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Title: Bootstrapping outperforms community‐weighted approaches for estimating the shapes of phenotypic distributions

Journal Article · · Methods in Ecology and Evolution (Online)
ORCiD logo [1]; ORCiD logo [2]; ORCiD logo [2]; ORCiD logo [3]; ORCiD logo [4]; ORCiD logo [5]; ORCiD logo [6]; ORCiD logo [7]; ORCiD logo [8]; ORCiD logo [9]; ORCiD logo [10]; ORCiD logo [10]; ORCiD logo [2]; ORCiD logo [4]
  1. Department of Geography University at Buffalo Buffalo New York USA
  2. Department of Biological Sciences and Bjerknes Centre for Climate Research University of Bergen Bergen Norway
  3. Département de Sciences Biologiques Université de Montréal Montréal Quebec Canada, Québec Centre for Biodiversity Sciences Montréal Quebec Canada
  4. Department of Ecology and Evolutionary Biology University of Arizona Tucson Arizona USA
  5. World Agroforestry Centre (ICRAF) Nairobi Kenya
  6. World Resources Institute Washington District of Columbia USA
  7. Department of Biology Kenyon College Gambier Ohio USA
  8. Department of Biology University of Waterloo Waterloo Ontario Canada
  9. California Department of Water Resources West Sacramento California USA
  10. Swiss Federal Institute of Aquatic Science and Technology (Eawag) Dübendorf Switzerland

Abstract Estimating phenotypic distributions of populations and communities is central to many questions in ecology and evolution. These distributions can be characterized by their moments (mean, variance, skewness and kurtosis) or diversity metrics (e.g. functional richness). Typically, such moments and metrics are calculated using community‐weighted approaches (e.g. abundance‐weighted mean). We propose an alternative bootstrapping approach that allows flexibility in trait sampling and explicit incorporation of intraspecific variation, and show that this approach significantly improves estimation while allowing us to quantify uncertainty. We assess the performance of different approaches for estimating the moments of trait distributions across various sampling scenarios, taxa and datasets by comparing estimates derived from simulated samples with the true values calculated from full datasets. Simulations differ in sampling intensity (individuals per species), sampling biases (abundance, size), trait data source (local vs. global) and estimation method (two types of community‐weighting, two types of bootstrapping). We introduce the traitstrap R package, which contains a modular and extensible set of bootstrapping and weighted‐averaging functions that use community composition and trait data to estimate the moments of community trait distributions with their uncertainty. Importantly, the first function in the workflow, trait_fill , allows the user to specify hierarchical structures (e.g. plot within site, experiment vs. control, species within genus) to assign trait values to each taxon in each community sample. Across all taxa, simulations and metrics, bootstrapping approaches were more accurate and less biased than community‐weighted approaches. With bootstrapping, a sample size of 9 or more measurements per species per trait generally included the true mean within the 95% CI. It reduced average percent errors by 26%–74% relative to community‐weighting. Random sampling across all species outperformed both size‐ and abundance‐biased sampling. Our results suggest randomly sampling ~9 individuals per sampling unit and species, covering all species in the community and analysing the data using nonparametric bootstrapping generally enable reliable inference on trait distributions, including the central moments, of communities. By providing better estimates of community trait distributions, bootstrapping approaches can improve our ability to link traits to both the processes that generate them and their effects on ecosystems.

Sponsoring Organization:
USDOE
OSTI ID:
1998958
Alternate ID(s):
OSTI ID: 1998959
Journal Information:
Methods in Ecology and Evolution (Online), Journal Name: Methods in Ecology and Evolution (Online) Vol. 14 Journal Issue: 10; ISSN 2041-210X
Publisher:
Wiley-BlackwellCopyright Statement
Country of Publication:
United Kingdom
Language:
English

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