Fungal Planet description sheets: 868-950.

IF 9.5 1区 生物学 Q1 MYCOLOGY Persoonia Pub Date : 2019-06-01 Epub Date: 2019-07-19 DOI:10.3767/persoonia.2019.42.11
P W Crous, A J Carnegie, M J Wingfield, R Sharma, G Mughini, M E Noordeloos, A Santini, Y S Shouche, J D P Bezerra, B Dima, V Guarnaccia, I Imrefi, Ž Jurjević, D G Knapp, G M Kovács, D Magistà, G Perrone, T Rämä, Y A Rebriev, R G Shivas, S M Singh, C M Souza-Motta, R Thangavel, N N Adhapure, A V Alexandrova, A C Alfenas, R F Alfenas, P Alvarado, A L Alves, D A Andrade, J P Andrade, R N Barbosa, A Barili, C W Barnes, I G Baseia, J-M Bellanger, C Berlanas, A E Bessette, A R Bessette, A Yu Biketova, F S Bomfim, T E Brandrud, K Bransgrove, A C Q Brito, J F Cano-Lira, T Cantillo, A D Cavalcanti, R Cheewangkoon, R S Chikowski, C Conforto, T R L Cordeiro, J D Craine, R Cruz, U Damm, R J V de Oliveira, J T de Souza, H G de Souza, J D W Dearnaley, R A Dimitrov, F Dovana, A Erhard, F Esteve-Raventós, C R Félix, G Ferisin, R A Fernandes, R J Ferreira, L O Ferro, C N Figueiredo, J L Frank, K T L S Freire, D García, J Gené, A Gêsiorska, T B Gibertoni, R A G Gondra, D E Gouliamova, D Gramaje, F Guard, L F P Gusmão, S Haitook, Y Hirooka, J Houbraken, V Hubka, A Inamdar, T Iturriaga, I Iturrieta-González, M Jadan, N Jiang, A Justo, A V Kachalkin, V I Kapitonov, M Karadelev, J Karakehian, T Kasuya, I Kautmanová, J Kruse, I Kušan, T A Kuznetsova, M F Landell, K-H Larsson, H B Lee, D X Lima, C R S Lira, A R Machado, H Madrid, O M C Magalhães, H Majerova, E F Malysheva, R R Mapperson, P A S Marbach, M P Martín, A Martín-Sanz, N Matočec, A R McTaggart, J F Mello, R F R Melo, A Mešić, S J Michereff, A N Miller, A Minoshima, L Molinero-Ruiz, O V Morozova, D Mosoh, M Nabe, R Naik, K Nara, S S Nascimento, R P Neves, I Olariaga, R L Oliveira, T G L Oliveira, T Ono, M E Ordoñez, A de M Ottoni, L M Paiva, F Pancorbo, B Pant, J Pawłowska, S W Peterson, D B Raudabaugh, E Rodríguez-Andrade, E Rubio, K Rusevska, A L C M A Santiago, A C S Santos, C Santos, N A Sazanova, S Shah, J Sharma, B D B Silva, J L Siquier, M S Sonawane, A M Stchigel, T Svetasheva, N Tamakeaw, M T Telleria, P V Tiago, C M Tian, Z Tkalčec, M A Tomashevskaya, H H Truong, M V Vecherskii, C M Visagie, A Vizzini, N Yilmaz, I V Zmitrovich, E A Zvyagina, T Boekhout, T Kehlet, T Læssøe, J Z Groenewald
{"title":"Fungal Planet description sheets: 868-950.","authors":"P W Crous, A J Carnegie, M J Wingfield, R Sharma, G Mughini, M E Noordeloos, A Santini, Y S Shouche, J D P Bezerra, B Dima, V Guarnaccia, I Imrefi, Ž Jurjević, D G Knapp, G M Kovács, D Magistà, G Perrone, T Rämä, Y A Rebriev, R G Shivas, S M Singh, C M Souza-Motta, R Thangavel, N N Adhapure, A V Alexandrova, A C Alfenas, R F Alfenas, P Alvarado, A L Alves, D A Andrade, J P Andrade, R N Barbosa, A Barili, C W Barnes, I G Baseia, J-M Bellanger, C Berlanas, A E Bessette, A R