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性特有的超显性作用在成熟 vgll3 基因中对野生大西洋三文鱼的生殖适应性的影响。

Sex-specific overdominance at the maturation vgll3 gene for reproductive fitness in wild Atlantic salmon.

机构信息

Organismal and Evolutionary Biology Research Program, Faculty of Biological and Environmental Sciences, University of Helsinki, Helsinki, Finland.

Department of Genetics, Norwegian College of Fishery Science, UiT the Arctic University of Norway, Tromsø, Norway.

出版信息

Mol Ecol. 2024 Jul;33(14):e17435. doi: 10.1111/mec.17435. Epub 2024 Jun 15.

Abstract

Linking reproductive fitness with adaptive traits at the genomic level can shed light on the mechanisms that produce and maintain sex-specific selection. Here, we construct a multigenerational pedigree to investigate sex-specific selection on a maturation gene, vgll3, in a wild Atlantic salmon population. The vgll3 locus is responsible for ~40% of the variation in maturation (sea age at first reproduction). Genetic parentage analysis was conducted on 18,265 juveniles (parr) and 685 adults collected at the same spawning ground over eight consecutive years. A high proportion of females (26%) were iteroparous and reproduced two to four times in their lifetime. A smaller proportion of males (9%) spawned at least twice in their lifetime. Sex-specific patterns of reproductive fitness were related to vgll3 genotype. Females showed a pattern of overdominance where vgll3EL genotypes had three-fold more total offspring than homozygous females. In contrast, males demonstrated that late-maturing vgll3LL individuals had two-fold more offspring than either vgll3EE or vgll3EL males. Taken together, these data suggest that balancing selection in females contributes to the maintenance of variation at this locus via increased fitness of iteroparous vgll3*EL females. This study demonstrates the utility of multigenerational pedigrees for uncovering complex patterns of reproduction, sex-specific selection and the maintenance of genetic variation.

摘要

在基因组水平上将生殖适应性与适应性特征联系起来,可以揭示产生和维持性别特异性选择的机制。在这里,我们构建了一个多世代家谱,以调查野生大西洋鲑种群中成熟基因 vgll3 的性别特异性选择。vgll3 基因座负责约 40%的成熟(首次繁殖的海龄)变异。在连续八年的同一产卵场,对 18265 只幼鱼(幼鱼)和 685 只成年鱼进行了遗传亲代分析。相当一部分雌性(26%)是多次产卵的,一生中繁殖两到四次。雄性中产卵两次以上的比例较小(9%)。生殖适应性的性别特异性模式与 vgll3 基因型有关。雌性表现出超显性模式,其中 vgll3EL 基因型的总后代数是纯合雌性的三倍。相比之下,雄性表现出晚熟的 vgll3LL 个体的后代数量比 vgll3EE 或 vgll3EL 雄性多一倍。综上所述,这些数据表明,雌性中的平衡选择通过增加多次产卵的 vgll3*EL 雌性的适应性来维持该基因座的变异。这项研究表明,多世代家谱可用于揭示复杂的繁殖模式、性别特异性选择和遗传变异的维持。

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