Genomic differentiation of the black-chinned tilapia (Sarotherodon melanotheron) along a fresh-to-hypersaline water gradient
TINE, M.; GOUTIERAS, F.; D'COTTA, H.; BAROILLER, J.-F.; GEORGE, S.; BELKHIR, K.; DURAND, J.-D.; LORIN-NEBEL, C.; GUINAND, B.
Show abstract
The black-chinned tilapia (Sarotherodon melanotheron) is an African fish species, found in freshwater, brackish, marine and especially hypersaline (up to 110 {per thousand}) habitats in Senegambia. Using 16,786 filtered single nucleotide polymorphism (SNP) markers, we investigated whether it has responded adaptively to this fresh-to-hypersaline water gradient. Significant genetic differentiation between samples was observed (FST = 0.0568, p < 0.01), revealing an interplay between geographic and environmental variation. We focused on a set of outlier SNPs (n = 255; FST = 0.320, p < 0.001) indicative of adaptive variation, 119 of which mapped to annotated genes in the Oreochromis niloticus genome. Significant enrichment was found for physiological pathways relevant to osmosensing and osmoregulation (e.g. inositol phosphate, thyroid hormone synthesis pathways), but also for immune-related pathways that could be activated by ion fluxes (e.g. inflammasome). Some outlier loci mapped to genes that are known to respond to salinity variation in other organisms, including genes found to be differentially expressed in black-chinned tilapia. Adaptive variation along a fresh-to-hypersaline water gradient is well supported in black-chinned tilapia, but its association with climate change specifically induced by hypersalinity deserves further attention particularly in the context of increasing cases of inverted estuaries being reported worldwide.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Adaptive and maladaptive genetic diversity in small populations; insights from the Brook Charr (Salvelinus fontinalis) case study 96%
- Local Adaptation and Transcriptomic Plasticity of the Copepod Acartia tonsa Under Low Salinity Stress 96%
- Transcriptomic divergence predicts morphological and ecological variation underlying an adaptive radiation 96%
Similar papers in this journal
- Seascape genomics reveals limited dispersal and suggest spatially varying selection among European populations of sea lamprey (Petromyzon marinus) 97%
- Brain transcriptome of gobies inhabiting natural CO2 seeps reveal acclimation strategies to long-term acidification 97%
- Defining conservation units in a highly diverse species: A case on Arctic charr 95%
Similar papers in this journal
- Genomic signals found using RNA sequencing support conservation of walleye (Sander vitreus) in a large freshwater ecosystem. 96%
- A chromosomal inversion may facilitate adaptation despite periodic gene flow in a freshwater fish 96%
- Amoebic gill disease (AGD) in Atlantic Salmon investigated through a holo-omic lens 95%
Similar papers in this journal
- Discordant population structure inferred from male- and female-type mtDNAs from Macoma balthica, a bivalve species characterized by doubly uniparental inheritance of mitochondria 94%
- Sex-biased gene expression across tissues reveals unexpected differentiation in the gills of the threespine stickleback 93%
- Chromosome level genome reference of the Caucasian dwarf goby Knipowitschia cf. caucasica, a new alien Gobiidae invadingthe River Rhine 93%
"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.