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Cytomegalovirus distribution and evolution in hominines

  • Sripriya Murthy
  • , Kathryn O’Brien
  • , Anthony Agbor
  • , Samuel Angedakin
  • , Mimi Arandjelovic
  • , Emmanuel Ayuk Ayimisin
  • , Emma Bailey
  • , Richard A. Bergl
  • , Gregory Brazzola
  • , Paula Dieguez
  • , Manasseh Eno-Nku
  • , Henk Eshuis
  • , Barbara Fruth
  • , Thomas R. Gillespie
  • , Yisa Ginath
  • , Maryke Gray
  • , Ilka Herbinger
  • , Sorrel Jones
  • , Laura Kehoe
  • , Hjalmar Kühl
  • Deo Kujirakwinja, Kevin Lee, Nadège F. Madinda, Guillain Mitamba, Emmanuel Muhindo, Radar Nishuli, Lucy J. Ormsby, Klara J. Petrzelkova, Andrew J. Plumptre, Martha M. Robbins, Volker Sommer, Heegde M Ter, Angelique Todd, Raymond Tokunda, Erin Wessling, Michael A. Jarvis, Fabian H. Leendertz, Bernhard Ehlers, Sébastien Calvignac-Spencer*
*Corresponding author for this work
  • Robert Koch-Institut
  • University of Plymouth
  • African Parks Network
  • Max Planck Institute for Evolutionary Anthropology
  • North Carolina Zoological Park
  • WWF Cameroon
  • Liverpool John Moores University
  • Royal Zoological Society of Antwerp
  • Emory University
  • Batavia Coast Maritime Institute
  • International Gorilla Conservation Programme
  • World Wildlife Fund (WWF) Germany
  • Royal Holloway University of London
  • University of British Columbia
  • University of Victoria BC
  • Wild Chimpanzee Foundation
  • German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig
  • Wildlife Conservation Society
  • Arizona State University
  • Institut Congolais pour la Conservation de la Nature
  • Czech Academy of Sciences
  • Liberec Zoo
  • University of Veterinary and Pharmaceutical Sciences
  • BirdLife International
  • University of Cambridge
  • University College London
  • Dzanga Sangha Protected Areas

Research output: Contribution to journalArticlepeer-review

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Abstract

Herpesviruses are thought to have evolved in very close association with their hosts. This is notably the case for cytomegaloviruses (CMVs; genus Cytomegalovirus) infecting primates, which exhibit a strong signal of co-divergence with their hosts. Some herpesviruses are however known to have crossed species barriers. Based on a limited sampling of CMV diversity in the hominine (African great ape and human) lineage, we hypothesized that chimpanzees and gorillas might have mutually exchanged CMVs in the past. Here, we performed a comprehensive molecular screening of all 9 African great ape species/subspecies, using 675 fecal samples collected from wild animals. We identified CMVs in eight species/subspecies, notably generating the first CMV sequences from bonobos. We used this extended dataset to test competing hypotheses with various degrees of co-divergence/number of host switches while simultaneously estimating the dates of these events in a Bayesian framework. The model best supported by the data involved the transmission of a gorilla CMV to the panine (chimpanzee and bonobo) lineage and the transmission of a panine CMV to the gorilla lineage prior to the divergence of chimpanzees and bonobos, more than 800,000 years ago. Panine CMVs then co-diverged with their hosts. These results add to a growing body of evidence suggesting that viruses with a double-stranded DNA genome (including other herpesviruses, adenoviruses, and papillomaviruses) often jumped between hominine lineages over the last few million years.
Original languageEnglish
Number of pages0
JournalVirus Evolution
Volume5
Issue number2
DOIs
Publication statusPublished - 1 Jul 2019

Keywords

  • cytomegalovirus
  • hominine
  • host switch
  • codivergence
  • dsDNA virus

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