Lafon-Placette Clément, Köhler Claudia
Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences and Linnean Center for Plant Biology, 750 07, Uppsala, Sweden.
Mol Ecol. 2016 Jun;25(11):2620-9. doi: 10.1111/mec.13552. Epub 2016 Mar 9.
The endosperm is a nourishing tissue that serves to support embryo growth. Failure of endosperm development will ultimately cause embryo arrest and seed lethality, a phenomenon that is frequently observed upon hybridization of related plant species or species that differ in ploidy. Endosperm-based interspecies or interploidy hybridization barriers depend on the direction of the hybridization, causing nonreciprocal seed defects. This reveals that the parental genomes are not equivalent, implicating parent-of-origin specific genes generating this type of hybridization barrier. Recent work revealed that endosperm-based hybridization barriers are rapidly evolving. In this review, we discuss the developmental mechanisms causing hybrid seed lethality in angiosperms as well as the evolutionary forces establishing endosperm-based postzygotic hybridization barriers.
胚乳是一种营养组织,用于支持胚胎生长。胚乳发育失败最终会导致胚胎停滞和种子致死,这种现象在相关植物物种或倍性不同的物种杂交时经常出现。基于胚乳的种间或倍间杂交障碍取决于杂交方向,会导致非相互性的种子缺陷。这表明亲本基因组并不等同,意味着存在产生这种杂交障碍的亲本特异性基因。最近的研究表明,基于胚乳的杂交障碍正在迅速演变。在本综述中,我们讨论了导致被子植物杂交种子致死的发育机制,以及建立基于胚乳的合子后杂交障碍的进化力量。