Study / S86EA04AF2024-03-05

DNA methylation signatures of early-life adversity are exposure-dependent in wild baboons

Jordan A. Anderson, Dana Lin, Amanda J. Lea, Rachel A. Johnston, Tawni Voyles et al.

About this study

The early-life environment can profoundly shape the trajectory of an animal’s life, even years or decades later. One mechanism proposed to contribute to these early-life effects is DNA methylation. However, the frequency and functional importance of DNA methylation in shaping early-life effects on adult outcomes is poorly understood, especially in natural populations. Here, we integrate prospectively collected data on fitness-associated variation in the early environment with DNA methylation estimates at 477,270 CpG sites in 256 wild baboons. We find highly heterogeneous relationships between the early-life environment and DNA methylation in adulthood: aspects of the environment linked to resource limitation (e.g., low-quality habitat, early-life drought) are associated with many more CpG sites than other types of environmental stressors (e.g., low maternal social status). Sites associated with early resource limitation are enriched in gene bodies and putative enhancers, suggesting they are functionally relevant. Indeed, by deploying a baboon-specific, massively parallel reporter assay, we show that a subset of windows containing these sites are capable of regulatory activity, and that, for 88% of early drought-associated sites in these regulatory windows, enhancer activity is DNA methylation-dependent. Together, our results support the idea that DNA methylation patterns contain a persistent signature of the early-life environment. However, they also indicate that not all environmental exposures leave an equivalent mark and suggest that socioenvironmental variation at the time of sampling is more likely to be functionally important. Thus, multiple mechanisms must converge to explain early-life effects on fitness-related traits.

Full author list & citation

Jordan A. Anderson, Dana Lin, Amanda J. Lea, Rachel A. Johnston, Tawni Voyles, Mercy Y. Akinyi, Elizabeth A. Archie, Susan C. Alberts, Jenny Tung. DNA methylation signatures of early-life adversity are exposure-dependent in wild baboons. 2024-03-05. https://doi.org/10.1073/pnas.2309469121

Experiments 1

E156A6C2E

Baboon mSTARR-seq methylation-dependent enhancer activity screen in K-562 cells

A baboon-specific mSTARR-seq library of 300–800 bp genomic fragments generated by mechanical shearing and MspI digestion was split into fully CpG-methylated and sham/unmethylated pools and transfected into human K-562 cells. Six biological replicates per methylation state were measured by targeted insert DNA-seq and plasmid-specific RNA-seq, and activity was modeled in 500-bp genomic windows.

Standard STARR-seqNCBITaxon:9555Panubis1.0 (GCA_008728515.1)
Explore data

Raw source data 4 files

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