about
Evidence of intense chromosomal shuffling during conifer evolutionGenetic architecture of carbon isotope composition and growth in Eucalyptus across multiple environments.Plasticity of primary and secondary growth dynamics in Eucalyptus hybrids: a quantitative genetics and QTL mapping perspective.Performance of genomic prediction within and across generations in maritime pine.Linkage and Association Mapping for Two Major Traits Used in the Maritime Pine Breeding Program: Height Growth and Stem Straightness.Quantitative Proteomic and Phosphoproteomic Approaches for Deciphering the Signaling Pathway for Tension Wood Formation in Poplar.High-density SNP assay development for genetic analysis in maritime pine (Pinus pinaster).Genomic selection in maritime pine.High-resolution genetic maps of Eucalyptus improve Eucalyptus grandis genome assembly.Rice diversity panel provides accurate genomic predictions for complex traits in the progenies of biparental crosses involving members of the panel.Genomic Prediction Accounting for Genotype by Environment Interaction Offers an Effective Framework for Breeding Simultaneously for Adaptation to an Abiotic Stress and Performance Under Normal Cropping Conditions in Rice.Oak genome reveals facets of long lifespanThe genetics of exapted resistance to two exotic pathogens in pedunculate oak
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P50
description
researcher ORCID ID = 0000-0002-0855-3828
@en
wetenschapper
@nl
name
J Bartholomé
@ast
J Bartholomé
@en
J Bartholomé
@nl
type
label
J Bartholomé
@ast
J Bartholomé
@en
J Bartholomé
@nl
prefLabel
J Bartholomé
@ast
J Bartholomé
@en
J Bartholomé
@nl
P106
P31
P496
0000-0002-0855-3828