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Dating the amplification process of another major repeat class in the olive genome, the tandem repeats, could clarify if a type of 'competition' in the genome colonization has occurred between repeat types during olive evolution.
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It is to be noted that the most redundant elements (both Gypsy and Copia) are clustered, indicating that the corresponding families have been highly active during olive genome evolution.
A larger number of Gypsy-related assembled sequences are found in the HR fraction of the genome, compared with Copia-related sequences, indicating that some families of Gypsy REs have undergone massive amplification during olive genome evolution.
Periodic samples were taken from the veraison to the total maturity of the olives to follow the evolution of the parameters studied.
In conclusion, our analyses show many aspects of RE dynamics in the evolution of the olive genome.
The aim of this work was to provide further insight into the evolution of the olive fruit phenolic compounds and to identify their major genetic determinants.
As our best estimates of the fitness costs associate with these transgenes, these values were subsequently used to predict longer-term fsRIDL allele frequency evolution for diamondback moth and olive fly populations.
In conclusion, our findings on olive genome evidenced the peculiarity of genome evolution in this species, with a very large fraction of the genome produced by tandem repeats amplification.
Figure 1 shows the evolution of anthocyanins during the ripening of olives treated by the ABA at fruit set and at veraison.
Bowie, R.C.K., Fjeldså, J., Hackett, S.J. and Crowe, T.M. (2004) Molecular evolution in space and though time: mtDNA phylogeography of the Olive Sunbird (Nectarinia olivacea/obscura) throughout continental Africa.
Table 7 shows the evolution of total polyphenol contents during ripening in both olives than in their extracted oils.
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