Genomic data of marine three-spined sticklebacks

Fuente: PANGAEA
Saved in:
Bibliographic Details
Main Authors: Meyer, Britta S, Heckwolf, Melanie, Häsler, Robert, Höppner, Marc P, Eizaguirre, Christophe, Reusch, Thorsten B H
Format: Dataset Open Access
Language:en
Published: PANGAEA 2019
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1867170474934403072
author Meyer, Britta S
Heckwolf, Melanie
Häsler, Robert
Höppner, Marc P
Eizaguirre, Christophe
Reusch, Thorsten B H
author_facet Meyer, Britta S
Heckwolf, Melanie
Häsler, Robert
Höppner, Marc P
Eizaguirre, Christophe
Reusch, Thorsten B H
collection Datos científicos de ciencias marinas y ambientales
contents While environmentally inducible epigenetic marks are discussed as one mechanism of transgenerational plasticity, environmentally stable epigenetic marks emerge randomly. When resulting in variable phenotypes, stable marks can be targets of natural selection analogous to DNA sequence-based adaptation processes. We studied both postulated pathways in natural populations of three-spined sticklebacks (Gasterosteus aculeatus) and sequenced their methylomes and genomes across a salinity cline. Consistent with local adaptation, populations showed differential methylation (pop-DMS) at genes enriched for osmoregulatory processes. In a two-generation experiment, 62% of these pop-DMS were insensitive to salinity manipulation, suggesting that they could be stable targets for natural selection. Two-thirds of the remaining inducible pop-DMS became more similar to patterns detected in wild populations from the corresponding salinity, and this pattern accentuated over consecutive generations, indicating a mechanism of adaptive transgenerational plasticity. Natural DNA methylation patterns can thus be attributed to two epigenetic pathways underlying the rapid emergence of adaptive phenotypes in the face of environmental change.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_909531
institution PANGAEA
language en
publishDate 2019
publisher PANGAEA
record_format pangaea
spellingShingle Genomic data of marine three-spined sticklebacks
Meyer, Britta S
Heckwolf, Melanie
Häsler, Robert
Höppner, Marc P
Eizaguirre, Christophe
Reusch, Thorsten B H
Baltic Sea; Local adaptation; population genomics; three-spined stickleback; Whole genome sequencing
While environmentally inducible epigenetic marks are discussed as one mechanism of transgenerational plasticity, environmentally stable epigenetic marks emerge randomly. When resulting in variable phenotypes, stable marks can be targets of natural selection analogous to DNA sequence-based adaptation processes. We studied both postulated pathways in natural populations of three-spined sticklebacks (Gasterosteus aculeatus) and sequenced their methylomes and genomes across a salinity cline. Consistent with local adaptation, populations showed differential methylation (pop-DMS) at genes enriched for osmoregulatory processes. In a two-generation experiment, 62% of these pop-DMS were insensitive to salinity manipulation, suggesting that they could be stable targets for natural selection. Two-thirds of the remaining inducible pop-DMS became more similar to patterns detected in wild populations from the corresponding salinity, and this pattern accentuated over consecutive generations, indicating a mechanism of adaptive transgenerational plasticity. Natural DNA methylation patterns can thus be attributed to two epigenetic pathways underlying the rapid emergence of adaptive phenotypes in the face of environmental change.
title Genomic data of marine three-spined sticklebacks
topic Baltic Sea; Local adaptation; population genomics; three-spined stickleback; Whole genome sequencing
url https://doi.org/10.1594/PANGAEA.909531