New handbook for standardised measurement of plant functional traits worldwide

Новый справочник по единообразному измерению функциональных признаков растений во всем мире
M. Syndonia Bret‐Harte, John Hodgson, Sandra Lavorel, Lourens Poorter, Peter B. Reich, Hans ter Steege, Nina Buchmann, Joseph M. Craine, Ian J. Wright, A. Carla Staver, William K. Cornwell, Marcel G. A. van der Heijden, Sandra Dı́az, Lucas Enrico, Juli G. Pausas, Éric Garnier, Erik J. Veneklaas, Peter Poschlod, Lawren Sack, Natalia Pérez Harguindeguy, Hendrik Poorter, Pedro Jaureguiberry, Diego E. Gurvich, Carlos Urcelay, Peter M. Ray, Arjen C. de Vos, Guillermo Funes, Fabien Quétier, K. Thompson, Huw D. Morgan, B. Blonder, María V. Vaieretti, Georgina Conti, Sâmia Aquino, J. H. C. Cornelissen
2013-04-25

leaf root and stem traitsplant functional traitsregenerative traitsstandardised measurement protocolstrait–environment relationships
Plant functional traits are the features (morphological, physiological, phenological) that represent ecological strategies and determine how plants respond to environmental factors, affect other trophic levels and influence ecosystem properties. Variation in plant functional traits, and trait syndromes, has proven useful for tackling many important ecological questions at a range of scales, giving rise to a demand for standardised ways to measure ecologically meaningful plant traits. This line of research has been among the most fruitful avenues for understanding ecological and evolutionary patterns and processes. It also has the potential both to build a predictive set of local, regional and global relationships between plants and environment and to quantify a wide range of natural and human-driven processes, including changes in biodiversity, the impacts of species invasions, alterations in biogeochemical processes and vegetation–atmosphere interactions. The importance of these topics dictates the urgent need for more and better data, and increases the value of standardised protocols for quantifying trait variation of different species, in particular for traits with power to predict plant- and ecosystem-level processes, and for traits that can be measured relatively easily. Updated and expanded from the widely used previous version, this handbook retains the focus on clearly presented, widely applicable, step-by-step recipes, with a minimum of text on theory, and not only includes updated methods for the traits previously covered, but also introduces many new protocols for further traits. This new handbook has a better balance between whole-plant traits, leaf traits, root and stem traits and regenerative traits, and puts particular emphasis on traits important for predicting species’ effects on key ecosystem properties. We hope this new handbook becomes a standard companion in local and global efforts to learn about the responses and impacts of different plant species with respect to environmental changes in the present, past and future.
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A new, updated handbook provides standardized, step-by-step protocols for measuring plant functional traits worldwide.
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It achieves a better balance of trait protocols across whole-plant, leaf, root, stem and regenerative traits.
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Protocols emphasize traits that predict species’ effects on key ecosystem properties and responses to environmental change.
4
The handbook expands trait coverage with many new protocols beyond the previous widely used version.
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The handbook is intended to improve data quality and comparability for local to global studies of plant–environment relationships.

Plant functional traits (morphological, physiological, phenological traits of plants) measured using standardised protocols

Standardised measurement protocols and procedures for quantifying variation in plant functional traits to predict species’ responses, effects on ecosystem properties, and to enable comparable local-to-global ecological analyses

Publication Details
Publication Date
2013-04-25
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Authors
M. Syndonia Bret‐Harte
John Hodgson
Sandra Lavorel
Lourens Poorter
Peter B. Reich
Hans ter Steege
Nina Buchmann
Joseph M. Craine
Ian J. Wright
A. Carla Staver
William K. Cornwell
Marcel G. A. van der Heijden
Sandra Dı́az
Lucas Enrico
Juli G. Pausas
Éric Garnier
Erik J. Veneklaas
Peter Poschlod
Lawren Sack
Natalia Pérez Harguindeguy
Hendrik Poorter
Pedro Jaureguiberry
Diego E. Gurvich
Carlos Urcelay
Peter M. Ray
Arjen C. de Vos
Guillermo Funes
Fabien Quétier
K. Thompson
Huw D. Morgan
B. Blonder
María V. Vaieretti
Georgina Conti
Sâmia Aquino
J. H. C. Cornelissen
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