Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria
African apes harbour six Plasmodium species, one of which gave rise to the human malaria parasite. Here, Sundaraman et al. use selective whole-genome amplification to determine genome sequences from two chimpanzee Plasmodiumspecies, shedding light on the evolutionary origin of the human parasite.
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Nature Portfolio
2016
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oai:doaj.org-article:e0e6274d383b4d74a1b7fd1cd8a493cc2021-12-02T15:34:08ZGenomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria10.1038/ncomms110782041-1723https://doaj.org/article/e0e6274d383b4d74a1b7fd1cd8a493cc2016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms11078https://doaj.org/toc/2041-1723African apes harbour six Plasmodium species, one of which gave rise to the human malaria parasite. Here, Sundaraman et al. use selective whole-genome amplification to determine genome sequences from two chimpanzee Plasmodiumspecies, shedding light on the evolutionary origin of the human parasite.Sesh A. SundararamanLindsey J. PlenderleithWeimin LiuDorothy E. LoyGerald H. LearnYingying LiKatharina S. ShawAhidjo AyoubaMartine PeetersSheri SpeedeGeorge M. ShawFrederic D. BushmanDustin BrissonJulian C. RaynerPaul M. SharpBeatrice H. HahnNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-14 (2016) |
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Science Q Sesh A. Sundararaman Lindsey J. Plenderleith Weimin Liu Dorothy E. Loy Gerald H. Learn Yingying Li Katharina S. Shaw Ahidjo Ayouba Martine Peeters Sheri Speede George M. Shaw Frederic D. Bushman Dustin Brisson Julian C. Rayner Paul M. Sharp Beatrice H. Hahn Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria |
description |
African apes harbour six Plasmodium species, one of which gave rise to the human malaria parasite. Here, Sundaraman et al. use selective whole-genome amplification to determine genome sequences from two chimpanzee Plasmodiumspecies, shedding light on the evolutionary origin of the human parasite. |
format |
article |
author |
Sesh A. Sundararaman Lindsey J. Plenderleith Weimin Liu Dorothy E. Loy Gerald H. Learn Yingying Li Katharina S. Shaw Ahidjo Ayouba Martine Peeters Sheri Speede George M. Shaw Frederic D. Bushman Dustin Brisson Julian C. Rayner Paul M. Sharp Beatrice H. Hahn |
author_facet |
Sesh A. Sundararaman Lindsey J. Plenderleith Weimin Liu Dorothy E. Loy Gerald H. Learn Yingying Li Katharina S. Shaw Ahidjo Ayouba Martine Peeters Sheri Speede George M. Shaw Frederic D. Bushman Dustin Brisson Julian C. Rayner Paul M. Sharp Beatrice H. Hahn |
author_sort |
Sesh A. Sundararaman |
title |
Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria |
title_short |
Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria |
title_full |
Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria |
title_fullStr |
Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria |
title_full_unstemmed |
Genomes of cryptic chimpanzee Plasmodium species reveal key evolutionary events leading to human malaria |
title_sort |
genomes of cryptic chimpanzee plasmodium species reveal key evolutionary events leading to human malaria |
publisher |
Nature Portfolio |
publishDate |
2016 |
url |
https://doaj.org/article/e0e6274d383b4d74a1b7fd1cd8a493cc |
work_keys_str_mv |
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