bioRxiv · 10.1101/2022.04.08.486529
Natural and human-mediated drivers of microevolution in Neotropical palms: a historical genomics approach
Abstract
O_LIMicroevolution in Amazonia has been far less documented than in temperate regions and still constitutes a major knowledge gap. Moreover, the actual influence of pre-Columbian societies through the Holocene remains unclear, although it could provide interesting insights on the relationship between natural and human-mediated evolutionary processes in driving microevolution. C_LIO_LIBecause they are widespread and traditionally managed since pre-Columbian times, Neotropical palms are choice models to investigate the drivers of microevolution in Amazonia. In this study, we carried out a preliminary exploration of the genomic diversity in two pairs of congeneric palm species in French Guiana (Astrocaryum spp. and Oenocarpus spp.). C_LIO_LIWe built upon an original sampling design, taking into account both regional climate variations and local-scale pre-Columbian occupation, and designed a new target capture kit of 20,000 molecular probes scattered across exonic regions of more than 5,000 nuclear genes in Arecoideae ("ARECO5000+"). Hundreds of palm libraries were sequenced through Illumina sequencing, providing a unique - high-coverage - genomic dataset in these non-model species. C_LIO_LIWe explored patterns of genomic diversity and differentiation within and across populations, bringing state-of-the-art knowledge about the roles of climate adaptation and pre-Columbian domestication. By documenting original cases of "incipient" domestication, these pioneer results open new avenues toward a better understanding of microevolution in Amazonia and of the impact of pre-Columbian societies on present-day biodiversity patterns. C_LI
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Brousseau, L., Santoni, S., Weber, A., Odonne, G.. 2022-04-10. Natural and human-mediated drivers of microevolution in Neotropical palms: a historical genomics approach. https://doi.org/10.1101/2022.04.08.486529
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