Accès ouvert déclaré
2023
dataset
Data from: Global Spore Sampling Project: A global, standardized dataset of airborne fungal spores
Otso Ovaskainen, Nerea Abrego, Brendan Furneaux, Bess Hardwick, Panu Somervuo, Isabella Palorinne, Nigel R. Andrew, Ulyana Babiy, Tan Bao, Gisela Bazzano, Svetlana Bondarchuk, Timothy C. Bonebrake, Georgina Brennan, Syndonia Bret-Harte, Claus Bässler, Luciano Cagnolo, Erin K. Cameron, Elodie Chapurlat, Simon Creer, Luigi Paolo D’Acqui, Natasha de Vere, Marie‐Laure Desprez‐Loustau, Michel A. K. Dongmo, Ida Dyrholm Jacobsen, Brian L. Fisher, Miguel Flores de Jesus, Gregory S. Gilbert, Gareth Griffith, Anna Gritsuk, Andrin Gross, Håkan Grudd, Panu Halme, Rachid Hanna, Jannik Hansen, Lars Holst Hansen, Apollon Hegbe, Sarah Hill, Ian Hogg, Jenni Hultman, Kevin D. Hyde, Nicole A. Hynson, Petteri Karisto, Deirdre Kerdraon, Anastasia Knorre, Irmgard Krisai‐Greilhüber, Juri Kurhinen, Maria Kuzmina, Nicolas Lecomte, Erin Lecomte, Viviana Loaiza, E Lundin, Alexander Meier, Armin Mešić, Otto Miettinen, Norman Monkhause, Peter E. Mortimer, Jörg Müller, R. Henrik Nilsson, Puani Yannick Nonti, Jenni Nordén, Björn Nordén, Cláudia Cristina Paro de Paz, Petri Pellikka, Danilo Pereira, Geoff Petch, Juha‐Matti Pitkänen, Flavius Popa, Caitlin Potter, Jenna Purhonen, Sanna Pätsi, Abdullah Rafiq, Dimby Raharinjanahary, Niklas Rakos, Achala R. Rathnayaka, Katrine Raundrup, Yu. A. Rebriev, Jouko Rikkinen, Hanna M.K. Rogers, Andrey Rogovsky, Yuri Rozhkov, Kadri Runnel, Annika Saarto, Anton Savchenko, Markus Schlegel, Niels Martin Schmidt, Sebastian Seibold, Carsten Ambelas Skjøth, Elisa Stengel, Svetlana Sutyrina, Ilkka Syvänperä, Leho Tedersoo, Jebidiah Timm, Laura Tipton, Hirokazu Toju, Maria Uscka-Perzanowska, Michelle van der Bank, Herman van der Bank, Bryan Vandenbrink, Stefano Ventura, Sölvi Rúnar Vignisson, Xiaoyang Wang, Wolfgang W. Weisser, Subodini N. Wijesinghe, S. Joseph Wright, Yahan Yang, Nourou S. Yorou, Amanda Young, Douglas W. Yu, Evgeny V. Zakharov, Paul D. N. Hebert, Tomas Roslin
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Le résumé fourni par la source
Novel methods for sampling and characterizing biodiversity hold great promise for re-evaluating patterns of life across the planet. The sampling of airborne spores with a cyclone sampler, and the sequencing of their DNA have been suggested as an efficient and well-calibrated tool for surveying fungal diversity across various environments. Here we present data originating from the Global Spore Sampling Project, comprising 2,768 samples collected during two years at 47 locations across the world. Each sample represents fungal spores extracted from 24 m3 of air. We applied a conservative bioinformatics pipeline that filtered out sequences that did not show strong evidence of representing a fungal species. The pipeline yielded 27,954 species-level operational taxonomic units (OTUs). Each OTU is accompanied by a probabilistic taxonomic classification, validated through comparison with expert evaluations. We partitioned the variation in species distributions into spatial and seasonal components, showing a strong effect of the annual mean temperature and demonstrating strong ecological signal in the data. The database is organized in three datasets in a csv format (columns separated by commas): (1) metadata providing the location, date, and time for each sample, along with sequencing depth and other essential information (metadata.csv); (2) species-level OTU-tables per sample describing the number of sequences assigned to each species (taxonomy.csv); and (3) taxonomic classification of each species-level OTU (otu.table.csv). The three datasets can be linked to each other using the unique sample codes and the unique identifiers for species-level OTUs. The same three datafiles are also provided in allData.RData which can be read into R as load("allData.RData").
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Les sujets associés
Indoor Air Quality and Microbial ExposurePlant Pathogens and Fungal DiseasesMycotoxins in Agriculture and Food