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转基因为硬质小麦的基因的水稻植株。

Transgenic rice plants harboring the grain hardness-locus region of Aegilops tauschii.

机构信息

Division of Natural Science, Osaka Kyoiku University, 4-698-1 Asahigaoka, Kashiwara, Osaka, 582-8582, Japan.

出版信息

Plant Cell Rep. 2011 Dec;30(12):2293-301. doi: 10.1007/s00299-011-1134-7. Epub 2011 Aug 18.

Abstract

Grain hardness of wheat is determined by the hardness (Ha)-locus region, which contains three friabilin-related genes: puroindoline-a (Pina), puroindoline-b (Pinb) and GSP-1. In our previous study, we produced the transgenic rice plants harboring the large genomic fragment of the Ha-locus region of Aegilops tauschii containing Pina and GSP-1 genes by Agrobacterium-mediated transformation. To examine the effects of the transgenes in the rice endosperms, we firstly confirmed the homozygosity of the T-DNAs in four independent T2 lines by using fluorescence in situ hybridization (FISH) and DNA gel blot analyses. The transgenes, Pina and GSP-1, were stably expressed in endosperms of the T3 and T4 seeds at RNA and protein levels, indicating that the promoters and other regulatory elements on the wheat Ha-locus region function in rice, and that multigene transformation using a large genomic fragment is a useful strategy. The functional contribution of the transgene-derived friabilins to the rice endosperm structure was considered as an increase of spaces between compound starch granules, resulting in a high proportion of white turbidity seeds.

摘要

小麦籽粒硬度由硬度(Ha)基因座区域决定,该区域包含三个 friabilin 相关基因:puroindoline-a(Pina)、puroindoline-b(Pinb)和 GSP-1。在我们之前的研究中,我们通过农杆菌介导的转化法,产生了含有 Pina 和 GSP-1 基因的 Aegilops tauschii Ha 基因座大片段的转基因水稻植株。为了研究转基因在水稻胚乳中的效应,我们首先通过荧光原位杂交(FISH)和 DNA 凝胶印迹分析,确认了四个独立 T2 系中转 T-DNA 的纯合性。转基因 Pina 和 GSP-1 在 T3 和 T4 种子的胚乳中均能在 RNA 和蛋白质水平上稳定表达,这表明小麦 Ha 基因座上的启动子和其他调控元件在水稻中起作用,并且利用大片段基因组进行多基因转化是一种有效的策略。转基因衍生的 friabilins 对水稻胚乳结构的功能贡献被认为是增加了复合淀粉颗粒之间的空间,导致高比例的白色混浊种子。

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