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A polyphasic approach to delineate species in Bipolaris 被引量:3

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摘要 Bipolaris species are important plant pathogens with a worldwide distribution in tropical and temperate environments.Species recognition in Bipolaris has been problematic due to a lack of molecular data from ex-type cultures,the use of few gene regions for species resolution and overlapping morphological characters.In this study,we evaluate the efficiency of different DNA barcodes in species delimitation in Bipolaris by phylogenetic analyses,Automatic Barcode Gap Discovery and Objective Clustering.GAPDH is determined to be the best single marker for the genus.These approaches are used to clarify the taxonomic placement of all sequences currently named as Bipolaris in GenBank based on ITS and GAPDH gene sequence data.In checking various publications,we found that the majority of new host records of fungal species published in the Plant Disease journal from 2010 to 2019 were based on BLAST searches of the ITS sequences and up to 82%of those records could be erroneous.Therefore,relying on BLAST searches from GenBank to name species is not recommended.Editorial boards of journals and reviewers of new record papers should be aware of this problem.In naming Bipolaris species,whether new or known,it is recommended to perform phylogenetic analyses based on GAPDH using the correct taxon sampling for accurate results and the species relationship should have reliable statistical support.At least two new species are represented by molecular data in GenBank and we provide an updated taxonomic revision of Bipolaris.We accept 45 species in Bipolaris and notes are provided for all the species including hosts and geographic distribution.
出处 《Fungal Diversity》 SCIE 2020年第3期225-256,共32页 真菌多样性(英文)
基金 The authors would like to thank Yunnan Provincial Key Programs of Yunnan Eco-friendly Food International Cooperation Research Center Project under Grant 2019ZG00908 KD Hyde would like to thank the Thailand Research Fund,grant RDG6130001 entitled“Impact of climate change on fungal diversity and biogeography in the Greater Mekong Subregion”.
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  • 1AdélaČmoková,Miroslav Kolařík,Radim Dobiáš,Lois L.Hoyer,Helena Janouškovcová,Rui Kano,Ivana Kuklová,Pavlína Lysková,Lenka Machová,Thomas Maier,Naďa Mallátová,Matěj Man,Karel Mencl,Pietro Nenoff,Andrea Peano,Hana Prausová,Dirk Stubbe,Silke Uhrlaß,TomášVětrovský,Cornelia Wiegand,Vit Hubka.Resolving the taxonomy of emerging zoonotic pathogens in the Trichophyton benhamiae complex[J].Fungal Diversity,2020(5).
  • 2李婕,李银煳,李庆红,张荣跃,王晓燕,单红丽,黄应昆.云南弥勒甘蔗褐条病病原菌的分离鉴定[J].植物保护,2022,48(4):231-235. 被引量:1
  • 3Chitrabhanu S.Bhunjun,Tuula Niskanen,Nakarin Suwannarach,Nopparat Wannathes,Yi-Jyun Chen,Eric H.C.McKenzie,Sajeewa S.N.Maharachchikumbura,Bart Buyck,Chang-Lin Zhao,Yu-Guang Fan,Jing-Yi Zhang,Asha J.Dissanayake,Diana S.Marasinghe,Ruvishika S.Jayawardena,Jaturong Kumla,Mahajabeen Padamsee,Ya-Ya Chen,Kare Liimatainen,Joseph F.Ammirati,Chayanard Phukhamsakda,Jian-Kui Liu,Wiphawanee Phonrob,Émile Randrianjohany,Sinang Hongsanan,Ratchadawan Cheewangkoon,Digvijayini Bundhun,Surapong Khuna,Wen-Jie Yu,Lun-Sha Deng,Yong-Zhong Lu,Kevin D.Hyde,Saisamorn Lumyong.The numbers of fungi:are the most speciose genera truly diverse?[J].Fungal Diversity,2022(3):387-462. 被引量:1

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