Long-term hybridization in a karst window reveals the genetic basis of eye loss in cavefish
Kellermeyer, R.; Seidel, C.; Redwine, W. B.; Moran, R. L.; Bertho, S.; Ornelas-Garcia, C. P.; Alegre, D.; Weaver, K. J.; Unruh, J.; Troutwine, B.; Wang, Y.; Collins, E.; Rutkowski, J.; McGaugh, S. E.; Espinasa, L.; Rohner, N.
Show abstract
Eye loss is a hallmark trait of animals inhabiting perpetual darkness, such as caves. The Mexican tetra (Astyanax mexicanus) provides an unparalleled model for studying the genetic basis of eye loss. There are two interfertile morphs of the Mexican tetra, sighted surface fish and multiple independently evolved eyeless, blind cavefish populations. Despite decades of research on eye loss in this species, our understanding of the precise genetic basis remains sparse. Here, we focused on the unique Caballo Moro cave, where there is a karst window collapse that introduced sunlight and coexistence of both eyed and eyeless cavefish of similar genetic background. This unique genetic mosaic allowed us to pinpoint coding mutations in Connexin 50 (Cx50), also known as gap junction protein alpha 8b (Gja8b), as critical in the genetic basis of eye loss. CRISPR based knockouts of Cx50 in surface fish result in small or absent eyes as young as 48 hours post-fertilization. Further, we identified similar mutations in Cx50 that alter predicted protein structure among other cave-dwelling fish and even subterranean mammals, indicating a conserved evolutionary mechanism of Cx50 mutations. We introduced a mutation (Cx50-S89K) in mice, which resulted in cataracts, smaller eyes, and smaller lenses. Mutations in Cx50 mimic those identified in human congenital cataracts. We additionally leveraged phenotypic variation in a hybrid cavefish population to demonstrate that eyes provide fish with a metabolic advantage, providing a mechanism by which loss of eyes could be favored by selection. This unique hybridization event allowed us to identify novel alleles that contribute to the convergent evolution of eye loss, providing profound insights into the genetic underpinnings of one of natures most fascinating adaptive traits.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Evolution of the potassium channel gene Kcnj13 underlies colour pattern diversification in Danio fish 96%
- In situ differentiation of iridophore crystallotypes underlies zebrafish stripe patterning 95%
- Two modes of evolution shape bacterial strain diversity in the gut for thousands of generations 95%
Similar papers in this journal
- Evolutionary assembly of cooperating cell types in an animal chemical defense system 95%
- Induction of cortical Par complex polarity by designed proteins causes cytoskeletal symmetry breaking in unpolarized mammalian cells 95%
- Generating parallel representations of position and identity in the olfactory system 95%
"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.