On islands, evolutionary but not functional originality is rare
Veron, S.; Pellens, R.; Kondratyeva, A.; Grandcolas, P.; Govaerts, R.; Robuchon, M.; Mouchet, M.
Show abstract
Functionally and evolutionary original species are those whose traits or evolutionary history are shared by few others in a given set. These original species promote ecosystem multifunctionality, the ability to cope with an uncertain future, future benefits to society and therefore have a high conservation value. A potential signal of their extinction risks is their rarity (stating for geographic range-restriction in this study). On islands, life in isolation conducted to the rise of a multitude of original forms and functions as well as to high rates of endemism. Not only patterns and processes of insular originality are unexplained but the relationship between originality and rarity is still unknown. The aim of this study is to assess how original insular species are, to explore whether original species are rare or not and to investigate the factors that may explain the rarity of original species. We first compared the functional and evolutionary originality of monocotyledon species and whether continental or insular species were more original. We found that species restricted to islands were more original than continental species and, although functionally and evolutionary original species were dissimilar, many occurred on similar territories so that regional conservation strategies may allow to conserve these distinct forms. Yet, evolutionary original species were significantly more range-restricted than those which were distinct in their traits. Reflecting their rarity, evolutionary original species had low dispersal abilities and were found on islands where settlement may have been facilitated. On the opposite, functionally original species could reach a wider set of islands by being transported on long-distances. While some mechanisms may both explain rarity and originality such as extinctions, others may be specific to each of these biodiversity facets, in particular diversification, niche shift and expansion, and dispersal power. Implications for conservation are huge: original species are range-restricted and mostly found in the most threatened systems of the world, i.e. islands, endangering the reservoir of features against an uncertain future.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Spatial and lineage dependent processes underpin floristic assembly in the megadiverse Eastern South American mountains 94%
- Global biogeographical regions of freshwater fish species 93%
- Effects of time and isolation on plant diversity: testing island biogeography theory with an eco-evolutionary model 93%
Similar papers in this journal
- Evolutionary heritage shapes tree distributions along an Amazon-to-Andes elevation gradient 92%
- Climatic sensitivity of species’ vegetative and reproductive phenology in a Hawaiian montane wet forest 91%
- Unveiling how herpetofauna cope with land-use changes--insights from forest-cashew-rice landscapes in West Africa 91%
Similar papers in this journal
- Elevated human impact on islands increases the introduction and extinction status of native insular reptiles 95%
- Universality in biodiversity patterns: Variation in species-temperature and species-productivity relationships reveals a prominent role of productivity in diversity gradients 93%
- Disharmony of the world’s island floras 92%
Similar papers in this journal
- Combined effects of bird extinctions and introductions in oceanic islands: decreased functional diversity despite increased species richness 94%
- Genetic diversity varies with species traits and latitude in predatory soil arthropods (Myriapoda: Chilopoda) 93%
- Biological traits of seabirds predict extinction risk and vulnerability to anthropogenic threats 92%
Similar papers in this journal
- Allopatric speciation is more prevalent than parapatric ecological divergence in a recent high-Andean diversification (Asteraceae: Linochilus) 94%
- Ecological niche divergence or ecological niche partitioning in a widespread Neotropical bird lineage 94%
- Characterization of habitat requirements of European fishing spiders 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.