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Phylogenetic Conservatism and Climate Factors Shape Flowering Phenology in Alpine Meadows

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Journal Oecologia
Date 2016 Jun 29
PMID 27351544
Citations 5
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Abstract

The study of phylogenetic conservatism in alpine plant phenology is critical for predicting climate change impacts; currently we have a poor understanding of how phylogeny and climate factors interactively influence plant phenology. Therefore, we explored the influence of phylogeny and climate factors on flowering phenology in alpine meadows. For two different types of alpine plant communities, we recorded phenological data, including flowering peak, first flower budding, first flowering, first fruiting and the flowering end for 62 species over the course of 5 years (2008-2012). From sequences in two plastid regions, we constructed phylogenetic trees. We used Blomberg's K and Pagel's lambda to assess the phylogenetic signal in phenological traits and species' phenological responses to climate factors. We found a significant phylogenetic signal in the date of all reproductive phenological events and in species' phenological responses to weekly day length and temperature. The number of species in flower was strongly associated with the weekly day lengths and followed by the weekly temperature prior to phenological activity. Based on phylogenetic eigenvector regression (PVR) analysis, we found a highly shared influence of phylogeny and climate factors on alpine species flowering phenology. Our results suggest the phylogenetic conservatism in both flowering and fruiting phenology may depend on the similarity of responses to external environmental cues among close relatives.

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References
1.
Waser N . Pollinator availability as a determinant of flowering time in ocotillo (Fouquieria splendens). Oecologia. 2017; 39(1):107-121. DOI: 10.1007/BF00346001. View

2.
Callaway R, Brooker R, Choler P, Kikvidze Z, Lortie C, Michalet R . Positive interactions among alpine plants increase with stress. Nature. 2002; 417(6891):844-8. DOI: 10.1038/nature00812. View

3.
Sherry R, Zhou X, Gu S, Arnone 3rd J, Schimel D, Verburg P . Divergence of reproductive phenology under climate warming. Proc Natl Acad Sci U S A. 2006; 104(1):198-202. PMC: 1713188. DOI: 10.1073/pnas.0605642104. View

4.
Pei N, Lian J, Erickson D, Swenson N, Kress W, Ye W . Exploring tree-habitat associations in a Chinese subtropical forest plot using a molecular phylogeny generated from DNA barcode loci. PLoS One. 2011; 6(6):e21273. PMC: 3119057. DOI: 10.1371/journal.pone.0021273. View

5.
Wiens J, Ackerly D, Allen A, Anacker B, Buckley L, Cornell H . Niche conservatism as an emerging principle in ecology and conservation biology. Ecol Lett. 2010; 13(10):1310-24. DOI: 10.1111/j.1461-0248.2010.01515.x. View