS nrDNA BARCODES NEW TAXA
Subjects:Science > Botany > Genetics
Deposited On:03 Nov 2022 22:50
Last Modified:03 Nov 2022 22:50

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