Bessette, A Yu Biketova, F S Bomfim, T E Brandrud, K Bransgrove, A C Q Brito, J F Cano-Lira, T Cantillo, A D Cavalcanti, R Cheewangkoon, R S Chikowski, C Conforto, T R L Cordeiro, J D Craine, R Cruz, U Damm, R J V de Oliveira, J T de Souza, H G de Souza, J D W Dearnaley, R A Dimitrov, F Dovana, A Erhard, F Esteve-Raventós, C R Félix, G Ferisin, R A Fernandes, R J Ferreira, L O Ferro, C N Figueiredo, J L Frank, K T L S Freire, D García, J Gené, A Gêsiorska, T B Gibertoni, R A G Gondra, D E Gouliamova, D Gramaje, F Guard, L F P Gusmão, S Haitook, Y Hirooka, J Houbraken, V Hubka, A Inamdar, T Iturriaga, I Iturrieta-González, M Jadan, N Jiang, A Justo, A V Kachalkin, V I Kapitonov, M Karadelev, J Karakehian, T Kasuya, I Kautmanová, J Kruse, I Kušan, T A Kuznetsova, M F Landell, K-H Larsson, H B Lee, D X Lima, C R S Lira, A R Machado, H Madrid, O M C Magalhães, H Majerova, E F Malysheva, R R Mapperson, P A S Marbach, M P Martín, A Martín-Sanz, N Matočec, A R McTaggart, J F Mello, R F R Melo, A Mešić, S J Michereff, A N Miller, A Minoshima, L Molinero-Ruiz, O V Morozova, D Mosoh, M Nabe, R Naik, K Nara, S S Nascimento, R P Neves, I Olariaga, R L Oliveira, T G L Oliveira, T Ono, M E Ordoñez, A de M Ottoni, L M Paiva, F Pancorbo, B Pant, J Pawłowska, S W Peterson, D B Raudabaugh, E Rodríguez-Andrade, E Rubio, K Rusevska, A L C M A Santiago, A C S Santos, C Santos, N A Sazanova, S Shah, J Sharma, B D B Silva, J L Siquier, M S Sonawane, A M Stchigel, T Svetasheva, N Tamakeaw, M T Telleria, P V Tiago, C M Tian, Z Tkalčec, M A Tomashevskaya, H H Truong, M V Vecherskii, C M Visagie, A Vizzini, N Yilmaz, I V Zmitrovich, E A Zvyagina, T Boekhout, T Kehlet, T Læssøe, J Z Groenewald","doi":"10.3767/persoonia.2019.42.11","DOIUrl":null,"url":null,"abstract":"<p><p>Novel species of fungi described in this study include those from various countries as follows: <b>Australia</b>, <i>Chaetomella pseudocircinoseta</i> and <i>Coniella pseudodiospyri</i> on <i>Eucalyptus microcorys</i> leaves, <i>Cladophialophora eucalypti</i>, <i>Teratosphaeria dunnii</i> and <i>Vermiculariopsiella dunnii</i> on <i>Eucalyptus dunnii</i> leaves, <i>Cylindrium grande</i> and <i>Hypsotheca eucalyptorum</i> on <i>Eucalyptus grandis</i> leaves, <i>Elsinoe salignae</i> on <i>Eucalyptus saligna</i> leaves, <i>Marasmius lebeliae</i> on litter of regenerating subtropical rainforest, <i>Phialoseptomonium eucalypti</i> (incl. <i>Phialoseptomonium</i> gen. nov.) on <i>Eucalyptus grandis</i> × <i>camaldulensis</i> leaves, <i>Phlogicylindrium pawpawense</i> on <i>Eucalyptus tereticornis</i> leaves, <i>Phyllosticta longicauda</i> as an endophyte from healthy <i>Eustrephus latifolius</i> leaves, <i>Pseudosydowia eucalyptorum</i> on <i>Eucalyptus</i> sp. leaves, <i>Saitozyma wallum</i> on <i>Banksia aemula</i> leaves, <i>Teratosphaeria henryi</i> on <i>Corymbia henryi</i> leaves<i>.