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Historical population declines prompted significant genomic erosion in the northern and southern white rhinoceros ( Ceratotherium simum )

Fátima Sánchez‐Barreiro; Shyam Gopalakrishnan; Jazmín Ramos‐Madrigal; Michael V. Westbury; Marc de Manuel; Ashot Margaryan; Marta M. Ciucani; Filipe G. Vieira; Yannis Patramanis; Daniela C. Kalthoff; Zena Timmons; Thomas Sicheritz‐Pontén; Love Dalén; Oliver A. Ryder; Guojie Zhang; Tomás Marquès‐Bonet; Yoshan Moodley; M. Thomas P. Gilbert
Molecular Ecology · Vol. 30, Issue 23 · pp. 6355-6369 · 2021

Abstract

Large vertebrates are extremely sensitive to anthropogenic pressure, and their populations are declining fast. The white rhinoceros ( Ceratotherium simum ) is a paradigmatic case: this African megaherbivore has suffered a remarkable decline in the last 150 years due to human activities. Its subspecies, the northern (NWR) and the southern white rhinoceros (SWR), however, underwent opposite fates: the NWR vanished quickly, while the SWR recovered after the severe decline. Such demographic events are predicted to have an erosive effect at the genomic level, linked to the extirpation of diversity, and increased genetic drift and inbreeding. However, there is little empirical data available to directly reconstruct the subtleties of such processes in light of distinct demographic histories. Therefore, we generated a whole‐genome, temporal data set consisting of 52 resequenced white rhinoceros genomes, representing both subspecies at two time windows: before and during/after the bottleneck. Our data reveal previously unknown population structure within both subspecies, as well as quantifiable genomic erosion. Genome‐wide heterozygosity decreased significantly by 10% in the NWR and 36% in the SWR, and inbreeding coefficients rose significantly by 11% and 39%, respectively. Despite the remarkable loss of genomic diversity and recent inbreeding it suffered, the only surviving subspecies, the SWR, does not show a significant accumulation of genetic load compared to its historical counterpart. Our data provide empirical support for predictions about the genomic consequences of shrinking populations, and our findings have the potential to inform the conservation efforts of the remaining white rhinoceroses.

Bibliographic Information

JournalMolecular Ecology
PublisherWiley
Publication Date2021-12-01
Publication Year2021
Volume30
Issue23
Pages6355-6369
Document TypeJournal Article
Print ISSN0962-1083
eISSN1365-294X
DOI10.1111/mec.16043
SubjectEcology & Organismal Biology

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/1365294X
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