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Open AccessJournal ArticleDOI

A global Fine-Root Ecology Database to address below-ground challenges in plant ecology.

TLDR
This Viewpoint addresses the need for a centralized fine-root trait database, and introduces the Fine-Root Ecology Database (FRED), which so far includes > 70 000 observations encompassing a broad range of root traits and also includes associated environmental data.
Abstract
Variation and tradeoffs within and among plant traits are increasingly being harnessed by empiricists and modelers to understand and predict ecosystem processes under changing environmental conditions. While fine roots play an important role in ecosystem functioning, fine-root traits are underrepresented in global trait databases. This has hindered efforts to analyze fine-root trait variation and link it with plant function and environmental conditions at a global scale. This Viewpoint addresses the need for a centralized fine-root trait database, and introduces the Fine-Root Ecology Database (FRED, http://roots.ornl.gov) which so far includes > 70 000 observations encompassing a broad range of root traits and also includes associated environmental data. FRED represents a critical step toward improving our understanding of below-ground plant ecology. For example, FRED facilitates the quantification of variation in fine-root traits across root orders, species, biomes, and environmental gradients while also providing a platform for assessments of covariation among root, leaf, and wood traits, the role of fine roots in ecosystem functioning, and the representation of fine roots in terrestrial biosphere models. Continued input of observations into FRED to fill gaps in trait coverage will improve our understanding of changes in fine-root traits across space and time.

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Journal ArticleDOI

TRY plant trait database : Enhanced coverage and open access

Jens Kattge, +754 more
TL;DR: The extent of the trait data compiled in TRY is evaluated and emerging patterns of data coverage and representativeness are analyzed to 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.
Journal ArticleDOI

Evolutionary history resolves global organization of root functional traits

TL;DR: The analysis of a global dataset of 10 functionally important root traits in metabolically active first-order roots suggests that plants have evolved thinner roots since they first emerged in land ecosystems, which has enabled them to markedly improve their efficiency of soil exploration per unit of carbon invested and to reduce their dependence on symbiotic mycorrhizal fungi.
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Multiple facets of biodiversity drive the diversity–stability relationship

TL;DR: It is found that high species richness and phylogenetic diversity stabilize biomass production via enhanced asynchrony in the performance of co-occurring species and enhances ecosystem stability directly, albeit weakly.
References
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Journal ArticleDOI

Leading dimensions in absorptive root trait variation across 96 subtropical forest species

TL;DR: Two major dimensions of root trait variation were found: a diameter-related dimension potentially integrating root construction, maintenance, and persistence with mycorrhizal colonization, and a branching architecture dimension expressing root plastic responses to the environment.
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Root structure–function relationships in 74 species: evidence of a root economics spectrum related to carbon economy

TL;DR: The findings of this study support the existence of a RES representing an axis of trait variation in which root respiration was positively correlated to nitrogen concentration and specific root length and negatively correlated to the root dry matter content, lignin : nitrogen ratio and the remaining mass after decomposition.
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How fundamental plant functional trait relationships scale‐up to trade‐offs and synergies in ecosystem services

TL;DR: In this article, a conceptual framework linking environmental change to changes in ecosystem functioning and changes in ES through plant traits is presented. But the authors focus on interactions between ES resulting from fundamental functional mechanisms.
Journal ArticleDOI

Pampered inside, pestered outside? Differences and similarities between plants growing in controlled conditions and in the field

TL;DR: It is found that the ratio between the daily amount of light and daily temperature (photothermal ratio) was consistently lower under controlled conditions, which may strongly affect a plant's source : sink ratio and hence its overall morphology and physiology.
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