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April 24, 2026Nature1 citationsOpen Access

Dynamics of genetic and somatic trade-offs in ageing and mortality

DADanny ArendsNorthumbria UniversityDADavid G. AshbrookSRSuheeta RoyUniversity of Tennessee Health Science Center

Key Result

Actuarial mapping in 6,438 mice identified 29 Vita loci influencing lifespan and 30 Soma loci modulating body mass-life expectancy trade-offs with strong age- and sex-specific effects.

Key Points

  • This research aims to explore the role of genetic variants in influencing mortality risks throughout an organism's lifespan, focusing on age and sex differences.
  • Mapped genetic variants in a base population of 6,438 pubescent mice, tracking them until 559 survivors at over 1,100 days of age.
  • Identified 29 Vita loci and 30 Soma loci with diverse effects on lifespan and mortality.
  • Analyzed age-specific and sex-specific influences of genetic loci on mortality and lifespan correlations.
  • Identified 29 unique Vita loci with significant age- and sex-specific effects on lifespan.
  • Notable findings include stronger effects in male mice compared to female counterparts.
  • Soma loci revealed that larger young mice tend to have higher mortality, while larger older mice exhibit lower mortality.

Study Design

Type

Cohort (n=6,438)

Multicenter

Yes

Structured PICO

P
Population
6,438 pubescent mice from the University of Michigan Heterogeneous Cohort 3 (UM-HET3)
I
Intervention
Actuarial mapping of DNA variants (Vita and Soma loci)
O
Outcome
Lifespan and mortality rates across progressively older survivorshipshard clinical

Identified 29 Vita and 30 Soma loci that dynamically modulate mortality and body mass-life expectancy trade-offs across the lifespan in mice.

Limitations

  • Genotype imbalance inhibited mapping in survivorships after 1,100 days
  • Did not model higher-order genetic and gene-by-environment effects

Abstract

Abstract DNA variants modulate mortality risks across an entire lifespan but their dynamic age-dependent effects have not been resolved in any species for either sex. Here we mapped variants that shape mortality using an actuarial approach, starting with a base population of 6,438 pubescent mice and ending with 559 survivors that lived beyond 1,100 days of age. Twenty-nine Vita loci influence lifespan with strong age- and sex-specific effects. Most act during distinct stages with polarities that often invert with age, but a minority have consistent age-dependent effects in one or both sexes. A separate set of 30 Soma loci influence correlations between body mass and life expectancy. Nineteen Soma loci mediate higher mortality in larger young mice, whereas 11 mediate lower mortality in larger old mice. All effects are stronger in male mice than in female mice. Vita and Soma loci form epistatic networks split strictly by sex. These findings provide a genetic bridge between evolutionary theories of ageing and molecular mechanisms that can guide interventions to extend healthy lifespan.

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Cite This Study

Arends et al. (2026) conducted a cohort in Ageing and mortality (n=6,438). Genetic variants (Vita and Soma loci) vs. Alternative alleles/haplotypes was evaluated on Lifespan and mortality rates. Actuarial mapping in 6,438 mice identified 29 Vita loci influencing lifespan and 30 Soma loci modulating body mass-life expectancy trade-offs with strong age- and sex-specific effects.

synapsesocial.com/papers/69eb0ac4553a5433e34b4b05https://doi.org/10.1038/s41586-026-10407-9
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