Department of Botany and Biodiversity Research Centre, University of British Columbia, Vancouver, BC, Canada.
Department of Biology, University of Victoria, Victoria, BC, Canada.
Plant Commun. 2023 Sep 11;4(5):100599. doi: 10.1016/j.xplc.2023.100599. Epub 2023 Apr 11.
Studies of plants have been instrumental for revealing how new species originate. For several decades, botanical research has complemented and, in some cases, challenged concepts on speciation developed via the study of other organisms while also revealing additional ways in which species can form. Now, the ability to sequence genomes at an unprecedented pace and scale has allowed biologists to settle decades-long debates and tackle other emerging challenges in speciation research. Here, we review these recent genome-enabled developments in plant speciation. We discuss complications related to identification of reproductive isolation (RI) loci using analyses of the landscape of genomic divergence and highlight the important role that structural variants have in speciation, as increasingly revealed by new sequencing technologies. Further, we review how genomics has advanced what we know of some routes to new species formation, like hybridization or whole-genome duplication, while casting doubt on others, like population bottlenecks and genetic drift. While genomics can fast-track identification of genes and mutations that confer RI, we emphasize that follow-up molecular and field experiments remain critical. Nonetheless, genomics has clarified the outsized role of ancient variants rather than new mutations, particularly early during speciation. We conclude by highlighting promising avenues of future study. These include expanding what we know so far about the role of epigenetic and structural changes during speciation, broadening the scope and taxonomic breadth of plant speciation genomics studies, and synthesizing information from extensive genomic data that have already been generated by the plant speciation community.
对植物的研究对于揭示新物种的起源至关重要。几十年来,植物学研究一直在补充并在某些情况下挑战通过研究其他生物而发展起来的物种形成概念,同时也揭示了物种形成的其他方式。现在,以空前的速度和规模对基因组进行测序的能力使生物学家能够解决长达数十年的争论,并应对物种形成研究中的其他新出现的挑战。在这里,我们回顾了植物物种形成中最近的这些基于基因组的发展。我们讨论了使用基因组分歧景观分析鉴定生殖隔离(RI)基因座的复杂性,并强调了结构变异在物种形成中的重要作用,这一点越来越多地被新的测序技术所揭示。此外,我们回顾了基因组学如何推进我们对一些形成新物种的途径的了解,例如杂交或全基因组复制,同时对其他途径,如种群瓶颈和遗传漂变产生了怀疑。虽然基因组学可以加快识别赋予 RI 的基因和突变的速度,但我们强调后续的分子和现场实验仍然至关重要。尽管如此,基因组学还是阐明了古代变体而不是新突变在物种形成中的巨大作用,尤其是在物种形成的早期。最后,我们强调了未来研究的有前景的途径。这些途径包括扩展我们目前对物种形成过程中表观遗传和结构变化作用的了解,扩大植物物种形成基因组学研究的范围和分类广度,并综合来自植物物种形成界已经产生的大量基因组数据的信息。