Back

Archaeogenomics of a ~2,100-year-old Egyptian leaf provides a new timestamp on date palm domestication

Perez-Escobar, O. A.; Bellot, S.; Gros-Balthazard, M.; Flowers, J. M.; Nesbitt, M.; Ryan, P.; Gutaker, R. M.; Wells, T.; Schley, R. J.; Bogarin, D.; Przelomska, N.; Dodsworth, S.; Diaz, R.; Lehmann, M.; Petoe, P.; Eiserhardt, W.; Preick, M.; Hofreiter, M.; Hajdas, I.; Antonelli, A.; Leitch, I. J.; Gravendeel, B.; Torres, M. F.; Chomicki, G.; Renner, S. S.; PAPADOPULOS, A.; Purugganan, M.; Baker, W.

2020-11-26 evolutionary biology
10.1101/2020.11.26.400408 bioRxiv
Show abstract

O_LIThe date palm (Phoenix dactylifera) has been a cornerstone of Middle Eastern and North African agriculture for millennia. It is presumed that date palms were first domesticated in the Persian Gulf and subsequently introduced into North Africa, where their evolution in the latter region appears to have been influenced by gene flow from the wild relative P. theophrasti, which is restricted to Crete and Turkey. However, the timing of gene flow from P. theophrasti to P. dactylifera remains unknown due to the limited archaeobotanical evidence of P. theophrasti and their exclusion from population genomic studies. C_LIO_LIWe addressed this issue by investigating the relatedness and ancestry of a ~2,100-year-old P. dactylifera leaf from Saqqara (Egypt), combining genome sequencing of this ancient specimen with a broad sample of date palm cultivars and closely related species. C_LIO_LIThe ancient Saqqara date palm shares close genetic ancestry with North African date palm populations. We find clear genomic admixture between the Saqqara date palm, P. theophrasti and the closest known relative P. sylvestris. C_LIO_LIOur study highlights that gene flow from P. theophrasti and P. sylvestris to North African date palms had already occurred at least ~2,100 years ago, providing a minimum timestamp for hybridisation between species. C_LI

Matching journals

The top 7 journals account for 50% of the predicted probability mass.

50% of probability mass above

"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.