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Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation

BACKGROUND: The evolution of barriers to reproduction is of key interest to understand speciation. However, there may be a current bias towards studying intrinsic postzygotic isolation in old species pairs as compared to the emergence of barriers to gene flow through adaptive divergence. This study...

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Autores principales: Nolte, Arne W, Renaut, Sébastien, Bernatchez, Louis
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662803/
https://www.ncbi.nlm.nih.gov/pubmed/19291312
http://dx.doi.org/10.1186/1471-2148-9-59
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author Nolte, Arne W
Renaut, Sébastien
Bernatchez, Louis
author_facet Nolte, Arne W
Renaut, Sébastien
Bernatchez, Louis
author_sort Nolte, Arne W
collection PubMed
description BACKGROUND: The evolution of barriers to reproduction is of key interest to understand speciation. However, there may be a current bias towards studying intrinsic postzygotic isolation in old species pairs as compared to the emergence of barriers to gene flow through adaptive divergence. This study evaluates the relative importance of both processes in the evolution of genomic isolation in incipient species of whitefish (Coregonus clupeaformis) for which preliminary data suggest that postzygotic isolation emerges with intrinsic factors acting at embryo stages but also due to extrinsic factors during adult life. RESULTS: Gene expression data were screened using cDNA microarrays to identify regulatory changes at embryo and juvenile stages that provide evidence for genomic divergence at the underlying genetic factors. A comparison of different life history stages shows that 16-week old juvenile fish have 14 times more genes displaying significant regulatory divergence than embryos. Furthermore, regulatory changes in juvenile fish match patterns in adult fish suggesting that gene expression divergence is established early in juvenile fish and persists throughout the adult phase. Comparative analyses with results from previous studies on dwarf-normal species pairs show that at least 26 genetic factors identified in juvenile fish are candidate traits for adaptive divergence in adult fish. Eight of these show parallel directions of gene expression divergence independent of tissue type or age of the fish. The latter are associated with energy metabolism, a complex trait known to drive adaptive divergence in dwarf and normal whitefish. CONCLUSION: Although experimental evidence suggests the existence of genetic factors that cause intrinsic postzygotic isolation acting in embryos, the analysis presented here provided few candidate genes in embryos, which also corroborate previous studies showing a lack of ecological divergence between sympatric dwarf and normal whitefish at the larval stage. In contrast, gene expression divergence in juveniles can be linked to adaptive traits and seems to be driven by positive selection. The results support the idea that adaptive differentiation may be more important in explaining the emergence of barriers to gene flow in an early phase of speciation by providing a broad genomic basis for extrinsic postzygotic isolation rather than intrinsic barriers.
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spelling pubmed-26628032009-03-31 Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation Nolte, Arne W Renaut, Sébastien Bernatchez, Louis BMC Evol Biol Research Article BACKGROUND: The evolution of barriers to reproduction is of key interest to understand speciation. However, there may be a current bias towards studying intrinsic postzygotic isolation in old species pairs as compared to the emergence of barriers to gene flow through adaptive divergence. This study evaluates the relative importance of both processes in the evolution of genomic isolation in incipient species of whitefish (Coregonus clupeaformis) for which preliminary data suggest that postzygotic isolation emerges with intrinsic factors acting at embryo stages but also due to extrinsic factors during adult life. RESULTS: Gene expression data were screened using cDNA microarrays to identify regulatory changes at embryo and juvenile stages that provide evidence for genomic divergence at the underlying genetic factors. A comparison of different life history stages shows that 16-week old juvenile fish have 14 times more genes displaying significant regulatory divergence than embryos. Furthermore, regulatory changes in juvenile fish match patterns in adult fish suggesting that gene expression divergence is established early in juvenile fish and persists throughout the adult phase. Comparative analyses with results from previous studies on dwarf-normal species pairs show that at least 26 genetic factors identified in juvenile fish are candidate traits for adaptive divergence in adult fish. Eight of these show parallel directions of gene expression divergence independent of tissue type or age of the fish. The latter are associated with energy metabolism, a complex trait known to drive adaptive divergence in dwarf and normal whitefish. CONCLUSION: Although experimental evidence suggests the existence of genetic factors that cause intrinsic postzygotic isolation acting in embryos, the analysis presented here provided few candidate genes in embryos, which also corroborate previous studies showing a lack of ecological divergence between sympatric dwarf and normal whitefish at the larval stage. In contrast, gene expression divergence in juveniles can be linked to adaptive traits and seems to be driven by positive selection. The results support the idea that adaptive differentiation may be more important in explaining the emergence of barriers to gene flow in an early phase of speciation by providing a broad genomic basis for extrinsic postzygotic isolation rather than intrinsic barriers. BioMed Central 2009-03-16 /pmc/articles/PMC2662803/ /pubmed/19291312 http://dx.doi.org/10.1186/1471-2148-9-59 Text en Copyright © 2009 Nolte et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Nolte, Arne W
Renaut, Sébastien
Bernatchez, Louis
Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
title Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
title_full Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
title_fullStr Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
title_full_unstemmed Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
title_short Divergence in gene regulation at young life history stages of whitefish (Coregonus sp.) and the emergence of genomic isolation
title_sort divergence in gene regulation at young life history stages of whitefish (coregonus sp.) and the emergence of genomic isolation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2662803/
https://www.ncbi.nlm.nih.gov/pubmed/19291312
http://dx.doi.org/10.1186/1471-2148-9-59
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