Arabidopsis Biological Resource Center, The Ohio State University, Columbus, OH, 43210, USA.
Department of Molecular Genetics, Center for Applied Plant Sciences, The Ohio State University, Columbus, OH, 43210, USA.
Plant Sci. 2019 Aug;285:99-109. doi: 10.1016/j.plantsci.2019.04.007. Epub 2019 Apr 24.
Seed development is a complex regulatory process that includes a transition from gametophytic to sporophytic program. The synchronized development of different seed compartments (seed coat, endosperm and embryo) depends on a balance in parental genome contributions. In the most severe cases, the disruption of the balance leads to seed abortion. This represents one of the main obstacles for the engineering of asexual reproduction through seeds (apomixis), and for generating new interspecies hybrids. The repression of auxin synthesis by the Polycomb Repressive Complex 2 (PRC2) is a major mechanism contributing to sensing genome balance. However, current efforts focusing on decreasing PRC2 or elevating auxin levels have not yet resulted in the production of apomictic seed. Here, we show that EMSY-Like Tudor/Agenet H3K36me3 histone readers EML1 and EML3 are necessary for early stages of seed development to proceed at a normal rate in Arabidopsis. We further demonstrate that both EML1 and EML3 are required to prevent the initiation of seed development in the absence of fertilization. Based on the whole genome expression analysis, we identify auxin transport and signaling genes as the most enriched downstream targets of EML1 and EML3. We hypothesize that EML1 and EML3 function to repress and soften paternal gene expression by fine-tuning auxin responses. Discovery of this pathway may contribute to the engineering of apomixis and interspecies hybrids.
种子发育是一个复杂的调控过程,包括从配子体向孢子体程序的转变。不同种子隔室(种皮、胚乳和胚胎)的同步发育取决于亲本基因组贡献的平衡。在最严重的情况下,平衡的破坏会导致种子流产。这是通过种子(无融合生殖)工程实现无性繁殖和产生新的种间杂种的主要障碍之一。多梳抑制复合物 2 (PRC2) 对生长素合成的抑制是感知基因组平衡的主要机制之一。然而,目前集中于降低 PRC2 或提高生长素水平的努力尚未导致无融合生殖种子的产生。在这里,我们表明 Polycomb 抑制复合物 2 (PRC2) 对生长素合成的抑制是感知基因组平衡的主要机制之一。然而,目前集中于降低 PRC2 或提高生长素水平的努力尚未导致无融合生殖种子的产生。在这里,我们表明 Polycomb 抑制复合物 2 (PRC2) 对生长素合成的抑制是感知基因组平衡的主要机制之一。然而,目前集中于降低 PRC2 或提高生长素水平的努力尚未导致无融合生殖种子的产生。在这里,我们表明,拟南芥中 EMSY 样塔丁/Agenet H3K36me3 组蛋白阅读器 EML1 和 EML3 对于种子发育的早期阶段以正常速度进行是必要的。我们进一步证明,在没有受精的情况下,EML1 和 EML3 都需要防止种子发育的开始。基于全基因组表达分析,我们确定生长素运输和信号基因是 EML1 和 EML3 的最富集下游靶标。我们假设 EML1 和 EML3 通过微调生长素反应来抑制和软化父本基因表达。发现这条途径可能有助于无融合生殖和种间杂种的工程。