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  4. Soil properties and plant species can predict population size and potential introduction sites of the endangered orchid Cypripedium calceolus

Soil properties and plant species can predict population size and potential introduction sites of the endangered orchid Cypripedium calceolus

Author(s)
Rusconi, Olivia  
Laboratoire d'écologie fonctionnelle  
Steiner, Théo
Le Bayon, Renée-Claire  
Laboratoire d'écologie fonctionnelle  
Rasmann, Sergio  
Laboratoire d'écologie fonctionnelle  
Date issued
February 16, 2023
In
Plant and Soil
Vol
--
No
483
From page
1
To page
17
Abstract
Background and Aims
To counteract the ongoing worldwide biodiversity loss, conservation actions are required to re-establish populations of threatened species. Two key factors predominantly involved in finding the most suitable habitats for endangered plant species are the surrounding plant community composition and the physicochemical parameters of the soil rooting zone. However, such factors are likely to be context- and species-dependent, so it remains unclear to what extent they influence the performance of target species.

Methods
We studied large and small Swiss populations of the endangered orchid Cypripedium calceolus. We measured functional traits related to C. calceolus plant and population performance (clonal patch area, plant height, number, of leaf, stems, flowers and fruits), realized vegetation surveys, soil profile analyses, and tested for relationships between plant traits and the surrounding vegetation structure or soil physicochemical parameters.

Results
Large populations contained bigger patches with more stems and leaves, and produced more flower per individual than small populations. Neither vegetation alliances nor soil classes per se could predict C. calceolus functional traits and population size. However, functional traits explaining population performance and size were related to specific soil parameters (soil organic matter content, pH and phosphorus), in addition to a combination of presence-absence of plant indicator species, relating to ecotones between forests and clearings.

Conclusion
We show that even for species that can grow across a wide range of vegetation groups both indicator species and specific soil parameters can be used to assess the most favourable sites to implement (re)-introduction actions.
Publication type
journal article
Identifiers
https://libra.unine.ch/handle/20.500.14713/64504
DOI
10.1007/s11104-023-05945-4
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2023-02-17_447_7071.pdf

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