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Coverage‐based rarefaction and extrapolation: standardizing samples by completeness rather than size

Ecology · 2012 · Vol. 93(12) · pp. 2533–2547
Anne ChaoLou Jost

Abstract

We propose an integrated sampling, rarefaction, and extrapolation methodology to compare species richness of a set of communities based on samples of equal completeness (as measured by sample coverage) instead of equal size. Traditional rarefaction or extrapolation to equal-sized samples can misrepresent the relationships between the richnesses of the communities being compared because a sample of a given size may be sufficient to fully characterize the lower diversity community, but insufficient to characterize the richer community. Thus, the traditional method systematically biases the degree of differences between community richnesses. We derived a new analytic method for seamless coverage-based rarefaction and extrapolation. We show that this method yields less biased comparisons of richness between communities, and manages this with less total sampling effort. When this approach is integrated with an adaptive coverage-based stopping rule during sampling, samples may be compared directly without rarefaction, so no extra data is taken and none is thrown away. Even if this stopping rule is not used during data collection, coverage-based rarefaction throws away less data than traditional size-based rarefaction, and more efficiently finds the correct ranking of communities according to their true richnesses. Several hypothetical and real examples demonstrate these advantages.

Ecology and Vegetation Dynamics StudiesEvolution and Genetic DynamicsPlant and animal studiesRarefaction (ecology)ExtrapolationCompleteness (order theory)Species richnessStopping ruleSampling (signal processing)Sample size determinationStatisticsMathematicsEconometrics

MeSH terms

AlgorithmsAnimalsEnvironmental MonitoringModels, BiologicalPopulation DensitySpecies SpecificitySelection BiasEcosystemOrchidaceaeGenetic Speciation

Funding

  • McGill University
Citations
2,096
FWCI
43.20
field-weighted impact
References
55
Percentile
100%
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Citations per year
References
Measuring biological diversity
Choice Reviews Online · 2004 · 6,684 citations
Marine Benthic Diversity: A Comparative Study
The American Naturalist · 1968 · 2,434 citations
Estimating terrestrial biodiversity through extrapolation
Philosophical Transactions of the Royal Society B Biological Sciences · 1994 · 4,553 citations
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