Kranz Erhard, Hoshino Yoichiro, Okamoto Takashi
Biozentrum Klein Flottbek und Botanischer Garten, Entwicklungsbiologie und Biotechnologie, Ohnhorststr. 18, Universität Hamburg, 22609 Hamburg, Germany.
Methods Mol Biol. 2008;427:51-69. doi: 10.1007/978-1-59745-273-1_4.
Methods have been developed to isolate gametes of higher plants and to fertilize them in vitro. Zygotes, embryos, fertile plants and endosperm can now be obtained from in vitro fusion of pairs of sperm and egg cells and of pairs of sperm and central cells, respectively. This allows examination of the earliest developmental processes precisely timed after fertilization. The isolated egg and central cell, fertilized and cultured in vitro, are able to self-organize apart from each other and without mother tissue in the typically manner. Thus, this system is a powerful and unique model for studies of early zygotic embryogenesis and endosperm development. The underlying processes are now comparatively studied in detail by investigations of expression of genes and their corresponding proteins. The use of these techniques opens new avenues in fundamental and applied research in the areas of developmental and reproductive plant biology.
现已开发出分离高等植物配子并在体外使其受精的方法。如今,分别通过精卵细胞对以及精细胞与中央细胞对的体外融合,能够获得合子、胚胎、可育植株和胚乳。这使得对受精后精确计时的最早发育过程进行研究成为可能。分离出的卵细胞和中央细胞,在体外受精并培养后,能够以典型方式彼此独立且无需母体组织地进行自我组织。因此,该系统是研究合子早期胚胎发生和胚乳发育的强大且独特的模型。目前,通过对基因及其相应蛋白质表达的研究,对潜在过程进行了较为详细的比较研究。这些技术的应用为植物发育和生殖生物学领域的基础研究和应用研究开辟了新途径。