Wada Naoki, Kajiyama Shin'ichiro, Akiyama Yukio, Kawakami Shigeki, No Daisuke, Uchiyama Susumu, Otani Motoyasu, Shimada Takiko, Nose Naoko, Suzuki Go, Mukai Yasuhiko, Fukui Kiichi
Department of Biotechnology, Graduate School of Engineering, Osaka University, Suita, Osaka, Japan.
Plant Cell Rep. 2009 May;28(5):759-68. doi: 10.1007/s00299-009-0678-2. Epub 2009 Feb 12.
Transformation with large DNA molecules enables multiple genes to be introduced into plants simultaneously to produce transgenic plants with complex phenotypes. In this study, a large DNA fragment (ca. 100 kb) containing a set of Aegilops tauschii hardness genes was introduced into rice plants using a novel transformation method, called bioactive beads-mediated transformation. Nine transgenic rice plants were obtained and the presence of transgenes in the rice genome was confirmed by PCR and FISH analyses. The results suggested that multiple transgenes were successfully integrated in all transgenic plants. The expression of one of the transgenes, puroindoline b, was confirmed at the mRNA and protein levels in the T(2) generation. Our study clearly demonstrates that the bioactive bead method is capable of producing transgenic rice plants carrying large DNA fragments. This method will facilitate the production of useful transgenic plants by introducing multiple genes simultaneously.
利用大DNA分子进行转化能够将多个基因同时导入植物中,从而培育出具有复杂表型的转基因植物。在本研究中,采用一种名为生物活性珠介导转化的新型转化方法,将一个包含节节麦硬度基因集的大DNA片段(约100 kb)导入水稻植株。获得了9株转基因水稻植株,并通过PCR和FISH分析证实了水稻基因组中转基因的存在。结果表明,多个转基因成功整合到所有转基因植株中。在T(2)代中,在mRNA和蛋白质水平上证实了其中一个转基因——麦醇溶蛋白b的表达。我们的研究清楚地表明,生物活性珠方法能够培育携带大DNA片段的转基因水稻植株。该方法将通过同时导入多个基因促进有用转基因植物的培育。