Genome-wide DNA methylation and gene expression patterns reflect genetic ancestry and environmental differences across the Indonesian archipelago

Journal article


Natri, Heini M., Bobowik, Katalina S., Kusuma, Pradiptajati, Darusallam, Chelzie Crenna, Jacobs, Guy S., Hudjashov, Georgi, Stephen Lansing, J, Sudoyo, Herawati, Banovich, Nicholas E., Cox, Murray P. and Gallego Romero, Irene. (2020). Genome-wide DNA methylation and gene expression patterns reflect genetic ancestry and environmental differences across the Indonesian archipelago. PLoS Genetics. 16(5), p. Article e1008749. https://doi.org/10.1371/journal.pgen.1008749
AuthorsNatri, Heini M., Bobowik, Katalina S., Kusuma, Pradiptajati, Darusallam, Chelzie Crenna, Jacobs, Guy S., Hudjashov, Georgi, Stephen Lansing, J, Sudoyo, Herawati, Banovich, Nicholas E., Cox, Murray P. and Gallego Romero, Irene
Abstract

Indonesia is the world’s fourth most populous country, host to striking levels of human diversity, regional patterns of admixture, and varying degrees of introgression from both Neanderthals and Denisovans. However, it has been largely excluded from the human genomics sequencing boom of the last decade. To serve as a benchmark dataset of molecular phenotypes across the region, we generated genome-wide CpG methylation and gene expression measurements in over 100 individuals from three locations that capture the major genomic and geographical axes of diversity across the Indonesian archipelago. Investigating between- and within-island differences, we find up to 10.55% of tested genes are differentially expressed between the islands of Sumba and New Guinea. Variation in gene expression is closely associated with DNA methylation, with expression levels of 9.80% of genes correlating with nearby promoter CpG methylation, and many of these genes being differentially expressed between islands. Genes identified in our differential expression and methylation analyses are enriched in pathways involved in immunity, highlighting Indonesia's tropical role as a source of infectious disease diversity and the strong selective pressures these diseases have exerted on humans. Finally, we identify robust within-island variation in DNA methylation and gene expression, likely driven by fine-scale environmental differences across sampling sites. Together, these results strongly suggest complex relationships between DNA methylation, transcription, archaic hominin introgression and immunity, all jointly shaped by the environment. This has implications for the application of genomic medicine, both in critically understudied Indonesia and globally, and will allow a better understanding of the interacting roles of genomic and environmental factors shaping molecular and complex phenotypes.

Year2020
JournalPLoS Genetics
Journal citation16 (5), p. Article e1008749
PublisherPublic Library of Science
ISSN1553-7390
Digital Object Identifier (DOI)https://doi.org/10.1371/journal.pgen.1008749
PubMed ID32453742
Scopus EID2-s2.0-85147515878
PubMed Central IDPMC7274483
Open accessPublished as ‘gold’ (paid) open access
Page range1-21
FunderRoyal Society of New Zealand
National Science Foundation (NSF)
Ministry of Education, Government of Singapore
Nanyang Technological University (NTU)
Center for Evolution and Medicine, Arizona State University (ASU)
The Prevent Cancer Foundation
Publisher's version
License
File Access Level
Open
Output statusPublished
Publication dates
Online26 May 2020
Publication process dates
Accepted31 Mar 2020
Deposited28 Apr 2025
Additional information

© 2020 Natri et al. This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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