Javascript must be enabled to continue!
In situ estimation of genetic variation of functional and ecological traits in Quercus petraea and Q.robur
View through CrossRef
Abstract
Background
Predicting the evolutionary potential of natural tree populations requires the estimation of heritability and genetic correlations among traits on which selection acts, as differences in evolutionary success between species may rely on differences for these genetic parameters.
In situ
estimates are expected to be more accurate than measures done under controlled conditions which do not reflect the natural environmental variance.
Aims
The aim of the current study was to estimate three genetic parameters (i.e. heritability, evolvability and genetic correlations) in a natural mixed oak stand composed of
Quercus petraea
and
Quercus robur
about 100 years old, for 58 traits of ecological and functional relevance (growth, reproduction, phenology, physiology, resilience, structure, morphology and defence).
Methods
First we estimated genetic parameters directly
in situ
using realized genomic relatedness of adult trees and parentage relationships over two generations to estimate the traits additive variance. Secondly, we benefited from existing
ex situ
experiments (progeny tests and conservation collection) installed with the same populations, thus allowing comparisons of
in situ
heritability estimates with more traditional methods.
Results
Heritability and evolvability estimates obtained with different methods varied substantially and showed large confidence intervals, however we found that
in situ
were less precise than
ex situ
esti-mates, and assessments over two generations (with deeper relatedness) improved estimates of heritability while large sampling sizes are needed for accurate estimations. At the biological level, heritability values varied moderately across different ecological and functional categories of traits, and genetic correlations among traits were conserved over the two species.
Conclusion
We identified limits for using realized genomic relatedness in natural stands to estimate the genetic variance, given the overall low variance of genetic relatedness and the rather low sampling sizes of currently used long term genetic plots in forestry. These limits can be overcome if larger sample sizes are considered, or if the approach is extended over the next generation.
Title: In situ
estimation of genetic variation of functional and ecological traits in
Quercus petraea
and
Q.robur
Description:
Abstract
Background
Predicting the evolutionary potential of natural tree populations requires the estimation of heritability and genetic correlations among traits on which selection acts, as differences in evolutionary success between species may rely on differences for these genetic parameters.
In situ
estimates are expected to be more accurate than measures done under controlled conditions which do not reflect the natural environmental variance.
Aims
The aim of the current study was to estimate three genetic parameters (i.
e.
heritability, evolvability and genetic correlations) in a natural mixed oak stand composed of
Quercus petraea
and
Quercus robur
about 100 years old, for 58 traits of ecological and functional relevance (growth, reproduction, phenology, physiology, resilience, structure, morphology and defence).
Methods
First we estimated genetic parameters directly
in situ
using realized genomic relatedness of adult trees and parentage relationships over two generations to estimate the traits additive variance.
Secondly, we benefited from existing
ex situ
experiments (progeny tests and conservation collection) installed with the same populations, thus allowing comparisons of
in situ
heritability estimates with more traditional methods.
Results
Heritability and evolvability estimates obtained with different methods varied substantially and showed large confidence intervals, however we found that
in situ
were less precise than
ex situ
esti-mates, and assessments over two generations (with deeper relatedness) improved estimates of heritability while large sampling sizes are needed for accurate estimations.
At the biological level, heritability values varied moderately across different ecological and functional categories of traits, and genetic correlations among traits were conserved over the two species.
Conclusion
We identified limits for using realized genomic relatedness in natural stands to estimate the genetic variance, given the overall low variance of genetic relatedness and the rather low sampling sizes of currently used long term genetic plots in forestry.
These limits can be overcome if larger sample sizes are considered, or if the approach is extended over the next generation.
Related Results
Genomic structure and diversity of oak populations in British Parklands
Genomic structure and diversity of oak populations in British Parklands
Abstract
The two predominant oak species in Britain are
Quercus robur
(English or pedunculate oak) and
...
Introgression as an Important Driver of Geographic Genetic Differentiation within European White Oaks
Introgression as an Important Driver of Geographic Genetic Differentiation within European White Oaks
The genetic composition of 5797 white oaks assigned in forest inventories as Quercus robur (3342), Quercus petraea (2090), Quercus pubescens (170), or as unspecified Quercus. spp. ...
How does contemporary selection shape oak phenotypes?
How does contemporary selection shape oak phenotypes?
AbstractMost existing forests are subjected to natural and human‐mediated selection pressures, which have increased due to climate change and the increasing needs of human societie...
Desarrollo preclínico de una formulación farmacéutica cicatrizante para uso tópico a base de extractos vegetales.
Desarrollo preclínico de una formulación farmacéutica cicatrizante para uso tópico a base de extractos vegetales.
Las heridas crónicas suponen un reto clínico significativo debido a su elevada incidencia de complicaciones inflamatorias e infecciosas y a la limitada eficacia de los tratamientos...
Die Rot‐Eiche (Quercus rubra L., Fagaceae) als stark mykotrophe Gehölzart – ein Vergleich der Makromyzetenflora unter Rot‐Eichen und einheimischen Eichen in der Umgebung von Potsdam, Deutschland
Die Rot‐Eiche (Quercus rubra L., Fagaceae) als stark mykotrophe Gehölzart – ein Vergleich der Makromyzetenflora unter Rot‐Eichen und einheimischen Eichen in der Umgebung von Potsdam, Deutschland
AbstractIn den Jahren 1998–2002 wurde die Fruktifikation von Makromyzeten in Rot‐Eichen‐Reinbeständen auf fünf ausgewählten Parzellen untersucht und mit derjenigen unter einheimisc...
Geographical Variation in Morphological and Seed Traits of Quercus robur L. for Genetic Improvement
Geographical Variation in Morphological and Seed Traits of Quercus robur L. for Genetic Improvement
Natural dye extracted from the cupules of Quercus robur L., combined with a mordant made from wood ash of Salix alba L. and Populus deltoides Bartram ex Marsh., produces various sh...
Development of new SNPs loci on Quercus robur and Quercus petraea for genetic studies covering the whole species’ distribution range
Development of new SNPs loci on Quercus robur and Quercus petraea for genetic studies covering the whole species’ distribution range
AbstractWe used double digest restriction site associated DNA sequencing (ddRAD) to develop new geographically informative nuclear SNP loci in Quercus robur and Quercus petraea. Ge...
From Constitutional Comparison to Life in the Biosphere
From Constitutional Comparison to Life in the Biosphere
From Constitutional Comparison to Life in the Biosphere is a monograph that argues for a fundamental reorientation of constitutional law around the realities of biospheric interdep...

