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Plant traits—the morphological, anatomical, physiological, biochemical and phenological characteristics of plants—determine how plants respond to environmental factors, affect other trophic levels, and influence ecosystem properties and their benefits and detriments to people. Plant trait data thus represent the basis for a vast area of research spanning from evolutionary biology, community and functional ecology, to biodiversity conservation, ecosystem and landscape management, restoration, biogeography and earth system modelling. Since its foundation in 2007, the TRY database of plant traits has grown continuously. It now provides unprecedented data coverage under an open access data policy and is the main plant trait database used by the research community worldwide. Increasingly, the TRY database also supports new frontiers of trait-based plant research, including the identification of data gaps and the subsequent mobilization or measurement of new data. To support this development, in this article we evaluate the extent of the trait data compiled in TRY and analyse emerging patterns of data coverage and representativeness. Best species coverage is achieved for categorical traits—almost complete coverage for ‘plant growth form’. However, most traits relevant for ecology and vegetation modelling are characterized by continuous intraspecific variation and trait–environmental relationships. These traits have to be measured on individual plants in their respective environment. Despite unprecedented data coverage, we observe a humbling lack of completeness and representativeness of these continuous traits in many aspects. We, therefore, conclude that reducing data gaps and biases in the TRY database remains a key challenge and requires a coordinated approach to data mobilization and trait measurements. This can only be achieved in collaboration with other initiatives.
TRY plant trait database - enhanced coverage and open access
Jens Kattge;Gerhard Bönisch;Sandra Díaz;Sandra Lavorel;Iain Colin Prentice;Paul Leadley;Susanne Tautenhahn;Gijsbert D. A. Werner;Tuomas Aakala;Mehdi Abedi;Alicia T. R. Acosta;George C. Adamidis;Kairi Adamson;Masahiro Aiba;Cécile H. Albert;Julio M. Alcántara;Carolina Alcázar C;Izabela Aleixo;Hamada Ali;Bernard Amiaud;Christian Ammer;Mariano M. Amoroso;Madhur Anand;Carolyn Anderson;Niels Anten;Joseph Antos;Deborah Mattos Guimarães Apgaua;Tia-Lynn Ashman;Degi Harja Asmara;Gregory P. Asner;Michael Aspinwall;Owen Atkin;Isabelle Aubin;Lars Baastrup-Spohr;Khadijeh Bahalkeh;Michael Bahn;Timothy Baker;William J. Baker;Jan P. Bakker;Dennis Baldocchi;Jennifer Baltzer;Arindam Banerjee;Anne Baranger;Jos Barlow;Diego R. Barneche;Zdravko Baruch;Denis Bastianelli;John Battles;William Bauerle;Marijn Bauters;Erika Bazzato;Michael Beckmann;Hans Beeckman;Carl Beierkuhnlein;Renee Bekker;Gavin Belfry;Michael Belluau;Mirela Beloiu;Raquel Benavides;Lahcen Benomar;Mary Lee Berdugo-Lattke;Erika Berenguer;Rodrigo Bergamin;Joana Bergmann;Marcos Bergmann Carlucci;Logan Berner;Markus Bernhardt-Römermann;Christof Bigler;Anne D. Bjorkman;Chris Blackman;Carolina Blanco;Benjamin Blonder;Dana Blumenthal;Kelly T. Bocanegra-González;Pascal Boeckx;Stephanie Bohlman;Katrin Böhning-Gaese;Laura Boisvert-Marsh;William Bond;Ben Bond-Lamberty;Arnoud Boom;Coline C. F. Boonman;Kauane Bordin;Elizabeth H. Boughton;Vanessa Boukili;David M. J. S. Bowman;Sandra Bravo;Marco Richard Brendel;Martin R. Broadley;Kerry A. Brown;Helge Bruelheide;Federico Brumnich;Hans Henrik Bruun;David Bruy;Serra W. Buchanan;Solveig Franziska Bucher;Nina Buchmann;Robert Buitenwerf;Daniel E. Bunker;Jana Bürger;Sabina Burrascano;David F. R. P. Burslem;Bradley J. Butterfield;Chaeho Byun;Marcia Marques;Marina