Uchiumi Takao, Uemura Isao, Okamoto Takashi
Department of Biological Sciences, Tokyo Metropolitan University, Minami-osawa 1-1, Hachioji, Tokyo 192-0397, Japan.
Planta. 2007 Aug;226(3):581-9. doi: 10.1007/s00425-007-0506-2. Epub 2007 Mar 15.
In vitro fertilization (IVF) systems using isolated male and female gametes have been utilized to dissect fertilization-induced events in angiosperms, such as egg activation, zygote development and early embryogenesis, as the female gametophytes of plants are deeply embedded within ovaries. In this study, a rice IVF system was established to take advantage of the abundant resources stemming from rice research for investigations into the mechanisms of fertilization and early embryogenesis. Fusion of gametes was performed using a modified electrofusion method, and the fusion product, a zygote, formed cell wall and an additional nucleolus. The zygote divided into a two-celled embryo 15-24 h after fusion, and developed into a globular-like embryo consisting of an average of 15-16 cells by 48 h after fusion. Comparison of the developmental processes of zygotes produced by IVF with those of zygotes generated in planta suggested that zygotes produced by IVF develop and grow into early globular stage embryos in a highly similar manner to those in planta. Although the IVF-produced globular embryos did not develop into late globular-stage or differentiated embryos, but into irregularly shaped cell masses, fertile plants were regenerated from the cell masses and the seeds harvested from these plants germinated normally. The rice IVF system reported here will be a powerful tool for studying the molecular mechanisms involved in the early embryogenesis of angiosperms and for making new cultivars.
由于植物雌配子体深深嵌入子房内,利用分离的雄配子和雌配子的体外受精(IVF)系统已被用于剖析被子植物受精诱导的事件,如卵细胞激活、合子发育和早期胚胎发生。在本研究中,建立了水稻IVF系统,以利用水稻研究的丰富资源来研究受精和早期胚胎发生的机制。使用改良的电融合方法进行配子融合,融合产物合子形成细胞壁和一个额外的核仁。合子在融合后15 - 24小时分裂为二细胞胚,并在融合后48小时发育成平均由15 - 16个细胞组成的类球形胚。将体外受精产生的合子与体内产生的合子的发育过程进行比较表明,体外受精产生的合子以与体内合子高度相似的方式发育并生长为早期球形胚阶段的胚胎。虽然体外受精产生的球形胚没有发育成晚期球形胚或分化胚,而是发育成形状不规则的细胞团,但从这些细胞团中再生出了可育植株,并且从这些植株收获的种子正常萌发。本文报道的水稻IVF系统将成为研究被子植物早期胚胎发生分子机制和培育新品种的有力工具。