Species diversity in Pseudocercospora

dc.contributor.authorGroenewald, Johannes Zacharias
dc.contributor.authorChen, Y.Y.
dc.contributor.authorZhang, Y.
dc.contributor.authorRoux, Jolanda
dc.contributor.authorShin, H.-D.
dc.contributor.authorShivas, R.G.
dc.contributor.authorSummerell, B.A.
dc.contributor.authorBraun, U.
dc.contributor.authorAlfenas, A.C.
dc.contributor.authorUjat, A.H.
dc.contributor.authorNakashima, C.
dc.contributor.authorCrous, Pedro W.
dc.date.accessioned2024-07-22T12:47:28Z
dc.date.available2024-07-22T12:47:28Z
dc.date.issued2024-06
dc.descriptionSUPPLEMENTARY MATERIAL : TABLE S1. Metadata and GenBank accession numbers of Pseudocercospora isolates included in the morphological and/or phylogenetic analyses. TABLE S2. Summary of phylogenetic information for the different analyses in this study. TABLE S3. Comparison of the phylogenetic position of strains represented by only ITS in the sequence dataset.en_US
dc.description.abstractSpecies of Pseudocercospora are commonly associated with leaf and fruit spots on diverse plant hosts in sub-tropical and tropical regions. Pseudocercospora spp. have mycosphaerella-like sexual morphs, but represent a distinct genus in Mycosphaerellaceae (Mycosphaerellales, Dothideomycetes). The present study adds a further 29 novel species of Pseudocercospora from 413 host species representing 297 host genera occurring in 60 countries and designates four epitypes and one lectotype for established names. This study recognises 329 species names, with an additional 69 phylogenetic lineages remaining unnamed due to difficulty in being able to unambiguously apply existing names to those lineages. To help elucidate the taxonomy of these species, a phylogenetic tree was generated from multi-locus DNA sequence data of the internal transcribed spacers and intervening 5.8S nuclear nrRNA gene (ITS), partial actin (actA), and partial translation elongation factor 1-alpha (tef1), as well as the partial DNA-directed RNA polymerase II second largest subunit (rpb2) gene sequences. Novel species described in this study include those from various countries as follows: Australia, Ps. acaciicola from leaf spots on Acacia sp., Ps. anopter from leaf spots on Anopterus glandulosus, Ps. asplenii from leaf spots on Asplenium dimorphum, Ps. australiensis from leaf spots on Eucalyptus gunnii, Ps. badjensis from leaf spots on Eucalyptus badjensis, Ps. erythrophloeicola from leaf spots on Erythrophleum chlorostachys, Ps. grevilleae from leaf spots on Grevillea sp., Ps. lophostemonigena from leaf spots on Lophostemon confertus, Ps. lophostemonis from leaf spots on Lophostemon lactifluus, Ps. paramacadamiae from leaf spots on Macadamia integrifolia, Ps. persooniae from leaf spots on Persoonia sp., Ps. pultenaeae from leaf spots on Pultenaea daphnoides, Ps. tristaniopsidis from leaf spots on Tristaniopsis collina, Ps. victoriae from leaf spots on Eucalyptus globoidea. Brazil, Ps. musigena from leaf spots on Musa sp. China, Ps. lonicerae-japonicae from leaf spots on Lonicera japonica, Ps. rubigena leaf spots on Rubus sp. France (Réunion), Ps. wingfieldii from leaf spots on Acacia heterophylla. Malaysia, Ps. musarum from leaf spots on Musa sp. Netherlands, Ps. rhododendri from leaf spots on Rhododendron sp. South Africa, Ps. balanitis from leaf spots on Balanites sp., Ps. dovyalidicola from leaf spots on Dovyalis zeyheri, Ps. encephalarticola from leaf spots on Encephalartos sp. South Korea, Ps. grewiana from leaf spots on Grewia biloba, Ps. parakaki from leaf spots on Diospyros kaki, Ps. pseudocydoniae from leaf spots on Chaenomeles lagenaria, Ps. paracydoniae from leaf spots on Chaenomeles speciosa. Thailand, Ps. acerigena from leaf spots on Acer sp., Ps. tectonigena from leaf spots on Tectona grandis. Epitypes are designated for Cercospora bonjeaneae-rectae, Cercospora halleriae, Ps. eucleae, and an epitype as well as a lectotype for Ps. macadamiae. Results obtained in the present study contribute to a better understanding of the host specificity and distribution in Pseudocercospora spp., many of which represent important pathogens of food or fibre crops, or organisms of quarantine concern.en_US
dc.description.departmentBiochemistryen_US
dc.description.departmentForestry and Agricultural Biotechnology Institute (FABI)en_US
dc.description.departmentGeneticsen_US
dc.description.departmentMicrobiology and Plant Pathologyen_US
dc.description.librarianhj2024en_US
dc.description.sdgSDG-15:Life on landen_US
dc.description.sponsorshipThe European Union’s Horizon 2020 research and innovation program (RISE) under the Marie Skłodowska-Curie grant agreement No. 10100812, the Dutch NWO Roadmap grant agreement No. 2020/ENW/00901156, the National Natural Science Foundation of China and the China Scholarship Council.en_US
dc.description.urihttps://fuse-journal.orgen_US
dc.identifier.citationGroenewald, J.Z., Chen, Y.Y., Zhang, Y., Roux, J., Shin, H.-D., Shivas, R.G., Summerell, B.A., Braun, U., Alfenas, A.C., Ujat, A.H., Nakashima, C. & Crous, P.W. (2024). Species diversity in Pseudocercospora. Fungal Systematics and Evolution 13: 29–89. doi: 10.3114/fuse.2024.13.03.en_US
dc.identifier.issn2589-3823 (print)
dc.identifier.issn2589-3831 (online)
dc.identifier.other10.3114/fuse.2024.13.03.
dc.identifier.urihttp://hdl.handle.net/2263/97156
dc.language.isoenen_US
dc.publisherWesterdijk Fungal Biodiversity Instituteen_US
dc.rights© 2024 Westerdijk Fungal Biodiversity Institute. This article is Open Access under the terms of the Creative Commons CC BY-NC-ND licence.en_US
dc.subjectMulti-gene phylogenyen_US
dc.subjectMycosphaerellaceaeen_US
dc.subjectNew taxaen_US
dc.subjectPlant pathogensen_US
dc.subjectTaxonomyen_US
dc.subjectSDG-15: Life on landen_US
dc.titleSpecies diversity in Pseudocercosporaen_US
dc.typeArticleen_US

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