C. Scalon;Marco Caccianiga;Marc Cadotte;Maxime Cailleret;James Camac;Jesús Julio Camarero;Courtney Campany;Giandiego Campetella;Juan Antonio Campos;Laura Cano-Arboleda;Roberto Canullo;Michele Carbognani;Fabio Carvalho;Fernando Casanoves;Bastien Castagneyrol;Jane A. Catford;Jeannine Cavender-Bares;Bruno E. L. Cerabolini;Marco Cervellini;Eduardo Chacón-Madrigal;Kenneth Chapin;F. Stuart Chapin;Stefano Chelli;Si-Chong Chen;Anping Chen;Paolo Cherubini;Francesco Chianucci;Brendan Choat;Kyong-Sook Chung;Milan Chytrý;Daniela Ciccarelli;Lluís Coll;Courtney G. Collins;Luisa Conti;David Coomes;Johannes H. C. Cornelissen;William K. Cornwell;Piermaria Corona;Marie Coyea;Joseph Craine;Dylan Craven;Joris P. G. M. Cromsigt;Anikó Csecserits;Katarina Cufar;Matthias Cuntz;Ana Carolina da Silva;Kyla M. Dahlin;Matteo Dainese;Igor Dalke;Michele Dalle Fratte;Anh Tuan Dang-Le;Jirí Danihelka;Masako Dannoura;Samantha Dawson;Arend Jacobus de Beer;Angel De Frutos;Jonathan R. De Long;Benjamin Dechant;Sylvain Delagrange;Nicolas Delpierre;Géraldine Derroire;Arildo S. Dias;Milton Hugo Diaz-Toribio;Panayiotis G. Dimitrakopoulos;Mark Dobrowolski;Daniel Doktor;Pavel Dřevojan;Ning Dong;John Dransfield;Stefan Dressler;Leandro Duarte;Emilie Ducouret;Stefan Dullinger;Walter Durka;Remko Duursma;Olga Dymova;Anna E-Vojtkó;Rolf Lutz Eckstein;Hamid Ejtehadi;James Elser;Thaise Emilio;Kristine Engemann;Mohammad Bagher Erfanian;Alexandra Erfmeier;Adriane Esquivel-Muelbert;Gerd Esser;Marc Estiarte;Tomas F. Domingues;William F. Fagan;Jaime Fagúndez;Daniel S. Falster;Ying Fan;Jingyun Fang;Emmanuele Farris;Fatih Fazlioglu;Yanhao Feng;Fernando Fernandez-Mendez;Carlotta Ferrara;Joice Ferreira;Alessandra Fidelis;Bryan Finegan;Jennifer Firn;Timothy J. Flowers;Dan F. B. 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Kinlock;Wilm Daniel Kissling;Kaoru Kitajima;Thomas Kitzberger;Rasmus Kjøller;Tamir Klein;Michael Kleyer;Jitka Klimešová;Joice Klipel;Brian Kloeppel;Stefan Klotz;Johannes M. H. Knops;Takashi Kohyama;Fumito Koike;Johannes Kollmann;Benjamin Komac;Kimberly Komatsu;Christian König;Nathan J. B. Kraft;Koen Kramer;Holger Kreft;Ingolf Kühn;Dushan Kumarathunge;Jonas Kuppler;Hiroko Kurokawa;Yoko Kurosawa;Shem Kuyah;Jean-Paul Laclau;Benoit Lafleur;Erik Lallai;Eric Lamb;Andrea Lamprecht;Daniel J. Larkin;Daniel Laughlin;Yoann Le Bagousse-Pinguet;Guerric le Maire;Peter C. le Roux;Elizabeth le Roux;Tali Lee;Frederic Lens;Simon L. Lewis;Barbara Lhotsky;Yuanzhi Li;Xine Li;Jeremy W. Lichstein;Mario Liebergesell;Jun Ying Lim;Yan-Shih Lin;Juan Carlos Linares;Chunjiang Liu;Daijun Liu;Udayangani Liu;Stuart Livingstone;Joan Llusià;Madelon Lohbeck;Álvaro López-García;Gabriela Lopez-Gonzalez;Zdeňka Lososová;Frédérique Louault;Balázs A. 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Tsakalos;Ioannis Tsiripidis;Niklas Tysklind;Toru Umehara;Vladimir Usoltsev;Matthew Vadeboncoeur;Jamil Vaezi;Fernando Valladares;Jana Vamosi;Peter M. van Bodegom;Michiel van Breugel;Elisa Van Cleemput;Martine van de Weg;Stephni van der Merwe;Fons van der Plas;Masha T. van der Sande;Mark van Kleunen;Koenraad Van Meerbeek;Mark Vanderwel;Kim André Vanselow;Angelica Vårhammar;Laura Varone;Maribel Yesenia Vasquez Valderrama;Kiril Vassilev;Mark Vellend;Erik J. Veneklaas;Hans Verbeeck;Kris Verheyen;Alexander Vibrans;Ima Vieira;Jaime Villacís;Cyrille Violle;Pandi Vivek;Katrin Wagner;Matthew Waldram;Anthony Waldron;Anthony P. Walker;Martyn Waller;Gabriel Walther;Han Wang;Feng Wang;Weiqi Wang;Harry Watkins;James Watkins;Ulrich Weber;James T. Weedon;Liping Wei;Patrick Weigelt;Evan Weiher;Aidan W. Wells;Camilla Wellstein;Elizabeth Wenk;Mark Westoby;Alana Westwood;Philip John White;Mark Whitten;Mathew Williams;Daniel E. Winkler;Klaus Winter;Chevonne Womack;Ian J. Wright;S. Joseph Wright;Justin Wright;Bruno X. Pinho;Fabiano Ximenes;Toshihiro Yamada;Keiko Yamaji;Ruth Yanai;Nikolay Yankov;Benjamin Yguel;Kátia Janaina Zanini;Amy E. Zanne;David Zelený;Yun-Peng Zhao;Jingming Zheng;Ji Zheng;Kasia Ziemińska;Chad R. Zirbel;Georg Zizka;Irié Casimir Zo-Bi;Gerhard Zotz;Christian Wirth
