Oneal Elen, Willis John H, Franks Robert G
Department of Biology, Duke University, 3319 French Family Science Center, 125 Science Drive, Durham, NC, 27705, USA.
Department of Plant and Microbial Biology, North Carolina State University, 2548 Thomas Hall, Raleigh, NC, 27695, USA.
New Phytol. 2016 May;210(3):1107-20. doi: 10.1111/nph.13842. Epub 2016 Jan 29.
Divergence of developmental mechanisms within populations could lead to hybrid developmental failure, and might be a factor driving speciation in angiosperms. We investigate patterns of endosperm and embryo development in Mimulus guttatus and the closely related, serpentine endemic Mimulus nudatus, and compare them to those of reciprocal hybrid seed. We address whether disruption in hybrid seed development is the primary source of reproductive isolation between these sympatric taxa. M. guttatus and M. nudatus differ in the pattern and timing of endosperm and embryo development. Some hybrid seeds exhibit early disruption of endosperm development and are completely inviable, while others develop relatively normally at first, but later exhibit impaired endosperm proliferation and low germination success. These developmental patterns are reflected in mature hybrid seeds, which are either small and flat (indicating little to no endosperm) or shriveled (indicating reduced endosperm volume). Hybrid seed inviability forms a potent reproductive barrier between M. guttatus and M. nudatus. We shed light on the extent of developmental variation between closely related species within the M. guttatus species complex, an important ecological model system, and provide a partial mechanism for the hybrid barrier between M. guttatus and M. nudatus.
种群内发育机制的差异可能导致杂种发育失败,这可能是被子植物物种形成的一个驱动因素。我们研究了黄花沟酸浆(Mimulus guttatus)和与之密切相关的、生长在蛇纹岩地区的特有物种裸茎沟酸浆(Mimulus nudatus)的胚乳和胚胎发育模式,并将它们与正反交杂种种子的发育模式进行比较。我们探讨了杂种种子发育的中断是否是这些同域分类群之间生殖隔离的主要来源。黄花沟酸浆和裸茎沟酸浆在胚乳和胚胎发育的模式及时间上存在差异。一些杂种种子表现出胚乳发育早期中断且完全无法存活,而另一些种子起初发育相对正常,但后来胚乳增殖受损且发芽成功率低。这些发育模式反映在成熟的杂种种子上,它们要么小而扁平(表明几乎没有胚乳),要么皱缩(表明胚乳体积减小)。杂种种子的不育在黄花沟酸浆和裸茎沟酸浆之间形成了强大的生殖屏障。我们揭示了黄花沟酸浆物种复合体(一个重要的生态模型系统)中密切相关物种之间发育变异的程度,并为黄花沟酸浆和裸茎沟酸浆之间的杂种屏障提供了部分机制。