Department of Biology, Hong Kong Baptist University, Hong Kong Special Administrative Region, China.
Department of Chemistry, Hong Kong Baptist University, Hong Kong Special Administrative Region, China.
Proc Natl Acad Sci U S A. 2024 Nov 12;121(46):e2418037121. doi: 10.1073/pnas.2418037121. Epub 2024 Nov 8.
The establishment of reproductive barriers such as postzygotic ybrid ncompatibility (HI) remains the key to speciation. Gene duplication followed by differential functionalization has long been proposed as a major model underlying HI, but little supporting evidence exists. Here, we demonstrate that a newborn F-box gene, , of the nematode specifically inactivates an essential phosphoglucomutase encoded by in its sister species and their hybrids. Zygotic expression of specifically depletes SHLS-1, but not SHLS-1, in approximately 40 min starting from gastrulation, causing embryonic death. is one of thirty-three paralogues emerging from a recent surge in F-box gene duplication events within , all of which are evolving under positive selection. undergoes turnover even among populations. Differential expansion of F-box genes between the two species could reflect their distinctive innate immune responses. Collectively, we demonstrate how recent duplication of genes involved in protein degradation can cause incidental destruction of targets in hybrids that leads to HI, providing an invaluable insight into mechanisms of speciation.
后生生殖隔离(HI)的建立仍然是物种形成的关键。基因复制后功能差异一直被认为是 HI 的主要模型,但支持证据很少。在这里,我们证明了线虫中的一个新生 F-box 基因 ,特异性地使姐妹种 和它们的杂种中的一个必需的磷酸葡糖变位酶失活。从原肠胚形成开始, 的合子表达特异性地在大约 40 分钟内耗尽 SHLS-1,但不会耗尽 SHLS-1,导致胚胎死亡。 是最近 F-box 基因复制事件中出现的三十三个旁系同源物之一,所有这些都受到正选择的影响。 甚至在 种群中也会发生更替。两个物种之间 F-box 基因的差异扩张可能反映了它们独特的先天免疫反应。总的来说,我们展示了参与蛋白质降解的基因的最近复制如何导致杂种中目标的偶然破坏,从而导致 HI,这为物种形成的机制提供了宝贵的见解。