| Literature DB >> 28444962 |
Laura Truffaut1,2, Emilie Chancerel1,2, Alexis Ducousso1,2, Jean Luc Dupouey3, Vincent Badeau3, François Ehrenmann1,2, Antoine Kremer1,2.
Abstract
Large-scale tree distribution changes have received considerable attention but underlying demo-genetic mechanisms are less well documented. We used a diachronic approach to track species shifts in a mixed oak stand (Quercus petraea-Quercus robur) at a fine spatiotemporal scale. Species assignment was made using single nucleotide polymorphism (SNP) fingerprints employing clustering and parentage analysis. Mating patterns and reproductive success were assessed by parentage analysis. Plot-based inventories of soil parameters and sapling densities provided ecological and demographic information, respectively. Sapling density and reproductive success was higher in Q. petraea than in Q. robur, and were correlated with a spatial expansion of Q. petraea (50% to 67% of the area). Admixed trees resulting from hybridization and backcrossing between the two species were more frequent under the Q. robur canopy. We suspect that species' differential responses to ongoing environmental changes and interspecific competition are the predominant factors accounting for the recruitment success of Q. petraea, while human interference, differential reproduction and hybridization (and backcrossings) are probably of more limited importance. We anticipate in mixed Q. petraea-Q. robur stands, under current ongoing environmental change, that these processes will be enhanced, at least in the western part of the distribution of the two species.Entities:
Keywords: zzm321990Quercus petraeazzm321990; zzm321990Quercus roburzzm321990; admixture; demography; recruitment; regeneration phase
Mesh:
Year: 2017 PMID: 28444962 PMCID: PMC5624485 DOI: 10.1111/nph.14561
Source DB: PubMed Journal: New Phytol ISSN: 0028-646X Impact factor: 10.151