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Phylogenetic diversity of the Coastal forests of Kenya: Role of sacred Kaya forests and Red listed species in the conservation of evolutionary history
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The remnant forest fragments along the Kenyan coast constitute a
globally important biodiversity hotspot, characterized by exceptional
species richness and high levels of endemism. However, these ecosystems
are increasingly threatened by habitat fragmentation, land-use change,
and accelerating species extinctions. Despite their recognized
ecological importance, limited understanding of the evolutionary history
embedded within these forests constrains the development of effective
conservation strategies aimed at mitigating biodiversity loss and
sustaining key ecosystem functions. In this study, we assess patterns of
phylogenetic diversity across coastal forest fragments in Kenya,
examining their relationships with protection status, IUCN Red List
threat categories, endemic species, and implications for conservation
planning. Using data collected through standardized and intensive
vegetation sampling, we calculated multiple phylogenetic diversity
metrics, including mean pairwise distance (MPD), mean nearest taxon
distance (MNTD), and Faith’s phylogenetic diversity (PD). To evaluate
departures from random assembly, we applied null models to generate
standardized effect sizes (sesMPD, sesMNTD, and sesPD). Our results
provide the first comprehensive insight into the evolutionary history of
plant species in Kenya’s coastal forests. We demonstrate that formal
forest reserves alone are insufficient to conserve the full breadth of
evolutionary history without incorporating sacred forest fragments.
Notably, several sacred forests exhibited higher phylogenetic diversity
than protected reserves, highlighting their critical role in conserving
distinct evolutionary lineages and serving as seed sources for
biologically unique species. Connectivity between sacred and protected
forests therefore emerges as essential for enhancing dispersal and
maintaining evolutionary processes. Furthermore, species classified
under higher IUCN Red List threat categories contributed
disproportionately to overall evolutionary history, with this
contribution increasing with extinction risk. These findings underscore
the importance of adopting phylogenetically informed conservation
approaches that complement traditional taxonomic metrics and emphasize
the protection of threatened species to prevent disproportionate losses
of evolutionary history.
Title: Phylogenetic diversity of the Coastal forests of Kenya: Role of sacred Kaya forests and Red listed species in the conservation of evolutionary history
Description:
The remnant forest fragments along the Kenyan coast constitute a
globally important biodiversity hotspot, characterized by exceptional
species richness and high levels of endemism.
However, these ecosystems
are increasingly threatened by habitat fragmentation, land-use change,
and accelerating species extinctions.
Despite their recognized
ecological importance, limited understanding of the evolutionary history
embedded within these forests constrains the development of effective
conservation strategies aimed at mitigating biodiversity loss and
sustaining key ecosystem functions.
In this study, we assess patterns of
phylogenetic diversity across coastal forest fragments in Kenya,
examining their relationships with protection status, IUCN Red List
threat categories, endemic species, and implications for conservation
planning.
Using data collected through standardized and intensive
vegetation sampling, we calculated multiple phylogenetic diversity
metrics, including mean pairwise distance (MPD), mean nearest taxon
distance (MNTD), and Faith’s phylogenetic diversity (PD).
To evaluate
departures from random assembly, we applied null models to generate
standardized effect sizes (sesMPD, sesMNTD, and sesPD).
Our results
provide the first comprehensive insight into the evolutionary history of
plant species in Kenya’s coastal forests.
We demonstrate that formal
forest reserves alone are insufficient to conserve the full breadth of
evolutionary history without incorporating sacred forest fragments.
Notably, several sacred forests exhibited higher phylogenetic diversity
than protected reserves, highlighting their critical role in conserving
distinct evolutionary lineages and serving as seed sources for
biologically unique species.
Connectivity between sacred and protected
forests therefore emerges as essential for enhancing dispersal and
maintaining evolutionary processes.
Furthermore, species classified
under higher IUCN Red List threat categories contributed
disproportionately to overall evolutionary history, with this
contribution increasing with extinction risk.
These findings underscore
the importance of adopting phylogenetically informed conservation
approaches that complement traditional taxonomic metrics and emphasize
the protection of threatened species to prevent disproportionate losses
of evolutionary history.
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