</i> <b>Brazil</b>, <i>Aspergillus bezerrae</i>, <i>Backusella azygospora</i>, <i>Mariannaea terricola</i> and <i>Talaromyces pernambucoensis</i> from soil, <i>Calonectria matogrossensis</i> on <i>Eucalyptus urophylla</i> leaves, <i>Calvatia brasiliensis</i> on soil, <i>Carcinomyces nordestinensis</i> on <i>Bromelia antiacantha</i> leaves, <i>Dendryphiella stromaticola</i> on small branches of an unidentified plant, <i>Nigrospora brasiliensis</i> on <i>Nopalea cochenillifera</i> leaves, <i>Penicillium alagoense</i> as a leaf endophyte on a <i>Miconia</i> sp., <i>Podosordaria nigrobrunnea</i> on dung, <i>Spegazzinia bromeliacearum</i> as a leaf endophyte on <i>Tilandsia catimbauensis</i>, <i>Xylobolus brasiliensis</i> on decaying wood. <b>Bulgaria</b>, <i>Kazachstania molopis</i> from the gut of the beetle <i>Molops piceus.</i> <b>Croatia</b>, <i>Mollisia endocrystallina</i> from a fallen decorticated <i>Picea abies</i> tree trunk<i>.</i> <b>Ecuador</b>, <i>Hygrocybe rodomaculata</i> on soil. <b>Hungary</b>, <i>Alfoldia vorosii</i> (incl. <i>Alfoldia</i> gen. nov.) from <i>Juniperus communis</i> roots, <i>Kiskunsagia ubrizsyi</i> (incl. <i>Kiskunsagia</i> gen. nov.) from <i>Fumana procumbens</i> roots<i>.</i> <b>India</b>, <i>Aureobasidium tremulum</i> as laboratory contaminant, <i>Leucosporidium himalayensis</i> and <i>Naganishia indica</i> from windblown dust on glaciers. <b>Italy</b>, <i>Neodevriesia cycadicola</i> on <i>Cycas</i> sp. leaves, <i>Pseudocercospora pseudomyrticola</i> on <i>Myrtus communis</i> leaves, <i>Ramularia pistaciae</i> on <i>Pistacia lentiscus</i> leaves, <i>Neognomoniopsis quercina</i> (incl. <i>Neognomoniopsis</i> gen. nov.) on <i>Quercus ilex</i> leaves<i>.</i> <b>Japan</b>, <i>Diaporthe fructicola</i> on <i>Passiflora edulis</i> × <i>P</i>. <i>edulis</i> f. <i>flavicarpa</i> fruit, <i>Entoloma nipponicum</i> on leaf litter in a mixed <i>Cryptomeria japonica</i> and <i>Acer</i> spp. forest. <b>Macedonia</b>, <i>Astraeus macedonicus</i> on soil. <b>Malaysia</b>, <i>Fusicladium eucalyptigenum</i> on <i>Eucalyptus</i> sp. twigs, <i>Neoacrodontiella eucalypti</i> (incl. <i>Neoacrodontiella</i> gen. nov.) on <i>Eucalyptus urophylla</i> leaves<i>.</i> <b>Mozambique</b>, <i>Meliola gorongosensis</i> on dead <i>Philenoptera violacea</i> leaflets<i>.</i> <b>Nepal</b>, <i>Coniochaeta dendrobiicola</i> from <i>Dendriobium lognicornu</i> roots<i>.</i> <b>New Zealand</b>, <i>Neodevriesia sexualis</i> and <i>Thozetella neonivea</i> on <i>Archontophoenix cunninghamiana</i> leaves<i>.</i> <b>Norway</b>, <i>Calophoma sandfjordenica</i> from a piece of board on a rocky shoreline, <i>Clavaria parvispora</i> on soil, <i>Didymella finnmarkica</i> from a piece of <i>Pinus sylvestris</i> driftwood. <b>Poland</b>, <i>Sugiyamaella trypani</i> from soil. <b>Portugal</b>, <i>Colletotrichum feijoicola</i> from <i>Acca sellowiana.