2020-01-01
Abstract
Plant traits—the morphological, anatomical, physiological, biochemical and phenological characteristics of plants—determine how plants respond to environmental factors, affect other trophic levels, and influence ecosystem properties and their benefits and detriments to people. Plant trait data thus represent the basis for a vast area of research spanning from evolutionary biology, community and functional ecology, to biodiversity conservation, ecosystem and landscape management, restoration, biogeography and earth system modelling. Since its foundation in 2007, the TRY database of plant traits has grown continuously. It now provides unprecedented data coverage under an open access data policy and is the main plant trait database used by the research community worldwide. Increasingly, the TRY database also supports new frontiers of trait-based plant research, including the identification of data gaps and the subsequent mobilization or measurement of new data. To support this development, in this article we evaluate the extent of the trait data compiled in TRY and analyse emerging patterns of data coverage and representativeness. Best species coverage is achieved for categorical traits—almost complete coverage for ‘plant growth form’. However, most traits relevant for ecology and vegetation modelling are characterized by continuous intraspecific variation and trait–environmental relationships. These traits have to be measured on individual plants in their respective environment. Despite unprecedented data coverage, we observe a humbling lack of completeness and representativeness of these continuous traits in many aspects. We, therefore, conclude that reducing data gaps and biases in the TRY database remains a key challenge and requires a coordinated approach to data mobilization and trait measurements. This can only be achieved in collaboration with other initiatives.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11562/1125023
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simulazione ASN
Il report seguente simula gli indicatori relativi alla propria produzione scientifica in relazione alle soglie ASN 2023-2025 del proprio SC/SSD. Si ricorda che il superamento dei valori soglia (almeno 2 su 3) è requisito necessario ma non sufficiente al conseguimento dell'abilitazione. La simulazione si basa sui dati IRIS e sugli indicatori bibliometrici alla data indicata e non tiene conto di eventuali periodi di congedo obbligatorio, che in sede di domanda ASN danno diritto a incrementi percentuali dei valori. La simulazione può differire dall'esito di un’eventuale domanda ASN sia per errori di catalogazione e/o dati mancanti in IRIS, sia per la variabilità dei dati bibliometrici nel tempo. Si consideri che Anvur calcola i valori degli indicatori all'ultima data utile per la presentazione delle domande.
La presente simulazione è stata realizzata sulla base delle specifiche raccolte sul tavolo ER del Focus Group IRIS coordinato dall’Università di Modena e Reggio Emilia e delle regole riportate nel DM 589/2018 e allegata Tabella A. Cineca, l’Università di Modena e Reggio Emilia e il Focus Group IRIS non si assumono alcuna responsabilità in merito all’uso che il diretto interessato o terzi faranno della simulazione. Si specifica inoltre che la simulazione contiene calcoli effettuati con dati e algoritmi di pubblico dominio e deve quindi essere considerata come un mero ausilio al calcolo svolgibile manualmente o con strumenti equivalenti.