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| 1 | High‑throughput sequencing view on the magnitude of global fungal diversity显示文摘High-throughput DNA sequencing has dramatically transformed several areas of biodiversity research including mycol-ogy.Despite limitations,high-throughput sequencing is nowadays a predominant method to characterize the alpha and beta diversity of fungal communities.Across the papers utilizing high-throughput sequencing approaches to study natural habitats in terrestrial ecosystems worldwide,>200 studies published until 2019 have generated over 250 million sequences of the primary mycological metabarcoding marker,the nuclear ribosomal internal transcribed spacer 2(ITS2).Here we show that at a 97%sequence similarity threshold,the total richness of non-singleton fungal taxa across the studies published so far is 1.08 million,mostly Ascomycota(56.8%of the taxa)and Basidiomycota(36.7%of the taxa).The Chao-1 estimate of the total extant fungal diversity based on this dataset is 6.28 million taxa,representing a conservative estimate of global fungal species richness.Soil and litter represent the habitats with the highest alpha diversity of fungi followed by air,plant shoots,plant roots and deadwood with Chao-1 predictions,for samples containing 5000 sequences,of 1219,569,392,228,215 and 140 molecular species,respectively.Based on the high-throughput sequencing data,the highest proportion of unknown fungal species is associated with samples of lichen and plant tissues.When considering the use of high-throughput sequenc-ing for the estimation of global fungal diversity,the limitations of the method have to be taken into account,some of which are sequencing platform-specific while others are inherent to the metabarcoding approaches of species representation.In this respect,high-throughput sequencing data can complement fungal diversity predictions based on methods of traditional mycology and increase our understanding of fungal biodiversity. | Petr Baldrian TomášVětrovský Clémentine Lepinay Petr Kohout | 2022 | Fungal Diversity2022,,3: | 8 |
| 2 | Influence of mineral and organic fertiliationon soil fungi,enzyme activities and humic substances in along-term field experiment显示文摘 | Rezacova V Baldrian P Hrselova H | 2007 | Folia Microbiol(Praha)2007,52,4: | 1 |
| 3 | Interaction of heavy metals with white-rot fungi显示文摘 | Petr Baldrian | 2003 | Enzyme and Microbial Technology2003,32,1: | 1 |
| 4 | Effect of heavy metals on the growth of selected wood-rooting hasidiomycetes 显示文摘 | Baldrian P Gabriel J | 1997 | Folia Microbiol1997,42,5: | 1 |
| 5 | Decolorization of synthetic dyes using a copper complex with glucaric acid显示文摘 | VeRMA P SHAH V BALDRIAN P | 2004 | Chemosphere2004,,54: | 1 |
| 6 | Degradation of cellulose by basidiomycetous fungus 显示文摘 | Baldrian P ValOskov6 V | 2008 | EEMS Microbiol Rev2008,32,3: | 1 |
| 7 | Active and total microbial communities in forest soil are largely different and highly stratified during decomposition显示文摘 | BALDRIAN P KOLARK M TURSOVM | 2012 | ISME Journal2012,6,: | 1 |
| 8 | Fungal laccases-occurrence and properties显示文摘 | BALDRIAN P | 2005 | FEMS Microbiology Reviews2005,30,2: | 1 |
| 9 | Increase of laccase activity during interspecific interactions of white-rot fungi显示文摘 | Baldrian P | 2004 | FEMS Microbiology Ecology2004,50,3: | 1 |
| 10 | Degradation of cellulose by basidiomycetous fungi显示文摘 | Baldrian P Valaskowi V | 2008 | FEMS Microbiology Reviews2008,32,3: | 1 |
| 11 | Purification and characterization laccase from the white-rot fungus Daedalea quercina and decolorization of synthetic dyes by enzyme显示文摘 | BALDRIAN P | 2004 | Appl Micro Biotechnol2004,63,5: | 1 |
| 12 | Degradation of cellulose by basidiomycetous fungi 显示文摘 | PETR BALDRIAN V V K | 2008 | FEMS Microbiol Rev2008,32,3: | 1 |
| 13 | Purification of a new manganese peroxidase of the white-rot fungus irpex laeteus, and degradation of polyeyelic aromatic hydrocar- bons by the enzyme显示文摘 | Baborova P Moder M Baldrian P | 2006 | Research in Microbiology2006,157,3: | 1 |
| 14 | Intraspecific variability in growth response to cadmium of the wood-rotting fungus Piptoporus betulinus显示文摘 | Petr Baldrian | 2002 | Mycologia2002,94,3: | 1 |
| 15 | Purification of a new manganese peroxidase of the white-rot fungus Irpex lacteus, and degradation of polycyclic aromatic hydrocarbons by the enzyme显示文摘 | Baborova P Moder M Baldrian P | 2006 | Research in Microbiology2006,157,3: | 1 |
| 16 | Fungal laccases-occurrence and properties 显示文摘 | Petr Baldrian | 2005 | FEMS Microbiol Rev2005,30,2: | 1 |
| 17 | Biodegradable polyester nanocomposites:The effect of structure on mechanical and degradation behavior显示文摘 | Jiri Kotek Dana Kubies Josef Baldrian | | 0,,: | 1 |
| 18 | Changes in oxida- tive enzyme activity during interspecific mycelial interactions involving the white-rot fungus Trametes versicolor显示文摘 | Hiscox J Baldrian P Rogers H J Boddy L | 2010 | Fungal Genetics and Biology2010,47,: | 1 |
| 19 | Crystalline Betastructure of PHBV Grown Epitaxially on Silicate Layers of MMT显示文摘 | Ublekov F Baldrian J Nedkov E | 2009 | Journal of Polymer Science Part B :Polymer Physics2009,47,8: | 1 |
| 20 | Degradation of BTEX andPAHs by Co( Ⅱ ) and Cu( Ⅱ)-based radical-generating systems显示文摘 | Gabriel J Baldrian P Verma P | 2004 | Applied Catalysis B: Environmental2004,51,3: | 1 |