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  4. Above- and below-ground responses to experimental climate forcing in two forb species from montane wooded pastures in Switzerland
 
research article

Above- and below-ground responses to experimental climate forcing in two forb species from montane wooded pastures in Switzerland

Vollenweider, Pierre
•
Hildbrand, Geraldine
•
De Masi, Davide
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November 9, 2022
Functional Ecology

Mountain ecosystems are particularly threatened by ongoing climate change and the species composition of high elevation grasslands is already changing. An open research question is how these ecosystems will adapt to changes in their key environmental constraints. The responses of wooded pastures to experimental climate forcing were analysed in a transplantation experiment conducted downslope, along an elevational temperature and precipitation gradient on the lee side of Jura Mountains, Switzerland (up to +4.17 degrees C and -35% precipitation). To improve mechanistic understanding of biodiversity and biomass decreases in response to transplantation, changes in functional traits within foliage and roots of one ubiquitous (Taraxacum officinale) and one montane (Alchemilla monticola) perennial forb species were investigated. In consequence of transplantation, the two studied species raised their temperature optimum for CO2 assimilation and net photosynthesis yield from 20 to 30 degrees C. During cool periods, the highest rates of leaf gas exchanges were measured at the lower recipient sites. However, an opposite trend was observed during a spring drought and summer warm spell. Regarding the more integrative morpho-anatomical traits, Alchemilla primarily acclimated to warmer temperatures at the recipient sites with increased leaf and foliage rosette size. Missing xeromorphic and/or hydraulic adjustments in foliage and roots, its susceptibility to higher vapour pressure deficits and lower soil moisture availability was thus enhanced. Taraxacum showed adjustments to both warmer temperature and lower moisture availability, including reduced leaf size, lower hydraulic diameter of xylem vessels and theoretical specific hydraulic conductivity. The anticipated shift in the environmental conditions at high elevation, with reduced coldness limitation but increasingly constraining water economy, could thus become particularly demanding for montane species of wooded pastures. It may favour perennials with large phenotypic plasticity but leads to maladjustments and loss of the species which are more specifically adapted to montane conditions. Read the free Plain Language Summary for this article on the Journal blog.

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Type
research article
DOI
10.1111/1365-2435.14212
Web of Science ID

WOS:000880549900001

Author(s)
Vollenweider, Pierre
Hildbrand, Geraldine
De Masi, Davide
Gavazov, Konstantin  
Zufferey, Vivian
Buttler, Alexandre  
von Arx, Georg
Date Issued

2022-11-09

Publisher

WILEY

Published in
Functional Ecology
Subjects

Ecology

•

Environmental Sciences & Ecology

•

altitudinal gradient

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climate change

•

ecophysiology

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foliage xeromorphy

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functional traits

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grasslands

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root xylem anatomy

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root traits

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functional types

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driving factors

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leaf economics

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severe drought

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forest trees

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scots pine

•

plant

•

temperature

•

elevation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PERL  
Available on Infoscience
November 21, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/192477
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