Literature DB >> 31365762

Functional composition of epiphyte communities in the Colombian Andes.

Claudia Milena Agudelo1,2, Ana Maria Benavides2,3, Tyeen Taylor4, Kenneth J Feeley4, Alvaro Duque1.   

Abstract

We identify changes in the functional composition of vascular epiphytes along a tropical elevational gradient with the aim of quantifying the role of climate in determining the assembly of epiphyte communities. We measured seven leaf functional traits (leaf area, specific leaf area, leaf dry-matter content, leaf thickness, force to punch, stomatal density, and potential conductance index) in the 163 most abundant epiphyte species recorded across 10 sites located along an elevational gradient between 60 and 2,900 m above sea level in the Colombian Andes. We grouped the epiphyte species into seven hierarchical functional groups according to their most characteristic leaf traits. Along the elevational gradient, the two main independent leaf trait dimensions that distinguished community assemblages were defined primarily by leaf area-photosynthetic (LAPS) and mass-carbon (LMCS) gradients. Mean annual temperature was the main determinant of species position along LAPS. In contrast, local changes in specific leaf area due to variation in the epiphytes' relative height of attachment was the main determinant of their position along the LMCS. Our findings indicate that epiphytic plant leaves have evolved to optimize and enhance photosynthesis through a leaf area-based strategy and carbon acquisition through investments in construction costs of leaf area per unit of biomass that aim to regulate light capture and tissue development. Given that most studies of plant functional traits neglect vascular epiphytes, our quantification of the multiple dimensions of epiphyte leaf traits greatly augments our understanding of vascular plant function and adaptation to changing environments.
© 2019 by the Ecological Society of America.

Entities:  

Keywords:  functional groups; leaf economic traits; leaf spectrum; specific leaf area; stomatal conductance; tropical Andean forests; vascular epiphytes

Mesh:

Year:  2019        PMID: 31365762     DOI: 10.1002/ecy.2858

Source DB:  PubMed          Journal:  Ecology        ISSN: 0012-9658            Impact factor:   5.499


  1 in total

1.  Biovera-Epi: A new database on species diversity, community composition and leaf functional traits of vascular epiphytes along gradients of elevation and forest-use intensity in Mexico.

Authors:  Valeria Guzmán-Jacob; Patrick Weigelt; Dylan Craven; Gerhard Zotz; Thorsten Krömer; Holger Kreft
Journal:  Biodivers Data J       Date:  2021-10-07
  1 in total

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