2026/08/05 by Nikita Stepanskyy, Jordan Meliani, Jácint Tökölyi +5 · 1 voice
Earth and Planetary Sciences · Biochemistry, Genetics and Molecular Biology · Physics and Astronomy · #Marine Invertebrate Physiology and Ecology #Evolution and Genetic Dynamics #Micro and Nano Robotics #Reproduction #Context (archaeology) #Trait #Asexual reproduction #Sexual reproduction #Mechanism (biology) #Adaptation (eye) #Evolutionary dynamics
paper · doi:10.1098/rspb.2026.1116
Abstract Reproduction is a key life-history trait but often comes at the expense of somatic maintenance, including ageing and susceptibility to disease. While reproduction–immunity trade-offs have been experimentally demonstrated in the context of infectious diseases, whether reproduction similarly undermines susceptibility to tumours has remained unclear. Using the freshwater cnidarian Hydra oligactis, in which tumours arise spontaneously and reproductive effort can be experimentally modulated through food availability, we tested the possibility of a trade-off between reproduction and tumour dynamics. Higher reproductive effort increased the likelihood of tumour development, reduced the probability of remission and increased the likelihood of progression to advanced stages. Resource availability modulated the strength of the trade-off in terms of tumour risk and remission, whereas tumour severity was determined solely by reproductive effort. Together, these findings provide rare empirical support for a trade-off between reproduction and tumour dynamics, demonstrating that reproductive investment compromises both tumour prevention and control and that its expression can be shaped by environmental conditions. More broadly, they suggest that cancer susceptibility in more complex lineages may instead reflect evolutionary trade-offs that prioritize reproduction over somatic maintenance, helping illustrate one mechanism by which evolutionary trade-offs contribute to the persistence of cancer and to variation in susceptibility across taxa.