Phylogenetic diversity, functional trait diversity and extinction: avoiding tipping points and worst-case losses

Philos Trans R Soc Lond B Biol Sci. 2015 Feb 19;370(1662):20140011. doi: 10.1098/rstb.2014.0011.

Abstract

The phylogenetic diversity measure, ('PD'), measures the relative feature diversity of different subsets of taxa from a phylogeny. At the level of feature diversity, PD supports the broad goal of biodiversity conservation to maintain living variation and option values. PD calculations at the level of lineages and features include those integrating probabilities of extinction, providing estimates of expected PD. This approach has known advantages over the evolutionarily distinct and globally endangered (EDGE) methods. Expected PD methods also have limitations. An alternative notion of expected diversity, expected functional trait diversity, relies on an alternative non-phylogenetic model and allows inferences of diversity at the level of functional traits. Expected PD also faces challenges in helping to address phylogenetic tipping points and worst-case PD losses. Expected PD may not choose conservation options that best avoid worst-case losses of long branches from the tree of life. We can expand the range of useful calculations based on expected PD, including methods for identifying phylogenetic key biodiversity areas.

Keywords: breed diversity; expected phylogenetic diversity; functional trait diversity; key biodiversity areas; phylogenetic risk analysis; tipping point.

MeSH terms

  • Adaptation, Biological / genetics
  • Adaptation, Biological / physiology*
  • Biodiversity*
  • Conservation of Natural Resources / methods*
  • Extinction, Biological*
  • Models, Biological*
  • Phylogeny*