首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Incomplete reproductive isolation and strong transcriptomic response to hybridization between sympatric sister species of salmon
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Incomplete reproductive isolation and strong transcriptomic response to hybridization between sympatric sister species of salmon

机译:不完全生殖隔离和强大的转录组反应对Sympatric姐妹种类之间的杂交

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摘要

Global change is altering ecosystems at an unprecedented rate. The resulting shifts in species ranges and reproductive timing are opening the potential for hybridization between closely related species which could dramatically alter the genetic diversity, adaptive capacity and evolutionary trajectory of interbreeding taxa. Here, we used behavioural breeding experiments, in vitro fertilization experiments, and whole-transcriptome gene expression data to assess the potential for and consequences of hybridization between Chinook and Coho salmon. We show that behavioural and gametic prezygotic barriers between socio-economically valuable Chinook and Coho salmon are incomplete. Postzygotically, we demonstrate a clear transcriptomic response to hybridization among F-1 Chinook-Coho offspring. Genes transgressively expressed within hybrids were significantly enriched with genes encoded in the nucleus but localized to the mitochondrion, suggesting a potential role for mito-nuclear incompatibilities as a postzygotic mechanism of hybrid breakdown. Chinook and Coho salmon are expected to continue to respond to climate change with shifts in migration timing and habitat use, potentiating hybridization between these species. The downstream consequences of hybridization on the future of these threatened salmon, and the ecosystems they inhabit, is unknown.
机译:全球变化正在以前所未有的速度改变生态系统。由此产生的物种范围和繁殖时间的变化为近缘物种之间的杂交打开了可能性,这可能会极大地改变杂交分类群的遗传多样性、适应能力和进化轨迹。在这里,我们使用行为育种实验、体外受精实验和全转录组基因表达数据来评估Chinook和Coho鲑鱼之间杂交的可能性和结果。我们表明,具有社会经济价值的奇努克鲑和科霍鲑之间的行为和配子前合子障碍是不完整的。合子后,我们证明了F-1 Chinook Coho后代对杂交的明确转录组学反应。杂交种中过度表达的基因显著富集在细胞核中编码但定位于线粒体的基因,这表明有丝分裂-核不亲和性可能是杂交种解体的合子后机制。预计科希亚托鲑和科希亚托鲑在栖息地和杂交中继续利用这些时间变化来应对气候变化。杂交对这些受威胁的鲑鱼及其栖息的生态系统的未来影响尚不清楚。

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