Water stress-associated isolation barriers between two sympatric oak species
LE PROVOST, G.; Brachi, B.; Lesur, I.; Lalanne, C.; Labadie, K.; Aury, J. M.; Da Silva, C.; Postolache, D.; Leroy, T.; Plomion, C.
Show abstract
Drought and waterlogging impede tree growth and may even lead to tree death. With climate change, these environmental factors are a growing source of concern, particularly for temperate forests. Oaks, an emblematic group of tree species, have evolved a range of adaptations to cope with these constraints. The two most widely distributed European species -- pedunculate oak (PO) and sessile oaks (SO) -- have overlapping ranges, but are highly constrained locally by soil water content variation. These differences in local ecological requirements provide a powerful biological model for studying the role of ecological barriers in speciation. We used an experimental set-up mimicking the ecological preferences of these species, in which seedlings were subjected to waterlogging and drought. We studied gene expression in roots by RNA-seq and identified genes differentially expressed between treatments with different outcomes depending on species. These "species x environment"-responsive genes revealed adaptive molecular strategies involving adventitious and lateral root formation, aerenchyma formation in PO, and osmoregulation and ABA regulation in SO. With this experimental design, we also identified genes with expression profiles presenting a "species" effect regardless of imposed constraints with important roles in intrinsic reproductive barriers. Finally, we compared our findings with those for a genome scan of species divergence and found that the candidate genes were enriched in highly differentiated SNPs. This suggests that many of the genes involved in the contrasting transcriptomic responses are subject to natural selection and that gene regulation helps to maintain these two different oak species in sympatry.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Species-specific phyllosphere responses to external pH change 97%
- Carbohydrate distribution via SWEET17 is critical for Arabidopsis inflorescence branching under drought 96%
- Date palm acclimates to aridity by diverting organic osmolytes for root osmotic adjustment in parallel with leaf membrane remodeling and ROS scavenging 96%
Similar papers in this journal
- Candidate regulators and target genes of drought stress in needles and roots of Norway spruce 96%
- Unisexual flower initiation in the monoecious Quercus suber L., a molecular approach 95%
- Plasticity of the xylem vulnerability to embolism in poplar relies on quantitative pit properties rather than on pit structure 95%
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 97%
- Ammonium regulates the development and architecture of pine roots through hormonal crosstalk and differential expression of transcription factors in the apex 96%
- Constitutive expression of JASMONATE RESISTANT 1 elevates content of several jasmonates and primes Arabidopsis thaliana to better withstand drought 95%
Similar papers in this journal
Similar papers in this journal
- The architecture of resilience: a genome assembly of Myrothamnus flabellifolia sheds light on desiccation tolerance and sex determination 96%
- Positive Selection and Heat-Response Transcriptomes Reveal Adaptive Features of the Brassicaceae Desert Model, Anastatica hierochuntica 96%
- Identification of a novel link connecting indole-3-acetamide with abscisic acid biosynthesis and signaling 95%
"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.