4.6 Article

Estimates of recent and historical effective population size in turbot, seabream, seabass and carp selective breeding programmes

期刊

GENETICS SELECTION EVOLUTION
卷 53, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12711-021-00680-9

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资金

  1. European Union [KBBE.2013.1.2-659 10, 613611]
  2. European Commission Horizon 2020 (H2020) Framework Programme [727315]
  3. Ministerio de Ciencia e Innovacion [CGL2016-75904-C2, PID2020-114426GB-C22, PID2020-114426GB-C2]
  4. Xunta de Galicia (GRC) [ED431C 2020-05]
  5. European Union (European Regional Development Fund-ERDF)
  6. Fondos Feder Unha maneira de facer Europa
  7. Ministry of Education, Youth and Sports of the Czech Republic-project Biodiverzity [CZ.02.1.01/0.0/0.0/16_ 025/0007370]
  8. Biotechnology and Biological Sciences Research Council Institute Strategic Programme [BBS/E/D/20241866, BBS/E/D/20002172, BBS/E/D/20002174]
  9. Centro singular de investigacion de Galicia accreditation 2019-2022

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The study reveals that the current effective population size of commercial fish populations is small, posing a risk to their sustainability. Important drops in effective population size were detected about five to nine generations ago, likely due to domestication and selective breeding programmes in Europe. To ensure the sustainability of breeding programmes, it is crucial to broaden the genetic composition of base populations and implement measures to increase effective population size across farmed populations.
Background The high fecundity of fish species allows intense selection to be practised and therefore leads to fast genetic gains. Based on this, numerous selective breeding programmes have been started in Europe in the last decades, but in general, little is known about how the base populations of breeders have been built. Such knowledge is important because base populations can be created from very few individuals, which can lead to small effective population sizes and associated reductions in genetic variability. In this study, we used genomic information that was recently made available for turbot (Scophthalmus maximus), gilthead seabream (Sparus aurata), European seabass (Dicentrarchus labrax) and common carp (Cyprinus carpio) to obtain accurate estimates of the effective size for commercial populations. Methods Restriction-site associated DNA sequencing data were used to estimate current and historical effective population sizes. We used a novel method that considers the linkage disequilibrium spectrum for the whole range of genetic distances between all pairs of single nucleotide polymorphisms (SNPs), and thus accounts for potential fluctuations in population size over time. Results Our results show that the current effective population size for these populations is small (equal to or less than 50 fish), potentially putting the sustainability of the breeding programmes at risk. We have also detected important drops in effective population size about five to nine generations ago, most likely as a result of domestication and the start of selective breeding programmes for these species in Europe. Conclusions Our findings highlight the need to broaden the genetic composition of the base populations from which selection programmes start, and suggest that measures designed to increase effective population size within all farmed populations analysed here should be implemented in order to manage genetic variability and ensure the sustainability of the breeding programmes.

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