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Reproductive isolation in a nascent species pair is associated with aneuploidy in hybrid offspring

机译:新生物种对中的生殖隔离与杂种后代的非整倍性有关

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摘要

Speciation may occur when the genomes of two populations accumulate genetic incompatibilities and/or chromosomal rearrangements that prevent inter-breeding in nature. Chromosome stability is critical for survival and faithful transmission of the genome, and hybridization can compromise this. However, the role of chromosomal stability on hybrid incompatibilities has rarely been tested in recently diverged populations. Here, we test for chromosomal instability in hybrids between nascent species, the ‘dwarf’ and ‘normal’ lake whitefish (Coregonus clupeaformis). We examined chromosomes in pure embryos, and healthy and malformed backcross embryos. While pure individuals displayed chromosome numbers corresponding to the expected diploid number (2n = 80), healthy backcrosses showed evidence of mitotic instability through an increased variance of chromosome numbers within an individual. In malformed backcrosses, extensive aneuploidy corresponding to multiples of the haploid number (1n = 40, 2n = 80, 3n = 120) was found, suggesting meiotic breakdown in their F1 parent. However, no detectable chromosome rearrangements between parental forms were identified. Genomic instability through aneuploidy thus appears to contribute to reproductive isolation between dwarf and normal lake whitefish, despite their very recent divergence (approx. 15–20 000 generations). Our data suggest that genetic incompatibilities may accumulate early during speciation and limit hybridization between nascent species.
机译:当两个种群的基因组积累了遗传不相容性和/或染色体重排而阻止自然杂交的时候,物种可能会形成。染色体稳定性对于基因组的存活和忠实传递至关重要,而杂交会损害这一点。但是,染色体稳定性对杂交不相容性的作用很少在最近的人群中进行过测试。在这里,我们测试了新生物种,“矮”和“正常”湖白鲑(Coregonus clupeaformis)之间的杂交体中的染色体不稳定。我们检查了纯胚胎,健康和畸形的回交胚胎中的染色体。当纯净的个体显示出与预期的二倍体数相对应的染色体数(2n = 80)时,健康的回交显示出个体内部染色体数的变化增加,从而证明了有丝分裂的不稳定性。在畸形的回交中,发现广泛的非整倍性,对应于单倍体数的倍数(1n = 40、2n = 80、3n = 120),表明其F1亲本减数分裂失败。然而,没有发现父母形式之间可检测的染色体重排。尽管它们最近才出现分化(约15-20 000代),但通过非整倍体造成的基因组不稳定性似乎有助于矮人和正常湖泊白鲑之间的生殖隔离。我们的数据表明,遗传不相容性可能在物种形成过程中早期积累,并限制了新生物种之间的杂交。

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