Scale dependence decouple life history traits from transposable element evolution in sauropsids
Liang, Y.; Zuo, B.; Sun, Y.-B.
Show abstract
The Mutational Hazard Hypothesis (MHH) predicts that reduced effective population size weakens purifying selection and promotes transposable element (TE) accumulation. Because effective population size is difficult to estimate across broad taxonomic scales, body mass, generation time, and dN/dS are often used as proxies. We analyzed TE landscapes across 167 sauropsid genomes to test whether these proxies predict genomic TE proportion consistently across phylogenetic scales. All three showed strong scale dependence. Body mass was positively associated with TE proportion across clades, but this relationship broke down within clades: only snakes retained a significant negative Pearson correlation after multiple-testing correction, whereas the corresponding phylogenetically corrected slopes were not significant. Generation time showed a strong pooled association that disappeared within every major clade in both Pearson and PGLS analyses. The pooled dN/dS-TE relationship also disappeared after accounting for body mass and generation time in a structural equation model, with a robust within-clade association retained only in turtles. Lineage-specific TE dynamics, including LTR expansion in sea snakes, were not captured by these proxies. These results show that commonly used MHH proxies mainly reflect clade-level structure rather than consistent within-lineage mechanisms.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Empirical validation of the nearly neutral theory at divergence and population genomic scale using 150 mammals genomes 94%
- Linked-Read Sequencing of Eight Falcons Reveals a Unique Genomic Architecture in Flux 93%
- Substitution spectrum and selection at G-quadruplexes in great ape telomere-to-telomere genomes 93%
Similar papers in this journal
- Sex-biased dispersal drives mito-nuclear discordance in simulated populations 92%
- Polygenic and monogenic adaptation drive evolutionary rescue at different magnitudes of environmental change 91%
- Chromosomal Fusions and Evolutionary Forces: Exploring theNeo-Sex Chromosome System of Anolis distichus 91%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.