Somatic mutation rates scale with time not growth rate in long-lived tropical trees.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39441734.
- Also identified by DOI 10.7554/eLife.88456 and PMC identifier 11498935.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
The rates of appearance of new mutations play a central role in evolution. However, mutational processes in natural environments and their relationship with growth rates are largely unknown, particular in tropical ecosystems with high biodiversity. Here, we examined the somatic mutation landscapes of two tropical trees, <i>Shorea laevis</i> (slow-growing) and <i>S. leprosula</i> (fast-growing), in central Borneo, Indonesia. Using newly constructed genomes, we identified a greater number of somatic mutations in tropical trees than in temperate trees. In both species, we observed a linear increase in the number of somatic mutations with physical distance between branches. However, we found that the rate of somatic mutation accumulation per meter of growth was 3.7-fold higher in <i>S. laevis</i> than in <i>S. leprosula</i>. This difference in the somatic mutation rate was scaled with the slower growth rate of <i>S. laevis</i> compared to <i>S. leprosula,</i> resulting in a constant somatic mutation rate per year between the two species. We also found that somatic mutations are neutral within an individual, but those mutations transmitted to the next generation are subject to purifying selection. These findings suggest that somatic mutations accumulate with absolute time and older trees have a greater contribution towards generating genetic variation.
Medical subject headings
- Mutation Rate
- Trees
- Tropical Climate