Locally adapted oak populations along an elevation gradient display different molecular strategies to regulate bud phenology.
Le Provost, G.; Lalanne, C.; Lesur, I.; Louvet, J.-M.; Delzon, S.; Kremer, A.; Labadie, K.; Aury, J.-M.; Da Silva, C.; Plomion, C.
Show abstract
Research conductedWith the ongoing global warming, there are serious concerns about the persistence of locally adapted populations. Indeed, with the raising of temperature, the phenological cycle of tree species may be strongly affected since higher winter temperatures may have a negative impact on endodormancy release if chilling requirements are not fulfilled during winter and late frost in spring may expose trees if buds flush too early. Thus, Environmental gradients (showing continuous variations of environmental conditions) constitute a design of choice to analyze the effect of winter dormancy in locally adapted population. MethodsIn the present study, we used an elevation gradient in the Pyrenees to explore the gene expression network involved in dormancy regulation in natural populations of sessile oak locally adapted to temperature. Terminal buds were harvested during dormancy induction and release at different elevations. Then, gene expression was quantified using RNAseq and we used a likelihood ratio test to identify genes displaying significant dormancy, elevation or dormancy-by-elevation interaction effects. Key resultsOur results highlight molecular processes in locally adapted populations along this elevation cline, and made it possible to identify key dormancy-by-elevation responsive genes revealing that locally adapted populations have evolved distinct molecular strategies to adapt their bud phenology in response to environmental variation (i.e. temperature).
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Molecular mechanisms underlying the early steps of floral initiation in seasonal flowering genotypes of cultivated strawberry 96%
- Temporal Gene Expression in Apical Culms Shows Early Changes in Cell Wall Biosynthesis Genes in Sugarcane 96%
- Unravelling Rubber Tree Growth by Integrating GWAS and Biological Network-Based Approaches 96%
Similar papers in this journal
- Fine tuning of hormonal signaling is linked to dormancy status in sweet cherry flower buds 96%
- Unisexual flower initiation in the monoecious Quercus suber L., a molecular approach 95%
- Unravelling resilience mechanisms in forests: role of non-structural carbohydrates in responding to extreme weather events 93%
Similar papers in this journal
- Genome-wide association study, network analysis, and reverse genetics pinpoint novel genes associated with seedling root growth variation of Arabidopsis thaliana under drought 95%
- Ammonium regulates the development and architecture of pine roots through hormonal crosstalk and differential expression of transcription factors in the apex 94%
- Natural variation in salt-induced root growth phases and their contribution to root architecture plasticity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.