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A guide to phylogenetic metrics for conservation, community ecology and macroecology.

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TLDR
Existing metrics in phylogenetic diversity metrics are organized by expanding on a unifying framework for phylogenetic information to improve the choice, application, and interpretation of phylo‐diversity metrics.
Abstract
The use of phylogenies in ecology is increasingly common and has broadened our understanding of biological diversity. Ecological sub-disciplines, particularly conservation, community ecology and macroecology, all recognize the value of evolutionary relationships but the resulting development of phylogenetic approaches has led to a proliferation of phylogenetic diversity metrics. The use of many metrics across the sub-disciplines hampers potential meta-analyses, syntheses, and generalizations of existing results. Further, there is no guide for selecting the appropriate metric for a given question, and different metrics are frequently used to address similar questions. To improve the choice, application, and interpretation of phylo-diversity metrics, we organize existing metrics by expanding on a unifying framework for phylogenetic information. Generally, questions about phylogenetic relationships within or between assemblages tend to ask three types of question: how much; how different; or how regular? We show that these questions reflect three dimensions of a phylogenetic tree: richness, divergence, and regularity. We classify 70 existing phylo-diversity metrics based on their mathematical form within these three dimensions and identify ‘anchor’ representatives: for α-diversity metrics these are PD (Faith's phylogenetic diversity), MPD (mean pairwise distance), and VPD (variation of pairwise distances). By analysing mathematical formulae and using simulations, we use this framework to identify metrics that mix dimensions, and we provide a guide to choosing and using the most appropriate metrics. We show that metric choice requires connecting the research question with the correct dimension of the framework and that there are logical approaches to selecting and interpreting metrics. The guide outlined herein will help researchers navigate the current jungle of indices.

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Journal ArticleDOI

The Theory of Island Biogeography

TL;DR: Preface to the Princeton Landmarks in Biology Edition vii Preface xi Symbols used xiii 1.
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Responses of Coral-Associated Bacterial Communities to Local and Global Stressors

TL;DR: The evidence presented here supports the hypothesis that microbial communities play important roles in ecological resilience, and encourages a focus on the microbial contributions to resilience for future research.
Journal ArticleDOI

Ecological Diversity: Measuring the Unmeasurable

TL;DR: The key conceptual issues underlying the measurement of ecological diversity are summarized, the indices most commonly used in ecology are surveyed, and their relative suitability is discussed.
References
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Journal ArticleDOI

The Theory of Island Biogeography

TL;DR: Preface to the Princeton Landmarks in Biology Edition vii Preface xi Symbols used xiii 1.
Book

The Theory of Island Biogeography

TL;DR: The Princeton Landmarks in Biology Edition vii Preface xi Symbols Used xiii 1. The Importance of Islands 3 2. Area and Number of Speicies 8 3. Further Explanations of the Area-Diversity Pattern 19 4. The Strategy of Colonization 68 5. Invasibility and the Variable Niche 94 6. Stepping Stones and Biotic Exchange 123 7. Evolutionary Changes Following Colonization 145 8. Prospect 181 Glossary 185 References 193 Index 201
Journal ArticleDOI

APE: Analyses of Phylogenetics and Evolution in R language

TL;DR: UNLABELLED Analysis of Phylogenetics and Evolution (APE) is a package written in the R language for use in molecular evolution and phylogenetics that provides both utility functions for reading and writing data and manipulating phylogenetic trees.
Journal ArticleDOI

UniFrac: a New Phylogenetic Method for Comparing Microbial Communities

TL;DR: The results illustrate that UniFrac provides a new way of characterizing microbial communities, using the wealth of environmental rRNA sequences, and allows quantitative insight into the factors that underlie the distribution of lineages among environments.
Book

The comparative method in evolutionary biology

Paul H. Harvey, +1 more
TL;DR: The comparative method for studying adaptation why worry about phylogeny?
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