Published July 2019 | Version v1
Journal article

An integrated phenotypic trait-network in thermo-Mediterranean vegetation describing alternative, coexisting resource-use strategies

  • 1. Biodiversity Conservation Laboratory, Department of Environment, University of the Aegean, 81100 Mytilene, Lesbos (Greece)
  • 2. Water and Air Quality Laboratory, Department of Environment, University of the Aegean, 81100 Mytilene, Lesbos (Greece)
  • 3. Institute of Industrial and Forage Crops, 41335 Larisa (Greece)
  • 4. Department of Ecology and Systematics, Faculty of Biology, National and Kapodistrian University of Athens, 15784 (Greece)

Description

Highlights: • Inter and intra-specific phenotypic variation stabilises ecosystem function. • We studied phenotypic integration patterns in thermo-Mediterranean vegetation. • And found a spectrum of alternative, coexisting, resource-use strategies • Phenotypic plasticity aided complementarity among functionally distinctive species. • And defined the breadth of species' climatic niches -- Abstract: Vascular plants have been found to align along globally-recognised resource-allocation trade-offs among specific functional traits. Genetic constrains and environmental pressures limit the spectrum of viable resource-use strategies employed by plant species. While conspecific plants have often been described as identical, intraspecific variation facilitates species coexistence and evolutionary potential. This study attempts to link an individual's phenotype to its environmental tolerance and ecosystem function. We hypothesised that: (1) seasonal variation in water availability has selected for tight phenotypic integration patterns that shape Mediterranean vegetation; however, (2) coexisting species employ alternative resource-use strategies to avoid competitive exclusion; specifically (3) species with smaller climatic niches (i.e. potential distributions) display higher functional diversity. We examined the interdependence among and the sources of variation within 11 functional traits, reflecting whole-plant economics (e.g. construction costs, hydraulics, defences, water storage capacity), from nine dominant, thermo-Mediterranean species measured across a wide environmental and geographic gradient. Furthermore, we delineated the phenotypic and climatic hypervolumes of each studied species to test for climatic niche overlap and functional distinctiveness. By adopting this multidimensional trait-based approach we detected fundamental phenotypic integration patterns that define thermo-Mediterranean species regardless of life history strategy. The studied traits emerged intercorrelated shaping a resource-allocation spectrum. Significant intraspecific variability in most measured traits allowed for functional distinctiveness among the measured species. Higher functional diversity was observed in species restricted within narrower climatic niches. Our results support our initial hypotheses. The studied functional traits collectively formed an integrated space of viable phenotypic expressions; however, phenotypic plasticity enables functionally distinctive species to succeed complementary in a given set of environmental conditions. Functional variability among coexisting individuals defined species' climatic niches within the trait-spectrum permitted by Mediterranean conditions. Ultimately, a species establishment in a locality depends on the extent that it can shift its trait values.

Additional details

Identifiers

DOI
10.1016/j.scitotenv.2019.04.030;
PII
S0048969719315438;

Publishing Information

Journal Title
Science of the Total Environment
Journal Volume
672
Journal Page Range
p. 583-592
ISSN
0048-9697
CODEN
STENDL

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
55060438
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
ECOSYSTEMS; GENETICS; HYDRAULICS; HYPOTHESIS; PHENOTYPE; PLASTICITY; SEASONAL VARIATIONS; SPECTRA
Descriptors DEC
BIOLOGY; FLUID MECHANICS; MECHANICAL PROPERTIES; MECHANICS; VARIATIONS

Optional Information

Copyright
Copyright (c) 2019 Elsevier B.V. All rights reserved.