</i> <b>Russia</b>, <i>Crepidotus tobolensis</i> on <i>Populus tremula</i> debris, <i>Entoloma ekaterinae</i>, <i>Entoloma erhardii</i> and <i>Suillus gastroflavus</i> on soil, <i>Nakazawaea ambrosiae</i> from the galleries of <i>Ips typographus</i> under the bark of <i>Picea abies.</i> <b>Slovenia</b>, <i>Pluteus ludwigii</i> on twigs of broadleaved trees. <b>South Africa</b>, <i>Anungitiomyces stellenboschiensis</i> (incl. <i>Anungitiomyces</i> gen. nov.) and <i>Niesslia stellenboschiana</i> on <i>Eucalyptus</i> sp. leaves, <i>Beltraniella pseudoportoricensis</i> on <i>Podocarpus falcatus</i> leaf litter, <i>Corynespora encephalarti</i> on <i>Encephalartos</i> sp. leaves, <i>Cytospora pavettae</i> on <i>Pavetta revoluta</i> leaves, <i>Helminthosporium erythrinicola</i> on <i>Erythrina humeana</i> leaves, <i>Helminthosporium syzygii</i> on a <i>Syzygium</i> sp. bark canker, <i>Libertasomyces aloeticus</i> on <i>Aloe</i> sp. leaves, <i>Penicillium lunae</i> from <i>Musa</i> sp. fruit, <i>Phyllosticta lauridiae</i> on <i>Lauridia tetragona</i> leaves, <i>Pseudotruncatella bolusanthi</i> (incl. <i>Pseudotruncatellaceae</i> fam. nov.) and <i>Dactylella bolusanthi</i> on <i>Bolusanthus speciosus</i> leaves<i>.</i> <b>Spain</b>, <i>Apenidiella foetida</i> on submerged plant debris, <i>Inocybe grammatoides</i> on <i>Quercus ilex</i> subsp. <i>ilex</i> forest humus, <i>Ossicaulis salomii</i> on soil, <i>Phialemonium guarroi</i> from soil. <b>Thailand</b>, <i>Pantospora chromolaenae</i> on <i>Chromolaena odorata</i> leaves<i>.</i> <b>Ukraine</b>, <i>Cadophora helianthi</i> from <i>Helianthus annuus</i> stems<i>.</i> <b>USA</b>, <i>Boletus pseudopinophilus</i> on soil under slash pine, <i>Botryotrichum foricae</i>, <i>Penicillium americanum</i> and <i>Penicillium minnesotense</i> from air. <b>Vietnam</b>, <i>Lycoperdon vietnamense</i> on soil. Morphological and culture characteristics are supported by DNA barcodes.</p>","PeriodicalId":20014,"journal":{"name":"Persoonia","volume":"42 ","pages":"291-473"},"PeriodicalIF":9.5000,"publicationDate":"2019-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://ftp.ncbi.nlm.nih.gov/pub/pmc/oa_pdf/60/33/per-42-291.PMC6712538.pdf","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Persoonia","FirstCategoryId":"99","ListUrlMain":"https://doi.org/10.3767/persoonia.2019.42.11","RegionNum":1,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2019/7/19 0:00:00","PubModel":"Epub","JCR":"Q1","JCRName":"MYCOLOGY","Score":null,"Total":0}
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Abstract

