Applied Zoology, Faculty of Biology, Technische Universität Dresden, Dresden 01062, Germany
Natural History Museum, University of Oslo, 0318 Oslo, Norway
Cold Spring Harb Perspect Biol. 2024 Oct 1;16(10):a041429. doi: 10.1101/cshperspect.a041429.
How barriers to gene flow arise and are maintained are key questions in evolutionary biology. Speciation research has mainly focused on barriers that occur either before mating or after zygote formation. In comparison, postmating prezygotic (PMPZ) isolation-a barrier that acts after gamete release but before zygote formation-is less frequently investigated but may hold a unique role in generating biodiversity. Here we discuss the distinctive features of PMPZ isolation, including the primary drivers and molecular mechanisms underpinning PMPZ isolation. We then present the first comprehensive survey of PMPZ isolation research, revealing that it is a widespread form of prezygotic isolation across eukaryotes. The survey also exposes obstacles in studying PMPZ isolation, in part attributable to the challenges involved in directly measuring PMPZ isolation and uncovering its causal mechanisms. Finally, we identify outstanding knowledge gaps and provide recommendations for improving future research on PMPZ isolation. This will allow us to better understand the nature of this often-neglected reproductive barrier and its contribution to speciation.
基因流障碍是如何产生和维持的,这是进化生物学中的关键问题。物种形成研究主要集中在交配前或合子形成后发生的障碍上。相比之下,配子释放后但合子形成前发生的合子前交配后(PMPZ)隔离——一种较少被研究但可能在产生生物多样性方面发挥独特作用的障碍——则较少受到关注。在这里,我们讨论了 PMPZ 隔离的独特特征,包括 PMPZ 隔离的主要驱动因素和潜在的分子机制。然后,我们展示了对 PMPZ 隔离研究的首次全面调查,结果表明它是真核生物中广泛存在的一种合子前隔离形式。该调查还揭示了研究 PMPZ 隔离所面临的障碍,部分原因是直接测量 PMPZ 隔离和揭示其因果机制所涉及的挑战。最后,我们确定了突出的知识空白,并为改善未来关于 PMPZ 隔离的研究提供了建议。这将使我们能够更好地理解这种经常被忽视的生殖障碍的性质及其对物种形成的贡献。