A starting guide to root ecology: strengthening ecological concepts and standardising root classification, sampling, processing and trait measurements

Введение в экологию корней: укрепление экологических концепций и стандартизация классификации корней, отбора проб, обработки и измерений признаков
Colleen M. Iversen, Hans Lambers, Michael Scherer‐Lorenzen, Ivano Brunner, Arthur Geßler, Nadejda A. Soudzilovskaia, Alexandra Weigelt, Johannes H. C. Cornelissen, Éric Garnier, Štěpán Janeček, Larry M. York, Nina Wurzburger, Monique Weemstra, Grégoire T. Freschet, Alexia Stokes, Catherine Roumet, Agnieszka Bagniewska‐Zadworna, Michael McCormack, Hendrik Poorter, Sarah E. Hobbie, Sarah A. Batterman, Boris Rewald, Liesje Mommer, A. Glyn Bengough, Ina C. Meier, Loïc Pagès, Louise H. Comas, Jitka Klimešová, Marcin Zadworny, Johannes A. Postma, Thomas S. Adams, Elison B. Blancaflor, Catherine Picon‐Cochard, Laura Rose, Peter Ryser, Tao Sun, Oscar J. Valverde‐Barrantes, Moemy Gomes de Moraes, Verity Salmon, Nishanth Tharayil
2021-10-05

root classification and dissectionroot ecologyroot sampling, processing and storageroot trait measurementsstandardised methods
In the context of a recent massive increase in research on plant root functions and their impact on the environment, root ecologists currently face many important challenges to keep on generating cutting-edge, meaningful and integrated knowledge. Consideration of the below-ground components in plant and ecosystem studies has been consistently called for in recent decades, but methodology is disparate and sometimes inappropriate. This handbook, based on the collective effort of a large team of experts, will improve trait comparisons across studies and integration of information across databases by providing standardised methods and controlled vocabularies. It is meant to be used not only as starting point by students and scientists who desire working on below-ground ecosystems, but also by experts for consolidating and broadening their views on multiple aspects of root ecology. Beyond the classical compilation of measurement protocols, we have synthesised recommendations from the literature to provide key background knowledge useful for: (1) defining below-ground plant entities and giving keys for their meaningful dissection, classification and naming beyond the classical fine-root vs coarse-root approach; (2) considering the specificity of root research to produce sound laboratory and field data; (3) describing typical, but overlooked steps for studying roots (e.g. root handling, cleaning and storage); and (4) gathering metadata necessary for the interpretation of results and their reuse. Most importantly, all root traits have been introduced with some degree of ecological context that will be a foundation for understanding their ecological meaning, their typical use and uncertainties, and some methodological and conceptual perspectives for future research. Considering all of this, we urge readers not to solely extract protocol recommendations for trait measurements from this work, but to take a moment to read and reflect on the extensive information contained in this broader guide to root ecology, including sections I-VII and the many introductions to each section and root trait description. Finally, it is critical to understand that a major aim of this guide is to help break down barriers between the many subdisciplines of root ecology and ecophysiology, broaden researchers' views on the multiple aspects of root study and create favourable conditions for the inception of comprehensive experiments on the role of roots in plant and ecosystem functioning.
1
A major aim is to harmonize practices across root ecology subdisciplines to enable integrated experiments on root roles in plant and ecosystem functioning.
2
All root traits are presented with ecological context, discussing their meaning, typical uses, uncertainties, and methodological and conceptual perspectives for future research.
3
It synthesises recommendations to redefine and classify below-ground plant entities beyond the simple fine-root vs coarse-root dichotomy.
4
The guide details specific laboratory and field procedures, including often-overlooked steps like root handling, cleaning, storage, and necessary metadata collection for result interpretation and reuse.
5
The paper provides a comprehensive handbook with standardized methods and controlled vocabularies to improve comparability of root trait measurements across studies and databases.

Plant roots and below-ground plant entities (root systems, root categories) studied in root ecology

Standardisation and methodological guidance for classification, sampling, processing, trait measurements, controlled vocabularies, metadata and ecological interpretation of root traits to improve comparability and integration across studies

Publication Details
Publication Date
2021-10-05
Journal
Publisher
ISSN
Cited by
663
Access Type
Author Information
Authors
Colleen M. Iversen
Hans Lambers
Michael Scherer‐Lorenzen
Ivano Brunner
Arthur Geßler
Nadejda A. Soudzilovskaia
Alexandra Weigelt
Johannes H. C. Cornelissen
Éric Garnier
Štěpán Janeček
Larry M. York
Nina Wurzburger
Monique Weemstra
Grégoire T. Freschet
Alexia Stokes
Catherine Roumet
Agnieszka Bagniewska‐Zadworna
Michael McCormack
Hendrik Poorter
Sarah E. Hobbie
Sarah A. Batterman
Boris Rewald
Liesje Mommer
A. Glyn Bengough
Ina C. Meier
Loïc Pagès
Louise H. Comas
Jitka Klimešová
Marcin Zadworny
Johannes A. Postma
Thomas S. Adams
Elison B. Blancaflor
Catherine Picon‐Cochard
Laura Rose
Peter Ryser
Tao Sun
Oscar J. Valverde‐Barrantes
Moemy Gomes de Moraes
Verity Salmon
Nishanth Tharayil
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%