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Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations? / Westram, Anja M; Galindo, J.; Alm Rosenblad, M. et al.
In: Molecular Ecology, Vol. 23, No. 18, 09.2014, p. 4603-4616.

Research output: Contribution to journalArticlepeer-review

HarvardHarvard

Westram, AM, Galindo, J, Alm Rosenblad, M, Grahame, JW, Panova, M & Butlin, RK 2014, 'Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations?', Molecular Ecology, vol. 23, no. 18, pp. 4603-4616. https://doi.org/10.1111/mec.12883

APA

Westram, A. M., Galindo, J., Alm Rosenblad, M., Grahame, J. W., Panova, M., & Butlin, R. K. (2014). Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations? Molecular Ecology, 23(18), 4603-4616. https://doi.org/10.1111/mec.12883

CBE

Westram AM, Galindo J, Alm Rosenblad M, Grahame JW, Panova M, Butlin RK. 2014. Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations?. Molecular Ecology. 23(18):4603-4616. https://doi.org/10.1111/mec.12883

MLA

VancouverVancouver

Westram AM, Galindo J, Alm Rosenblad M, Grahame JW, Panova M, Butlin RK. Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations? Molecular Ecology. 2014 Sept;23(18):4603-4616. doi: https://doi.org/10.1111/mec.12883

Author

Westram, Anja M ; Galindo, J. ; Alm Rosenblad, M. et al. / Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations?. In: Molecular Ecology. 2014 ; Vol. 23, No. 18. pp. 4603-4616.

RIS

TY - JOUR

T1 - Do the same genes underlie parallel phenotypic divergence in different Littorina saxatilis populations?

AU - Westram, Anja M

AU - Galindo, J.

AU - Alm Rosenblad, M.

AU - Grahame, John W.

AU - Panova, Marina

AU - Butlin, R.K.

PY - 2014/9

Y1 - 2014/9

N2 - Parallel patterns of adaptive divergence and speciation are cited as powerful evidence for the role of selection driving these processes. However, it is often not clear whether parallel phenotypic divergence is underlain by parallel genetic changes. Here, we asked about the genetic basis of parallel divergence in the marine snail Littorina saxatilis, which has repeatedly evolved coexisting ecotypes adapted to either crab predation or wave action. We sequenced the transcriptome of snails of both ecotypes from three distant geographical locations (Spain, Sweden and United Kingdom) and mapped the reads to the L. saxatilis reference genome. We identified genomic regions potentially under divergent selection between ecotypes within each country, using an outlier approach based on FST values calculated per locus. In line with previous studies indicating that gene reuse is generally common, we expected to find extensive sharing of outlier loci due to recent shared ancestry and gene flow between at least two of the locations in our study system. Contrary to our expectations, we found that most outliers were country specific, suggesting that much of the genetic basis of divergence is not shared among locations. However, we did find that more outliers were shared than expected by chance and that differentiation of shared outliers is often generated by the same SNPs. We discuss two mechanisms potentially explaining the limited amount of sharing we observed. First, a polygenic basis of divergent traits might allow for multiple distinct molecular mechanisms generating the same phenotypic patterns. Second, additional, location-specific axes of selection that we did not focus on in this study may produce distinct patterns of genetic divergence within each site.

AB - Parallel patterns of adaptive divergence and speciation are cited as powerful evidence for the role of selection driving these processes. However, it is often not clear whether parallel phenotypic divergence is underlain by parallel genetic changes. Here, we asked about the genetic basis of parallel divergence in the marine snail Littorina saxatilis, which has repeatedly evolved coexisting ecotypes adapted to either crab predation or wave action. We sequenced the transcriptome of snails of both ecotypes from three distant geographical locations (Spain, Sweden and United Kingdom) and mapped the reads to the L. saxatilis reference genome. We identified genomic regions potentially under divergent selection between ecotypes within each country, using an outlier approach based on FST values calculated per locus. In line with previous studies indicating that gene reuse is generally common, we expected to find extensive sharing of outlier loci due to recent shared ancestry and gene flow between at least two of the locations in our study system. Contrary to our expectations, we found that most outliers were country specific, suggesting that much of the genetic basis of divergence is not shared among locations. However, we did find that more outliers were shared than expected by chance and that differentiation of shared outliers is often generated by the same SNPs. We discuss two mechanisms potentially explaining the limited amount of sharing we observed. First, a polygenic basis of divergent traits might allow for multiple distinct molecular mechanisms generating the same phenotypic patterns. Second, additional, location-specific axes of selection that we did not focus on in this study may produce distinct patterns of genetic divergence within each site.

KW - adaptive divergence

KW - parallel evolution

KW - speciation

KW - transcriptome

KW - scan

U2 - https://doi.org/10.1111/mec.12883

DO - https://doi.org/10.1111/mec.12883

M3 - Article

VL - 23

SP - 4603

EP - 4616

JO - Molecular Ecology

JF - Molecular Ecology

SN - 0962-1083

IS - 18

ER -