4.6 Article

Global hotspots of plant phylogenetic diversity

Journal

NEW PHYTOLOGIST
Volume -, Issue -, Pages -

Publisher

WILEY
DOI: 10.1111/nph.19151

Keywords

conservation; hotspot; macroecology; PD endemism; phylogenetic diversity (PD); phylogenetic endemism; seed plants

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Regions with high unique phylogenetic diversity (PD) are important for conservation. The global distribution of plant PD remains poorly understood, but our analysis using a comprehensive global checklist of vascular plants identifies hotspots of unique plant PD. Our results support three hypotheses: PD is more evenly distributed than species diversity, areas of highest PD do not maximize cumulative PD, and multiple biomes are needed to maximize cumulative PD.
Regions harbouring high unique phylogenetic diversity (PD) are priority targets for conservation. Here, we analyse the global distribution of plant PD, which remains poorly understood despite plants being the foundation of most terrestrial habitats and key to human livelihoods.Capitalising on a recently completed, comprehensive global checklist of vascular plants, we identify hotspots of unique plant PD and test three hypotheses: (1) PD is more evenly distributed than species diversity; (2) areas of highest PD (often called 'hotspots') do not maximise cumulative PD; and (3) many biomes are needed to maximise cumulative PD.Our results support all three hypotheses: more than twice as many regions are required to cover 50% of global plant PD compared to 50% of species; regions that maximise cumulative PD substantially differ from the regions with outstanding individual PD; and while (sub-)tropical moist forest regions dominate across PD hotspots, other forest types and open biomes are also essential.Safeguarding PD in the Anthropocene (including the protection of some comparatively species-poor areas) is a global, increasingly recognised responsibility. Having highlighted countries with outstanding unique plant PD, further analyses are now required to fully understand the global distribution of plant PD and associated conservation imperatives across spatial scales.

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