TY - JOUR
T1 - Ancient Mycobacterium leprae genome reveals medieval English red squirrels as animal leprosy host
AU - Dawson-Hobbis, Heidi
N1 - Funding Information:
This work was supported by the Swiss State Secretariat for Education , Research and Innovation SERI -funded ERC Consolidator Project \u201CRESERVOIR\u201D (grant M823.00001 REF-1131-52105 to V.J.S.), and the University of Zurich\u2019s University Research Priority Program \u201CEvolution in Action : From Genomes to Ecosystems\u201D (V.J.S. and C.U.). C.A. was supported by the Fondation Raoul Follereau and the Heiser Program of the New York Community Trust for Research in Leprosy (grant no. P21\u2013000127 , C.A.).
Funding Information:
We would like to thank Irka Hajdas (ETH Zurich) for carrying out the 14C dating of this study, the Functional Genomics Center Zurich and the Next Generation Sequencing Facility of the Vienna Biocenter Core Facilities for sequencing, Corina Steiner and Stephan Symons for support with the figure design, and Lena Strid for her information regarding the squirrels at Winchester. Many thanks to the Koninklijke Bibliotheek van Belgi\u00EB (KBR) for permission to reproduce KBR MS 10607 f. 88r for the graphical abstract. This work was supported by the SERI-funded ERC Consolidator Grant \u201CRESERVOIR\u201D (grant no. MB23.00001 REF-1131-52105 to V.J.S.) and the University of Zurich's University Research Priority Program \u201CEvolution in Action: From Genomes to Ecosystems\u201D (V.J.S. and C.U.). C.A. was supported by the Fondation Raoul Follereau and the Heiser Program of the New York Community Trust for Research in Leprosy (grant no. P21\u2013000127, C.A.). V.J.S. S.A.I. C.U. A.A.B. and K.W.-M. conceived and designed the study. K.W.-I. R.T. P.M. H.D.-H. S.R. and S.A.I. provided samples and archaeological context. V.J.S. and S.A.I. supervised the work and provided funding. C.U. A.A.B. and C.A. performed the experimental work. C.U. A.A.B. C.A. and A.K.W. analyzed the generated data. C.U. A.A.B. V.J.S. S.A.I. K.W.-M. and C.A. wrote the manuscript with input from all authors. All authors reviewed the manuscript. We have no competing interests.
Publisher Copyright:
© 2024 The Author(s)
PY - 2024/5/20
Y1 - 2024/5/20
N2 - Leprosy, one of the oldest recorded diseases in human history, remains prevalent in Asia, Africa, and South America, with over 200,000 cases every year. Although ancient DNA (aDNA) approaches on the major causative agent, Mycobacterium leprae, have elucidated the disease’s evolutionary history the role of animal hosts and interspecies transmission in the past remains unexplored. Research has uncovered relationships between medieval strains isolated from archaeological human remains and modern animal hosts such as the red squirrel in England. However, the time frame, distribution, and direction of transmissions remains unknown. Here, we studied 25 human and 12 squirrel samples from two archaeological sites in Winchester, a medieval English city well known for its leprosarium and connections to the fur trade. We reconstructed four medieval M. leprae genomes, including one from a red squirrel, at a 2.2-fold average coverage. Our analysis revealed a phylogenetic placement of all strains on branch 3 as well as a close relationship between the squirrel strain and one newly reconstructed medieval human strain. In particular, the medieval squirrel strain is more closely related to some medieval human strains from Winchester than to modern red squirrel strains from England, indicating a yet-undetected circulation of M. leprae in non-human hosts in the Middle Ages. Our study represents the first One Health approach for M. leprae in archaeology, which is centered around a medieval animal host strain, and highlights the future capability of such approaches to understand the disease’s zoonotic past and current potential.
AB - Leprosy, one of the oldest recorded diseases in human history, remains prevalent in Asia, Africa, and South America, with over 200,000 cases every year. Although ancient DNA (aDNA) approaches on the major causative agent, Mycobacterium leprae, have elucidated the disease’s evolutionary history the role of animal hosts and interspecies transmission in the past remains unexplored. Research has uncovered relationships between medieval strains isolated from archaeological human remains and modern animal hosts such as the red squirrel in England. However, the time frame, distribution, and direction of transmissions remains unknown. Here, we studied 25 human and 12 squirrel samples from two archaeological sites in Winchester, a medieval English city well known for its leprosarium and connections to the fur trade. We reconstructed four medieval M. leprae genomes, including one from a red squirrel, at a 2.2-fold average coverage. Our analysis revealed a phylogenetic placement of all strains on branch 3 as well as a close relationship between the squirrel strain and one newly reconstructed medieval human strain. In particular, the medieval squirrel strain is more closely related to some medieval human strains from Winchester than to modern red squirrel strains from England, indicating a yet-undetected circulation of M. leprae in non-human hosts in the Middle Ages. Our study represents the first One Health approach for M. leprae in archaeology, which is centered around a medieval animal host strain, and highlights the future capability of such approaches to understand the disease’s zoonotic past and current potential.
KW - Mycobacterium leprae
KW - One Health across time
KW - ancient DNA
KW - ancient pathogen genomics
KW - animal hosts of diseases
KW - medieval leprosy
UR - https://www.scopus.com/pages/publications/85192807913
UR - https://www.mendeley.com/catalogue/d15f61a3-0db7-30da-9735-6c73c532c53a/
U2 - 10.1016/j.cub.2024.04.006
DO - 10.1016/j.cub.2024.04.006
M3 - Article
SN - 0960-9822
VL - 34
SP - 2221-2230.e8
JO - Current Biology
JF - Current Biology
IS - 10
ER -