Novel species of fungi described in this study include those from various countries as follows: Australia, Chaetomella pseudocircinoseta and Coniella pseudodiospyri on Eucalyptus microcorys leaves, Cladophialophora eucalypti, Teratosphaeria dunnii and Vermiculariopsiella dunnii on Eucalyptus dunnii leaves, Cylindrium grande and Hypsotheca eucalyptorum on Eucalyptus grandis leaves, Elsinoe salignae on Eucalyptus saligna leaves, Marasmius lebeliae on litter of regenerating subtropical rainforest, Phialoseptomonium eucalypti (incl. Phialoseptomonium gen. nov.) on Eucalyptus grandis × camaldulensis leaves, Phlogicylindrium pawpawense on Eucalyptus tereticornis leaves, Phyllosticta longicauda as an endophyte from healthy Eustrephus latifolius leaves, Pseudosydowia eucalyptorum on Eucalyptus sp. leaves, Saitozyma wallum on Banksia aemula leaves, Teratosphaeria henryi on Corymbia henryi leaves. Brazil, Aspergillus bezerrae, Backusella azygospora, Mariannaea terricola and Talaromyces pernambucoensis from soil, Calonectria matogrossensis on Eucalyptus urophylla leaves, Calvatia brasiliensis on soil, Carcinomyces nordestinensis on Bromelia antiacantha leaves, Dendryphiella stromaticola on small branches of an unidentified plant, Nigrospora brasiliensis on Nopalea cochenillifera leaves, Penicillium alagoense as a leaf endophyte on a Miconia sp., Podosordaria nigrobrunnea on dung, Spegazzinia bromeliacearum as a leaf endophyte on Tilandsia catimbauensis, Xylobolus brasiliensis on decaying wood. Bulgaria, Kazachstania molopis from the gut of the beetle Molops piceus. Croatia, Mollisia endocrystallina from a fallen decorticated Picea abies tree trunk. Ecuador, Hygrocybe rodomaculata on soil. Hungary, Alfoldia vorosii (incl. Alfoldia gen. nov.) from Juniperus communis roots, Kiskunsagia ubrizsyi (incl. Kiskunsagia gen. nov.) from Fumana procumbens roots. India, Aureobasidium tremulum as laboratory contaminant, Leucosporidium himalayensis and Naganishia indica from windblown dust on glaciers. Italy, Neodevriesia cycadicola on Cycas sp. leaves, Pseudocercospora pseudomyrticola on Myrtus communis leaves, Ramularia pistaciae on Pistacia lentiscus leaves, Neognomoniopsis quercina (incl. Neognomoniopsis gen. nov.) on Quercus ilex leaves. Japan, Diaporthe fructicola on Passiflora edulis × P. edulis f. flavicarpa fruit, Entoloma nipponicum on leaf litter in a mixed Cryptomeria japonica and Acer spp. forest. Macedonia, Astraeus macedonicus on soil. Malaysia, Fusicladium eucalyptigenum on Eucalyptus sp. twigs, Neoacrodontiella eucalypti (incl. Neoacrodontiella gen. nov.) on Eucalyptus urophylla leaves. Mozambique, Meliola gorongosensis on dead Philenoptera violacea leaflets. Nepal, Coniochaeta dendrobiicola from Dendriobium lognicornu roots. New Zealand, Neodevriesia sexualis and Thozetella neonivea on Archontophoenix cunninghamiana leaves. Norway, Calophoma sandfjordenica from a piece of board on a rocky shoreline, Clavaria parvispora on soil, Didymella finnmarkica from a piece of Pinus sylvestris driftwood. Poland, Sugiyamaella trypani from soil. Portugal, Colletotrichum feijoicola from Acca sellowiana. Russia, Crepidotus tobolensis on Populus