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- W2895730806 abstract "ABSTRACTBackground: According to modern coexistence theory, ecologically similar species can coexist if fitness differences between them are small, or niche differences between them are large. However, these predictions have not been tested extensively in real systems and are difficult to examine in traits-based studies.Aims: The aim of our study was, by using the carnivorous pitcher plant genus Nepenthes as a model system, to examine (1) species growth ranks as a proxy for fitness; (2) modern coexistence theory at a geographical scale; (3) evidence for pitcher trait-mediated resource partitioning between sympatric Nepenthes species.Methods: We used growth ranks, obtained from a survey of experienced Nepenthes nursery owners, as a proxy for fitness. Multivariate pitcher-, vegetative- or combined-trait distances, computed from morphometric-trait data from the literature were used as proxies for niche differences. Data on global Nepenthes species-pair sympatry was modelled against these fitness and niche di..." @default.
- W2895730806 created "2018-10-12" @default.
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- W2895730806 date "2018-05-04" @default.
- W2895730806 modified "2023-10-16" @default.
- W2895730806 title "Evidence for pitcher trait-mediated coexistence between sympatric <i>Nepenthes</i> pitcher plant species across geographical scales" @default.
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- W2895730806 doi "https://doi.org/10.1080/17550874.2018.1517831" @default.
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