Institut Jean-Pierre Bourgin, INRAE, AgroParisTech, CNRS, University of Paris-Saclay, Route de St-Cyr (RD10), 78026 Versailles Cedex, France.
École Doctorale 567 Sciences du Végétal, University Paris-Sud, University of Paris-Saclay, bat 360, 91405 Orsay Cedex, France.
Plant Physiol. 2021 Mar 15;185(2):478-490. doi: 10.1093/plphys/kiaa045.
The architecture of the seed is shaped by the processes of tissue partitioning, which determines the volume ratio of maternal and zygotic tissues, and nutrient partitioning, which regulates nutrient distribution among tissues. In angiosperms, early seed development is characterized by antagonistic development of the nucellus maternal tissue and the endosperm fertilization product to become the main sugar sink. This process marked the evolution of angiosperms and outlines the most ancient seed architectures. In Arabidopsis, the endosperm partially eliminates the nucellus and imports sugars from the seed coat. Here, we show that the nucellus is symplasmically connected to the chalaza, the seed nutrient unloading zone, and works as both a sugar sink and source alongside the seed coat. After fertilization, the transient nucellus accumulates starch early on and releases it in the apoplasmic space during its elimination. By contrast, the persistent nucellus exports sugars toward the endosperm through the SWEET4 hexose facilitator. Finally, we analyzed sugar metabolism and transport in the transparent testa 16 mutant, which fails to undergo nucellus cell elimination, which shed light on the coordination between tissue and nutrient partitioning. Overall, this study identifies a path of sugar transport in the Arabidopsis seed and describes a link between sugar redistribution and the nucellus cell-elimination program.
种子的结构是由组织分区过程决定的,该过程决定了母体组织和胚胎组织的体积比,以及营养物质的分区,决定了组织之间的营养物质分布。在被子植物中,早期种子发育的特点是珠心母体组织和胚乳受精产物的拮抗发育,成为主要的糖汇。这个过程标志着被子植物的进化,并概述了最古老的种子结构。在拟南芥中,胚乳部分消除珠心,并从种皮中导入糖。在这里,我们表明珠心与合点(种子养分卸载区)具有共质体连接,并与种皮一起作为糖汇和源发挥作用。受精后,短暂的珠心早期积累淀粉,并在其消除过程中在质外体空间释放。相比之下,持久的珠心通过 SWEET4 己糖转运蛋白向胚乳输出糖。最后,我们分析了透明种皮 16 突变体中的糖代谢和运输,该突变体无法进行珠心细胞消除,这揭示了组织和养分分区之间的协调。总的来说,本研究确定了拟南芥种子中糖运输的途径,并描述了糖再分配与珠心细胞消除程序之间的联系。