Olsen OA, Linnestad C, Nichols SE
Plant Molecular Biology Laboratory, Dept of Chemistry and Biotechnology, Agricultural University of Norway, PO Box 5051, N-1432 Ås, Norway.
Trends Plant Sci. 1999 Jul;4(7):253-257. doi: 10.1016/s1360-1385(99)01431-4.
The recent application of immunohistochemistry and molecular techniques has revealed that endosperm development depends on a genetic program that combines an ancient process for cellularization (similar to that seen in late Paleozoic seed ferns) with a mechanism for specifying asymmetric cell fates that has parallels to signaling processes in mammals. Progress has been further accelerated by the recent realization that the conserved nature of nuclear endosperm development extends beyond the grass species, to include dicots, such as Arabidopsis. It is anticipated that these ongoing studies will provide invaluable tools for the improvement of yield and grain quality in cereal crops.
免疫组织化学和分子技术的最新应用表明,胚乳发育依赖于一种遗传程序,该程序将古老的细胞化过程(类似于晚古生代种子蕨类植物中的过程)与一种确定不对称细胞命运的机制相结合,这种机制与哺乳动物的信号传导过程有相似之处。最近认识到核型胚乳发育的保守性质不仅限于禾本科植物,还包括双子叶植物,如拟南芥,这进一步加速了研究进展。预计这些正在进行的研究将为提高谷类作物的产量和籽粒品质提供宝贵的工具。