Additive partitioning of rarefaction curves and species–area relationships: unifying α‐, β‐ and γ‐diversity with sample size and habitat area
- 2 August 2006
- journal article
- Published by Wiley in Ecology Letters
- Vol. 9 (8) , 923-932
- https://doi.org/10.1111/j.1461-0248.2006.00941.x
Abstract
Additive partitioning of species diversity is widely applicable to different kinds of sampling regimes at multiple spatial and temporal scales. In additive partitioning, the diversity within and among samples (α and β) is expressed in the same units of species richness, thus allowing direct comparison of α and β. Despite its broad applicability, there are few demonstrated linkages between additive partitioning and other approaches to analysing diversity. Here, we establish several connections between diversity partitions and patterns of habitat occupancy, rarefaction, and species–area relationships. We show that observed partitions of species richness are equivalent to sample‐based rarefaction curves, and expected partitions from randomization tests are approximately equivalent to individual‐based rarefaction. Additive partitions can also be applied to species–area relationships to determine the relative contributions of factors influencing the β‐diversity among habitat fragments.Keywords
This publication has 45 references indexed in Scilit:
- Temporal Patterns of Species Accumulation in a Survey of Lepidoptera in a Beech-Maple ForestBiodiversity and Conservation, 2005
- Beta diversity of angiosperms in temperate floras of eastern Asia and eastern North AmericaEcology Letters, 2004
- Contrasting effects of habitat quantity and quality on moth communities in fragmented landscapesEcography, 2004
- A unified mathematical framework for the measurement of richness and evenness within and among multiple communitiesOikos, 2004
- Additive Partitioning of Species Diversity across Multiple Spatial Scales: Implications for Regional Conservation of BiodiversityConservation Biology, 2003
- The alpha–beta–regional relationship: providing new insights into local–regional patterns of species richness and scale dependence of diversity componentsEcology Letters, 2002
- Quantifying biodiversity: procedures and pitfalls in the measurement and comparison of species richnessEcology Letters, 2001
- Sampling strategies for the assessment of tree species diversityJournal of Vegetation Science, 1998
- A comparative analysis of nested subset patterns of species compositionOecologia, 1997
- Nested Species-Area Curves and Stochastic Sampling: A New TheoryOikos, 1997