Elephant genomes reveal insights into differences in disease defense mechanisms between species
Tollis, M.; Ferris, E.; Campbell, M. S.; Harris, V. K.; Rupp, S. M.; Harrison, T. M.; Kiso, W. K.; Schmitt, D. L.; Garner, M. M.; Aktipis, C. A.; Maley, C. C.; Boddy, A. M.; Yandell, M.; Gregg, C.; Schiffman, J. D.; Abegglen, L. M.
Show abstract
Disease susceptibility and resistance comprise important factors in conservation, particularly in elephants. To determine genetic mechanisms underlying disease resistance and other unique elephant traits, we estimated 862 and 1,017 potential regulatory elements in Asian and African elephants, respectively. These elements are significantly enriched in both species with differentially expressed genes involved in immunity pathways, including tumor-necrosis factor which plays a role in the response to elephant endotheliotropic herpesvirus (EEHV). Population genomics analyses indicate that amplified TP53 retrogenes are maintained by purifying selection and may contribute to cancer resistance in elephants, including less malignancies in African vs. Asian elephants. Positive selection scans across elephant genomes revealed genes that may control iconic elephant traits such as tusk development, memory, and somatic maintenance. Our study supports the hypothesis that interspecies variation in gene regulation contributes to differential inflammatory responses leading to increased infectious disease and cancer susceptibility in Asian versus African elephants. Genomics can inform functional immunological studies which may improve both conservation for elephants and human therapies.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Whole-genome sequence analysis unveils different origins of European and Asiatic mouflon and domestication-related genes in sheep 97%
- Complex population structure of the Atlantic puffin revealed by whole genome analyses 96%
- Spatially resolved cell atlas of the teleost telencephalon and deep homology of the vertebrate forebrain 95%