Capturing temporal heterogeneity of communities: a temporal β-diversity based on Hill numbers and time series analysis
Sanchez-Ochoa, D. J.; Gonzalez, E. J.; Arizmendi, M. d. C.; Koleff, P.; Martell-Dubois, R.; Meave, J. A.; Perez-Mendoza, H. A.
Show abstract
Beta-diversity is a term used to refer to the heterogeneity in the composition of species through space or time. Despite a consensus on the advantages of measuring {beta}-diversity using data on species abundances through Hill numbers, we still lack a measure of temporal {beta}-diversity based on this framework. In this paper, we present the mathematical basis for a temporal {beta}-diversity measure, based on both signal processing and Hill numbers theory through the partition of temporal -diversity. The proposed measure was tested in four hypothetical simulated communities with species varying in temporal concurrence and abundance and two empirical data sets. The values of each simulation reflected community heterogeneity and changes in abundance over time. In terms of -diversity, q-values are closely related to total richness (S) and show a negative exponential pattern when they increase. For -diversity, q-value profiles were more variable than -diversity, and different decaying patterns in -diversity can be observed among simulations. Temporal {beta}-diversity shows different patterns, which are principally related to the rate of change between - and -diversity. Our framework provides a direct and objective approach for comparing the heterogeneity of temporal community patterns; this measure can be interpreted as the effective number of completely different unique communities over the sampling period indicating either a larger variety of community structures or higher species heterogeneity through time. This method can be applied to any ecological community that has been monitored over time.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Correspondence Of Newcomb-Benford Number Law With Ecological Processes 92%
- Optimal inventorying and monitoring of taxonomic, phylogenetic and functional diversity 91%
- Taxonomic and functional anuran beta diversity of the subtropical metacommunity respond differentially to environmental and spatial predictors 91%
Similar papers in this journal
- Degrees of compositional shift in tree communities vary along a gradient of temperature change rates over one decade: Application of an individual-based temporal beta diversity concept 92%
- The Hidden Side Of Diversity: Effects Of Imperfect Detection On Multiple Dimensions Of Biodiversity 92%
- SAMPLE: an R package to estimate sampling effort for species' occurrence rates. 91%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Species interactions drive continuous assembly of freshwater communities in stochastic environments 92%
- Using null models to compare bacterial and microeukaryotic metacommunity assembly under shifting environmental conditions 90%
- Understanding PCR Processes to Draw Meaningful Conclusions from Environmental DNA Studies 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.