tremula debris, Entoloma ekaterinae, Entoloma erhardii and Suillus gastroflavus on soil, Nakazawaea ambrosiae from the galleries of Ips typographus under the bark of Picea abies. Slovenia, Pluteus ludwigii on twigs of broadleaved trees. South Africa, Anungitiomyces stellenboschiensis (incl. Anungitiomyces gen. nov.) and Niesslia stellenboschiana on Eucalyptus sp. leaves, Beltraniella pseudoportoricensis on Podocarpus falcatus leaf litter, Corynespora encephalarti on Encephalartos sp. leaves, Cytospora pavettae on Pavetta revoluta leaves, Helminthosporium erythrinicola on Erythrina humeana leaves, Helminthosporium syzygii on a Syzygium sp. bark canker, Libertasomyces aloeticus on Aloe sp. leaves, Penicillium lunae from Musa sp. fruit, Phyllosticta lauridiae on Lauridia tetragona leaves, Pseudotruncatella bolusanthi (incl. Pseudotruncatellaceae fam. nov.) and Dactylella bolusanthi on Bolusanthus speciosus leaves. Spain, Apenidiella foetida on submerged plant debris, Inocybe grammatoides on Quercus ilex subsp. ilex forest humus, Ossicaulis salomii on soil, Phialemonium guarroi from soil. Thailand, Pantospora chromolaenae on Chromolaena odorata leaves. Ukraine, Cadophora helianthi from Helianthus annuus stems. USA, Boletus pseudopinophilus on soil under slash pine, Botryotrichum foricae, Penicillium americanum and Penicillium minnesotense from air. Vietnam, Lycoperdon vietnamense on soil. Morphological and culture characteristics are supported by DNA barcodes.

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真菌星球描述表:868-950。
本研究中描述的真菌新种包括来自不同国家的真菌:澳大利亚、桉树微孔叶上的Chaetomella pseudo-circinoseta和Coniella pseudo diospyri,桉树叶上的Cladophalophora eucalypti、Teratospeeria dunnii和Vermiculariopsiella dunnii,巨桉叶上的Cylindrium grande和Hypsotheca eucalyptorum,沙林桉叶上的沙林Elsinoe salignae,再生亚热带雨林枯枝落叶上的Marasmius lebelia,巨桉×camaldulensis叶上的Eucalyptus septomonium eucalypti(包括Phialosemptomonium gen.nov,Eucalyptus sp.叶片上的Pseudosydowia eucalyptorum,Banksia aemula叶片上的Saitozyma wallum,Corymbia henryi叶片上的Teratospharia henryi。巴西,土壤中的bezerrae曲霉、Backusella azygospora、Mariannaea terricola和Talaromyces pernambucoensis,尾叶桉叶上的Calonectria matogrosensis,土壤上的Calvatia brasiliensis,反斑蝥叶上的nordestinensis Carcinomyces,未知植物小枝条上的Dendrypiella stromaticola,阿氏青霉菌(Penicillium alagoense)是Miconia sp.上的叶内生菌,粪便上的黑腐木(Podosordararia nigrobrunnea。保加利亚,Kazachstania molopis来自甲虫Molops piceus的肠道。克罗地亚,从一棵倒下的剥皮云杉树干上摘下的内结晶Mollisia。厄瓜多尔,土壤上的杆蛙。匈牙利,来自Juniperus commons根的Alfoldia vorosii(包括Alfoldia gen.nov.),来自Fumana procumbens根的Kiskunsagia ubizyi(包括Kiskunsgia gen.nov..)。印度,tremulum Aureobasidium作为实验室污染物,himalayensis Leucosporidium和Naganishia indica来自冰川上被风吹的灰尘。意大利,苏铁属叶片上的Neodevriesia cycadicola,杨梅叶上的Pseudocercospora pseudo-myrticola,黄连木叶上的Ramularia pisciae,Quercus ilex叶上的Neognomoniopsis quercina(包括Neognomoninopsis gen.nov.)。日本,西番莲×黄果的果实,柳杉和宏碁混合林中落叶层上的日本Entoloma niponicum。马其顿,Astraeus macedonicus在土壤上。