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1.
Nat Commun ; 15(1): 3352, 2024 Apr 30.
Article in English | MEDLINE | ID: mdl-38688933

ABSTRACT

Highlanders and lowlanders of Papua New Guinea have faced distinct environmental stress, such as hypoxia and environment-specific pathogen exposure, respectively. In this study, we explored the top genomics regions and the candidate driver SNPs for selection in these two populations using newly sequenced whole-genomes of 54 highlanders and 74 lowlanders. We identified two candidate SNPs under selection - one in highlanders, associated with red blood cell traits and another in lowlanders, which is associated with white blood cell count - both potentially influencing the heart rate of Papua New Guineans in opposite directions. We also observed four candidate driver SNPs that exhibit linkage disequilibrium with an introgressed haplotype, highlighting the need to explore the possibility of adaptive introgression within these populations. This study reveals that the signatures of positive selection in highlanders and lowlanders of Papua New Guinea align closely with the challenges they face, which are specific to their environments.


Subject(s)
Altitude , Haplotypes , Linkage Disequilibrium , Polymorphism, Single Nucleotide , Selection, Genetic , Papua New Guinea , Humans , Genome, Human , Genetics, Population
2.
PLoS One ; 14(11): e0225801, 2019.
Article in English | MEDLINE | ID: mdl-31765427

ABSTRACT

Chromatin immunoprecipitation coupled with next-generation sequencing (ChIP-seq) has revolutionized our understanding of chromatin-related biological processes. The method, however, requires thousands of cells and has therefore limited applications in situations where cell numbers are limited. Here we describe a novel method called Restriction Assisted Tagmentation Chromatin Immunoprecipitation (RAT-ChIP) that enables global histone modification profiling from as few as 100 cells. The method is simple, cost-effective and takes a single day to complete. We demonstrate the sensitivity of the method by deriving the first genome-wide maps of histone H3K4me3 and H3K27me3 modifications of inner cell mass and trophectoderm of bovine blastocyst stage embryos.


Subject(s)
Blastocyst Inner Cell Mass/metabolism , Chromatin Immunoprecipitation , Histones/metabolism , Trophoblasts/metabolism , Animals , Blastocyst/cytology , Blastocyst/metabolism , Cattle , Cell Line , Chromatin/chemistry , Chromatin/metabolism , Fertilization in Vitro , Genome , High-Throughput Nucleotide Sequencing , Histones/genetics , Humans , Oocytes/cytology , Protein Processing, Post-Translational , Sequence Analysis, DNA
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