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Intraspecific hybridization and the recovery of fitness in the native legume Chamaecrista fasciculata

机译:种内杂交和本地豆类Chamaecrista fasciculata的适应性恢复

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Genetic incompatibilities and low offspring fitness are characteristic outcomes of hybridization between species. Yet, the creative potential of recombination following hybridization continues to be debated. Here we quantify the outcome of hybridization and recombination between adaptively divergent populations of the North American legume Chamaecrista fasciculata in a large-scale field experiment. Previously, hybrids between these populations demonstrated hybrid breakdown, suggesting the expression of adaptive epistatic interactions underlying population genetic differentiation. However, the outcome of hybridization ultimately rests on the performance of even later generation recombinants. In experiments that compared the performance of recombinant F-6 and F-2 generations with nonrecombinant F-1 and parental genotypes, we observed that increasing recombination had contrasting effects on different life-history components. Lifetime fitness, defined as the product of survivorship and reproduction, showed a strong recovery of fitness in the F-6. The overall gain in fitness with increased recombination suggests that hybridization and recombination may provide the necessary genetic variation for adaptive evolution within species. We discuss the mechanisms that may account for the gain in fitness with recombination, and explore the implications for hybrid speciation and phenotypic evolution.
机译:遗传不相容和后代适应性低是种间杂交的特征性结果。然而,杂交后重组的创造性潜力仍在争论中。在这里,我们在大规模的田间实验中量化了北美豆类Chamaecrista fasciculata的适应分歧种群之间杂交和重组的结果。以前,这些种群之间的杂种表现出杂种优势,表明潜在的种群遗传分化的适应性上位相互作用的表达。然而,杂交的结果最终取决于甚至下一代重组体的性能。在将重组F-6和F-2代与非重组F-1和亲本基因型的性能进行比较的实验中,我们观察到重组的增加对不同的生活史成分具有相反的影响。终生适应度被定义为生存和繁殖的产物,表明F-6的适应性得到了强劲恢复。随着重组的增加,整体适应性提高表明杂交和重组可能为物种内的适应性进化提供必要的遗传变异。我们讨论了可能适合重组的增益的机制,并探讨了杂交物种和表型进化的意义。

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