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Pierron, D.

Publications and source records attributed to Pierron, D..

2 recordsLinked to original sources

The preference of a fragrance created by a perfumer is associated with one single-nucleotide polymorphism in OR5A1 gene

From ancient incense to Chanel No. 5, perfumes are almost ubiquitous across the world and across history yet highly diverse. While they reflect the artistry of the creator and the personality of the wearer, the neurobiological processes driving fragrance preference are unknown. Recent research demonstrated that genetic variability in olfactory receptors modulates odor perception; however, regarding the preference for complex real-world stimuli, the relative importance of peripheral sensory encoding versus top-down cognitive evaluation--shaped by individual life history--remains a subject of debate. Here, we evaluate whether the perception of a commercially available fragrance depends on genetics, using the example of beta-ionone, a molecule routinely used in perfume composition, whose perception and appreciation have been linked to a single-nucleotide polymorphism in the OR5A1 gene (rs691536). A total of 168 participants rated their preference for three versions of a perfume designed by a professional perfumer, differing only in the concentration of {beta}-ionone used in the formula. Results showed that carriers of the G allele rated the 0% {beta}-ionone fragrance significantly higher than the 10% and 50% versions, while AA homozygotes showed no discrimination between the perfumes. By focusing on just one SNP (among hundreds of olfactory genes) and a single molecule, this study offers a proof of concept regarding the influence of genetics on aesthetic fragrance appreciation, advocating for the integration of genomic data to better understand the global diversity of perfume preferences.

genetics↗

The Entwined African and Asian Genetic Roots of the Medieval Peoples of the Swahili Coast

The peoples of the Swahili coast of eastern Africa established a literate urban culture by the second millennium CE. They traded across eastern Africa and the Indian Ocean and were among the first sub-Saharan practitioners of Islam. An open question has been the extent to which these early interactions between Africans and non-Africans were accompanied by genetic admixture. We report genome-wide ancient DNA from 80 individuals in five medieval and early modern (1300-1800 CE) coastal towns, as well as people from an inland town postdating 1650 CE. Over half of the ancestry of most coastal individuals came from African ancestors; these African ancestors were primarily female. A slightly smaller proportion of ancestry was from Asia. This Asian component was approximately eighty to ninety percent from Near Eastern males and ten to twenty percent from Indian females. Peoples of African and Asian origins began to mix by around 1000 CE, a time when archaeological evidence documents changes on the coast that are often interpreted as marking the large-scale adoption of Islam. Before roughly 1500 CE, the Near Eastern ancestry detected in the individuals was mainly Persian-related, consistent with the narrative of the Kilwa Chronicle, the oldest history told by the Swahili themselves. After this time, the sources of Near Eastern ancestry became increasingly Arabian, consistent with the archaeological and historical evidence of growing interactions between the Swahili coast and parts of southern Arabia. Subsequent interactions of Swahili coast peoples with other Asian and African groups further changed the ancestry of present-day peoples relative to the ancient individuals we sequenced, highlighting how Swahili genetic legacies can be more clearly understood with ancient DNA.

genetics↗