马来西亚,Eucalyptus sp.嫩枝上的Fusicladium eucalyptinum,尾叶桉叶上的Neoacrodotilla eucalypti(包括Neoacroditilla gen.nov.)。莫桑比克,戈龙戈氏Meliola在死的中翅目小叶上。尼泊尔,来自于Dendriobium lognicornu根的Coniochaeta dendrobiicola。新西兰,性新冠病毒和新冠病毒Thozetella。挪威,岩石海岸线上一块木板上的Calophoma sandfjordenica,土壤上的Clavaria parvispora,樟子松漂流木上的Didymela finnmarkica。波兰,Sugiyamaella锥虫来自土壤。葡萄牙,来自Acca sellowiana的Colletotrichum feijoicola。俄罗斯,毛白杨碎屑上的Crepidotus tobolensis,土壤上的Entoloma ekaterinae,Entolomae erhardii和Suillus gastroflavus,Picea abies树皮下Ips版画画廊中的Nakazawaea ambrosiae。斯洛文尼亚,长在阔叶树枝条上的长毛龙。南非,Anungitiomyces stellenboschiensis(包括Anungitimoyces gen.nov.)和Niesslia stellenbroschiana在桉树属(Eucalyptus sp.)叶片上,Beltraniella pseudoportoricensis在镰形罗汉松(Podocarpus falcatus)落叶层上,Corynespora encephallarti在Encephalartos sp.叶片上,Cytospora pavettae在Paveta revoluta叶片上,Helmintosporia erytrinicola在Erythrina humana叶片上,Syzygium sp.树皮溃疡上的Helminthosporium syzygii,芦荟叶片上的Libertasomyces aloeticus,Musa sp.果实上的月青霉菌,Lauridia tetragona叶片上的Phyllosticta lauridie,Bolusanthus specialus叶片上的Pseudotruncatelaceae fam.nov.和Dactylella bolusanthi。西班牙,Apenidiella foetida在淹没的植物残骸上,Inocybe grammatoides在Quercus ilex亚种上。冬青林腐殖质,土壤上的Ossicaulis salomii,土壤中的Phialemonium guarroi。泰国,色蝶叶上的色蝶泛孢菌。乌克兰,来自向日葵茎的向日葵Cadphora helianthi。美国,湿地松、福氏菌、美洲青霉和明尼苏达青霉下土壤上的假皮诺杆菌。越南,土地上的越南番茄。DNA条形码支持形态和培养特征。
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来源期刊
Persoonia
Persoonia MYCOLOGY-
CiteScore
17.70
自引率
5.50%
发文量
10
审稿时长
3 months
期刊介绍: Persoonia aspires to publish papers focusing on the molecular systematics and evolution of fungi. Additionally, it seeks to advance fungal taxonomy by employing a polythetic approach to elucidate the genuine phylogeny and relationships within the kingdom Fungi. The journal is dedicated to disseminating high-quality papers that unravel both known and novel fungal taxa at the DNA level. Moreover, it endeavors to provide fresh insights into evolutionary processes and relationships. The scope of papers considered encompasses research articles, along with topical and book reviews.
期刊最新文献
A comprehensive molecular phylogeny of Cephalotrichum and Microascus provides novel insights into their systematics and evolutionary history Single host plant species may harbour more than one species of Peronospora – a case study on Peronospora infecting Plantag Phylogenomic analysis of the Candida auris- Candida haemuli clade and related taxa in the Metschnikowiaceae, and proposal of thirteen new genera, fifty-five new combinations and nine new species Endless forms most frustrating: disentangling species boundaries in the Ramalina decipiens group (Lecanoromycetes, Ascomycota), with the description of six new species and a key to the group Saccharomycetaceae: delineation of fungal genera based on phylogenomic analyses, genomic relatedness indices and genomics-based synapomorphies
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