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玉米泛素启动子在转基因水稻中的活性

Activity of a maize ubiquitin promoter in transgenic rice.

作者信息

Cornejo M J, Luth D, Blankenship K M, Anderson O D, Blechl A E

机构信息

Agricultural Research Service, United States Department of Agriculture, Albany, CA 94710.

出版信息

Plant Mol Biol. 1993 Nov;23(3):567-81. doi: 10.1007/BF00019304.

Abstract

We have used the maize ubiquitin 1 promoter, first exon and first intron (UBI) for rice (Oryza sativa L. cv. Taipei 309) transformation experiments and studied its expression in transgenic calli and plants. UBI directed significantly higher levels of transient gene expression than other promoter/intron combinations used for rice transformation. We exploited these high levels of expression to identify stable transformants obtained from callus-derived protoplasts co-transfected with two chimeric genes. The genes consisted of UBI fused to the coding regions of the uidA and bar marker genes (UBI:GUS and UBI:BAR). UBI:GUS expression increased in response to thermal stress in both transfected protoplasts and transgenic rice calli. Histochemical localization of GUS activity revealed that UBI was most active in rapidly dividing cells. This promoter is expressed in many, but not all, rice tissues and undergoes important changes in activity during the development of transgenic rice plants.

摘要

我们已将玉米泛素1启动子、首个外显子和首个内含子(UBI)用于水稻(Oryza sativa L. cv. Taipei 309)转化实验,并研究了其在转基因愈伤组织和植株中的表达情况。与用于水稻转化的其他启动子/内含子组合相比,UBI指导的瞬时基因表达水平显著更高。我们利用这些高水平的表达来鉴定从与两个嵌合基因共转染的愈伤组织来源的原生质体中获得的稳定转化体。这些基因由与uidA和bar标记基因编码区融合的UBI组成(UBI:GUS和UBI:BAR)。在转染的原生质体和转基因水稻愈伤组织中,UBI:GUS表达均响应热胁迫而增加。GUS活性的组织化学定位显示,UBI在快速分裂的细胞中最活跃。该启动子在许多但并非所有水稻组织中表达,并且在转基因水稻植株发育过程中活性会发生重要变化。

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