Testing the caves-as-islands model in two cave-obligate invertebrates with a genomic approach
Balogh, A.; Dixon, G. B.; Ngo, L.; Zigler, K. S.
Show abstract
Caves offer selective pressures that are distinct from the surface. Organisms that have evolved to exist under these pressures typically exhibit a suite of convergent characteristics, including a loss or reduction of eyes and pigmentation. As a result, cave-obligate taxa, termed troglobionts, are no longer viable on the surface. This circumstance has led to a "caves as islands" model of troglobiont evolution that predicts extreme genetic divergence between cave populations even across relatively small areas. An effective test of this model would involve (1) common troglobionts from (2) nearby caves in a cave-dense region, (3) good sample sizes per cave, (4) multiple taxa, and (5) genome-wide characterization. With these criteria in mind, we used RAD-seq to genotype an average of ten individuals of the troglobiotic spider Nesticus barri and the troglobiotic beetle Ptomaphagus hatchi, each from four closely located caves (ranging from 3-13 km apart) in the cave-rich southern Cumberland Plateau of Tennessee, USA. Consistent with the caves as islands model, we find that populations from separate caves are indeed highly genetically isolated. In addition, nucleotide diversity was correlated to cave length, suggesting that cave size is a dominant force shaping troglobiont population size and genetic diversity. Our results support the idea of caves as natural laboratories for the study of parallel evolutionary processes.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Whole-genome evaluation of genetic rescue: the case of a curiously isolated and endangered butterfly 97%
- Ongoing production of low-fitness hybrids limits range overlap between divergent cryptic species 97%
- Sustained plumage divergence despite weak genomic differentiation and broad sympatry in sister species of Australian woodswallows (Artamus spp.) 97%
Similar papers in this journal
- Population connectivity predicts vulnerability to white-nose syndrome in the Chilean myotis (Myotis chiloensis) - a genomics approach 96%
- The genomic landscape of divergence across the speciation continuum in island-colonising silvereyes (Zosterops lateralis) 96%
- Genome-wide changes in genetic diversity in a population of Myotis lucifugus affected by white-nose syndrome 96%
Similar papers in this journal
- Panmixia across elevation in thermally sensitive Andean dung beetles 97%
- Extensive admixture among karst-obligate salamandersreveals evidence of recent divergence and gene exchangethrough aquifers 97%
- Low-coverage reduced representation sequencing reveals subtle within-island genetic structure in Aldabra giant tortoises 96%
Similar papers in this journal
- Chromosomal-level genome assembly of the scimitar-horned oryx: insights into diversity and demography of a species extinct in the wild 96%
- New approaches to species delimitation and population structure of corals: two case studies using ultraconserved elements and exons 95%
- Regarding the F-word: the effects of data Filtering on inferred genotype-environment associations 95%
Similar papers in this journal
- Evolutionary Genomics of Sister Species Differing in Effective Population Sizes and Recombination Rates 97%
- Genomic variation and population histories of spotted (Strix occidentalis) and barred (S. varia) owls 96%
- Hybridization dynamics and extensive introgression in the Daphnia longispina species complex: new insights from a high-quality Daphnia galeata reference genome 96%
"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.