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Moving Speciation Genetics Forward: Modern Techniques Build on Foundational Studies in Drosophila

机译:推动物种遗传学发展:以果蝇基础研究为基础的现代技术

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摘要

The question of how new species evolve has been examined at every level, from macroevolutionary patterns of diversification to molecular population genetic analyses of specific genomic regions between species pairs. Drosophila has been at the center of many of these research efforts. Though our understanding of the speciation process has grown considerably over the past few decades, very few genes have been identified that contribute to barriers to reproduction. The development of advanced molecular genetic and genomic methods provides promising avenues for the rapid discovery of more genes that contribute to speciation, particularly those involving prezygotic isolation. The continued expansion of tools and resources, especially for species other than Drosophila melanogaster, will be most effective when coupled with comparative approaches that reveal the genetic basis of reproductive isolation across a range of divergence times. Future research programs in Drosophila have high potential to answer long-standing questions in speciation. These include identifying the selective forces that contribute to divergence between populations and the genetic basis of traits that cause reproductive isolation. The latter can be expanded upon to understand how the genetic basis of reproductive isolation changes over time and whether certain pathways and genes are more commonly involved.
机译:从多样化的宏观进化模式到物种对之间特定基因组区域的分子种群遗传分析,已经从各个层面研究了新物种如何进化的问题。果蝇一直是许多此类研究工作的中心。尽管在过去的几十年中,我们对物种形成过程的理解有了很大的增长,但几乎没有发现导致繁殖障碍的基因。先进的分子遗传和基因组方法的发展为迅速发现更多有助于物种形成的基因(尤其是涉及合子前分离的那些基因)提供了有希望的途径。不断扩大工具和资源,特别是针对果蝇以外的物种,将与比较方法相结合,从而揭示在不同时间范围内生殖分离的遗传基础,这将是最有效的。果蝇未来的研究计划具有很高的潜力,可以回答物种长期存在的问题。这些措施包括确定造成种群差异的选择力和导致生殖隔离的性状的遗传基础。可以进一步扩展后者,以了解生殖分离的遗传基础如何随时间变化,以及是否更普遍地涉及某些途径和基因。

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