Literature DB >> 15869656

Conventional detection methodology is limiting our ability to understand the roles and functions of fine roots.

Alain Pierret1, Christopher J Moran, Claude Doussan.   

Abstract

We lack a thorough conceptual and functional understanding of fine roots. Studies that have focused on estimating the quantity of fine roots provide evidence that they dominate overall plant root length. We need a standard procedure to quantify root length/biomass that takes proper account of fine roots. Here we investigated the extent to which root length/biomass may be underestimated using conventional methodology, and examined the technical reasons that could explain such underestimation. Our discussion is based on original X-ray-based measurements and on a literature review spanning more than six decades. We present evidence that root-length recovery depends strongly on the observation scale/spatial resolution at which measurements are carried out; and that observation scales/resolutions adequate for fine root detection have an adverse impact on the processing times required to obtain precise estimates. We conclude that fine roots are the major component of root systems of most (if not all) annual and perennial plants. Hence plant root systems could be much longer, and probably include more biomass, than is widely accepted.

Mesh:

Substances:

Year:  2005        PMID: 15869656     DOI: 10.1111/j.1469-8137.2005.01389.x

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  22 in total

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3.  Is the simple auger coring method reliable for below-ground standing biomass estimation in Eucalyptus forest plantations?

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Review 4.  The Quest for Understanding Phenotypic Variation via Integrated Approaches in the Field Environment.

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5.  Understanding deep roots and their functions in ecosystems: an advocacy for more unconventional research.

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6.  Three-Dimensional Time-Lapse Analysis Reveals Multiscale Relationships in Maize Root Systems with Contrasting Architectures.

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Review 7.  A starting guide to root ecology: strengthening ecological concepts and standardising root classification, sampling, processing and trait measurements.

Authors:  Grégoire T Freschet; Loïc Pagès; Colleen M Iversen; Louise H Comas; Boris Rewald; Catherine Roumet; Jitka Klimešová; Marcin Zadworny; Hendrik Poorter; Johannes A Postma; Thomas S Adams; Agnieszka Bagniewska-Zadworna; A Glyn Bengough; Elison B Blancaflor; Ivano Brunner; Johannes H C Cornelissen; Eric Garnier; Arthur Gessler; Sarah E Hobbie; Ina C Meier; Liesje Mommer; Catherine Picon-Cochard; Laura Rose; Peter Ryser; Michael Scherer-Lorenzen; Nadejda A Soudzilovskaia; Alexia Stokes; Tao Sun; Oscar J Valverde-Barrantes; Monique Weemstra; Alexandra Weigelt; Nina Wurzburger; Larry M York; Sarah A Batterman; Moemy Gomes de Moraes; Štěpán Janeček; Hans Lambers; Verity Salmon; Nishanth Tharayil; M Luke McCormack
Journal:  New Phytol       Date:  2021-11       Impact factor: 10.323

8.  DNA analysis of soil extracts can be used to investigate fine root depth distribution of trees.

Authors:  Sean L Bithell; Lucy T T Tran-Nguyen; Mark N Hearnden; Diana M Hartley
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9.  Tomato Ve resistance locus; defense or growth.

Authors:  Ross N Nazar; Xin Xu; Hakeem Shittu; Alexander Kurosky; Jane Robb
Journal:  Planta       Date:  2018-03-07       Impact factor: 4.116

10.  An in situ approach to detect tree root ecology: linking ground-penetrating radar imaging to isotope-derived water acquisition zones.

Authors:  Marney E Isaac; Luke C N Anglaaere
Journal:  Ecol Evol       Date:  2013-04-10       Impact factor: 2.912

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