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Open AccessJournal ArticleDOI

TRY - a global database of plant traits

Jens Kattge, +136 more
- Vol. 17, Iss: 9, pp 2905-2935
TLDR
TRY as discussed by the authors is a global database of plant traits, including morphological, anatomical, physiological, biochemical and phenological characteristics of plants and their organs, which can be used for a wide range of research from evolutionary biology, community and functional ecology to biogeography.
Abstract
Plant traits – the morphological, anatomical, physiological, biochemical and phenological characteristics of plants and their organs – determine how primary producers respond to environmental factors, affect other trophic levels, influence ecosystem processes and services and provide a link from species richness to ecosystem functional diversity. Trait data thus represent the raw material for a wide range of research from evolutionary biology, community and functional ecology to biogeography. Here we present the global database initiative named TRY, which has united a wide range of the plant trait research community worldwide and gained an unprecedented buy-in of trait data: so far 93 trait databases have been contributed. The data repository currently contains almost three million trait entries for 69 000 out of the world's 300 000 plant species, with a focus on 52 groups of traits characterizing the vegetative and regeneration stages of the plant life cycle, including growth, dispersal, establishment and persistence. A first data analysis shows that most plant traits are approximately log-normally distributed, with widely differing ranges of variation across traits. Most trait variation is between species (interspecific), but significant intraspecific variation is also documented, up to 40% of the overall variation. Plant functional types (PFTs), as commonly used in vegetation models, capture a substantial fraction of the observed variation – but for several traits most variation occurs within PFTs, up to 75% of the overall variation. In the context of vegetation models these traits would better be represented by state variables rather than fixed parameter values. The improved availability of plant trait data in the unified global database is expected to support a paradigm shift from species to trait-based ecology, offer new opportunities for synthetic plant trait research and enable a more realistic and empirically grounded representation of terrestrial vegetation in Earth system models.

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Citations
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New handbook for standardised measurement of plant functional traits worldwide

TL;DR: 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.
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The world‐wide ‘fast–slow’ plant economics spectrum: a traits manifesto

TL;DR: A single ‘fast–slow’ plant economics spectrum that integrates across leaves, stems and roots is a key feature of the plant universe and helps to explain individual ecological strategies, community assembly processes and the functioning of ecosystems.
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The global spectrum of plant form and function

TL;DR: Analysis of worldwide variation in six major traits critical to growth, survival and reproduction within the largest sample of vascular plant species ever compiled found that occupancy of six-dimensional trait space is strongly concentrated, indicating coordination and trade-offs.
References
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Journal ArticleDOI

Adjustment of structure and function of Hawaiian Metrosideros polymorpha at high vs. low precipitation

TL;DR: The ability of M. polymorpha to establish across a wide range of habitats is associated with adjustments in traits that would enable sustained growth across a dramatic range of moisture supply while simultaneously maintaining as fixed other trait that would contribute to survival through extended drought.
Journal ArticleDOI

Feedback of carbon and nitrogen cycles enhances carbon sequestration in the terrestrial biosphere

TL;DR: In this paper, the Nitrogen Carbon Interaction Model (NCIM) was used to investigate patterns of carbon and nitrogen storage in different compartments of the terrestrial biosphere as a consequence of a rising atmospheric CO2 concentration, in combination with varying levels of nitrogen availability.
Journal ArticleDOI

Relating leaf photosynthetic rate to whole-plant growth: drought and shade effects on seedlings of four Quercus species

TL;DR: Findings suggest an approach to applying short-term physiological measurements to predict the RGR and absolute growth rate of seedlings in a wide range of combinations of irradiance and water supplies.
Journal ArticleDOI

Improving the predictability of global CO2 assimilation rates under climate change

TL;DR: Ziehn et al. as mentioned in this paper used a Bayesian random sampling method to constrain parameters of the Farquhar model of leaf photosynthesis and a model of respiration against a comprehensive set of plant trait data at the leaf level.
Journal ArticleDOI

Global biogeography of plant chemistry: filling in the blanks.

TL;DR: New work, including a paper by Han et al .
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