Literature DB >> 26478139

How did bonobos come to range south of the congo river? Reconsideration of the divergence of Pan paniscus from other Pan populations.

Hiroyuki Takemoto, Yoshi Kawamoto, Takeshi Furuichi.   

Abstract

While investigating the genetic structure in wild bonobos,(1) we realized that the widely accepted scenario positing that the Pleistocene appearance of the Congo River separated the common ancestor of chimpanzees (Pan troglodytes) and bonobos (P. paniscus) into two species is not supported by recent geographical knowledge about the formation of the Congo River. We explored the origin of bonobos using a broader biogeographical perspective by examining local faunas in the central African region. The submarine Congo River sediments and paleotopography of central Africa show that the Congo River has functioned as a geographical barrier for the last 34 million years. This evidence allows us to hypothesize that when the river was first formed, the ancestor of bonobos did not inhabit the current range of the species on the left bank of the Congo River but that, during rare times when the Congo River discharge decreased during the Pleistocene, one or more founder populations of ancestral Pan paniscus crossed the river to its left bank. The proposed scenario for formation of the Congo River and the corridor hypothesis for an ancestral bonobo population is key to understanding the distribution of great apes and their evolution.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  Congo Basin history; Congo Fan sediments; Congo River formation; paleoenvironment; speciation of chimpanzee and bonobo

Mesh:

Year:  2015        PMID: 26478139     DOI: 10.1002/evan.21456

Source DB:  PubMed          Journal:  Evol Anthropol        ISSN: 1060-1538


  8 in total

1.  Estimating bonobo (Panpaniscus) and chimpanzee (Pantroglodytes) evolutionary history from nucleotide site patterns.

Authors:  Colin M Brand; Frances J White; Alan R Rogers; Timothy H Webster
Journal:  Proc Natl Acad Sci U S A       Date:  2022-04-22       Impact factor: 12.779

2.  Population dynamics and genetic connectivity in recent chimpanzee history.

Authors:  Claudia Fontsere; Martin Kuhlwilm; Carlos Morcillo-Suarez; Marina Alvarez-Estape; Jack D Lester; Paolo Gratton; Joshua M Schmidt; Paula Dieguez; Thierry Aebischer; Paula Álvarez-Varona; Anthony Agbor; Samuel Angedakin; Alfred K Assumang; Emmanuel A Ayimisin; Emma Bailey; Donatienne Barubiyo; Mattia Bessone; Andrea Carretero-Alonso; Rebecca Chancellor; Heather Cohen; Emmanuel Danquah; Tobias Deschner; Andrew Dunn; Jef Dupain; Villard E Egbe; Olga Feliu; Annemarie Goedmakers; Anne-Céline Granjon; Josephine Head; Daniela Hedwig; Veerle Hermans; R Adriana Hernandez-Aguilar; Inaoyom Imong; Sorrel Jones; Jessica Junker; Parag Kadam; Mike Kaiser; Mbangi Kambere; Magloire V Kambale; Ammie K Kalan; Ivonne Kienast; Deo Kujirakwinja; Kevin Langergraber; Juan Lapuente; Bradley Larson; Anne Laudisoit; Kevin Lee; Manuel Llana; Miquel Llorente; Sergio Marrocoli; David Morgan; Felix Mulindahabi; Mizuki Murai; Emily Neil; Sonia Nicholl; Stuart Nixon; Emma Normand; Chris Orbell; Lucy J Ormsby; Liliana Pacheco; Alex Piel; Laura Riera; Martha M Robbins; Aaron Rundus; Crickette Sanz; Lilah Sciaky; Volker Sommer; Fiona A Stewart; Nikki Tagg; Luc Roscelin Tédonzong; Els Ton; Joost van Schijndel; Virginie Vergnes; Erin G Wessling; Jacob Willie; Roman M Wittig; Yisa G Yuh; Kyle Yurkiw; Klaus Zuberbuehler; Jochen Hecht; Linda Vigilant; Christophe Boesch; Aida M Andrés; David A Hughes; Hjalmar S Kühl; Esther Lizano; Mimi Arandjelovic; Tomas Marques-Bonet
Journal:  Cell Genom       Date:  2022-06-08

3.  The mitochondrial ancestor of bonobos and the origin of their major haplogroups.

Authors:  Hiroyuki Takemoto; Yoshi Kawamoto; Shoko Higuchi; Emiko Makinose; John A Hart; Térese B Hart; Tetsuya Sakamaki; Nahoko Tokuyama; Gay E Reinartz; Patrick Guislain; Jef Dupain; Amy K Cobden; Mbangi N Mulavwa; Kumugo Yangozene; Serge Darroze; Céline Devos; Takeshi Furuichi
Journal:  PLoS One       Date:  2017-05-03       Impact factor: 3.240

4.  Reduced bonobo MHC class I diversity predicts a reduced viral peptide binding ability compared to chimpanzees.

Authors:  Vincent Maibach; Linda Vigilant
Journal:  BMC Evol Biol       Date:  2019-01-10       Impact factor: 3.260

5.  Epidemiological Surveillance of Lymphocryptovirus Infection in Wild Bonobos.

Authors:  Tomoyuki Yoshida; Hiroyuki Takemoto; Tetsuya Sakamaki; Nahoko Tokuyama; John Hart; Terese Hart; Jef Dupain; Amy Cobden; Mbangi Mulavwa; Yoshi Kawamoto; Akihisa Kaneko; Yuki Enomoto; Eiji Sato; Takanori Kooriyama; Takako Miyabe-Nishiwaki; Juri Suzuki; Akatsuki Saito; Munehiro Okamoto; Masaki Tomonaga; Tetsuro Matsuzawa; Takeshi Furuichi; Hirofumi Akari
Journal:  Front Microbiol       Date:  2016-08-12       Impact factor: 5.640

6.  Wild bonobos host geographically restricted malaria parasites including a putative new Laverania species.

Authors:  Weimin Liu; Scott Sherrill-Mix; Gerald H Learn; Erik J Scully; Yingying Li; Alexa N Avitto; Dorothy E Loy; Abigail P Lauder; Sesh A Sundararaman; Lindsey J Plenderleith; Jean-Bosco N Ndjango; Alexander V Georgiev; Steve Ahuka-Mundeke; Martine Peeters; Paco Bertolani; Jef Dupain; Cintia Garai; John A Hart; Terese B Hart; George M Shaw; Paul M Sharp; Beatrice H Hahn
Journal:  Nat Commun       Date:  2017-11-21       Impact factor: 14.919

7.  Functional volumes, niche packing and species richness: biogeographic legacies in the Congo Basin.

Authors:  Frederik Van de Perre; Michael R Willig; Steven J Presley; Itoka Jean-Claude Mukinzi; Mbalitini Sylvestre Gambalemoke; Herwig Leirs; Erik Verheyen
Journal:  R Soc Open Sci       Date:  2020-03-04       Impact factor: 2.963

8.  Rivers, not refugia, drove diversification in arboreal, sub-Saharan African snakes.

Authors:  Kaitlin E Allen; Eli Greenbaum; Paul M Hime; Walter P Tapondjou N; Viktoria V Sterkhova; Chifundera Kusamba; Mark-Oliver Rödel; Johannes Penner; A Townsend Peterson; Rafe M Brown
Journal:  Ecol Evol       Date:  2021-05-01       Impact factor: 2.912

  8 in total

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