Author:
Behroozian Maryam,Ejtehadi Hamid,Memariani Farshid,Pierce Simon,Mesdaghi Mansour
Abstract
AbstractEndemic species are believed to converge on narrow ranges of traits, with rarity reflecting adaptation to specific environmental regimes. We hypothesized that endemism is characterized by limited trait variability and environmental tolerances in two Dianthus species (Dianthus pseudocrinitus and Dianthus polylepis) endemic to the montane steppes of northeastern Iran. We measured leaf functional traits and calculated Grime’s competitor/stress-tolerator/ruderal (CSR) adaptive strategies for these and co-occurring species in seventy-five 25-m2 quadrats at 15 sites, also measuring a range of edaphic, climatic, and topographic parameters. While plant communities converged on the stress-tolerator strategy, D. pseudocrinitus exhibited functional divergence from S- to R-selected (C:S:R = 12.0:7.2:80.8% to 6.8:82.3:10.9%). Canonical correspondence analysis, in concert with Pearson’s correlation coefficients, suggested the strongest associations with elevation, annual temperature, precipitation seasonality, and soil fertility. Indeed, variance (s2) in R- and S-values for D. pseudocrinitus at two sites was exceptionally high, refuting the hypothesis of rarity via specialization. Rarity, in this case, is probably related to recent speciation by polyploidy (neoendemism) and dispersal limitation. Dianthus polylepis, in contrast, converged towards stress-tolerance. ‘Endemism’ is not synonymous with ‘incapable’, and polyploid neoendemics promise to be particularly responsive to conservation.
Publisher
Springer Science and Business Media LLC
Reference54 articles.
1. Manne, L. L. & Pimm, S. L. Beyond eight forms of rarity: which species are threatened and which will be next?. Anim. Conserv. 4, 221–230 (2001).
2. Munson, S. M. & Sher, A. A. Long-term shifts in the phenology of rare and endemic Rocky Mountain plants. Am. J. Bot. 102, 268–1276 (2015).
3. Pierce, S. et al. A global method for calculating plant CSR ecological strategies applied across biomes world-wide. Funct. Ecol. 215, 495–505 (2017).
4. Grime, J. P. & Pierce, S. The evolutionary strategies that shape ecosystems 264 (Wiley-Blackwell, Chichester, 2012).
5. Grime, J. P. Vegetation classification by reference to strategies. Nature 250, 26–31 (1974).
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