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Spatial and temporal expression of endosperm transfer cell-specific promoters in transgenic rice and barley.

机译:转基因水稻和大麦胚乳转移细胞特异性启动子的空间和时间表达。

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摘要

Two putative endosperm-specific rice genes, OsPR602 and OsPR9a, were identified from database searches. The promoter regions of these genes were isolated, and transcriptional promoter:beta-glucuronidase (GUS) fusion constructs were stably transformed into rice and barley. The GUS expression patterns revealed that these promoters were active in early grain development in both rice and barley, and showed strongest expression in endosperm transfer cells during the early stages of grain filling. The GUS expression was similar in both rice and barley, but, in barley, expression was exclusively in the endosperm transfer cells and differed in timing of activation relative to rice. In rice, both promoters showed activity not only in the endosperm transfer cells, but also in the transfer cells of maternal tissue and in several floral tissues shortly before pollination. The expression patterns of OsPR602 and OsPR9a in flowers differed. The similarity of expression in both rice and barley suggests that these promoters may be useful to control transgene expression in the transfer cells of cereal grains with the aim of altering nutrient uptake or enhancing the barrier against pathogens at the boundary between maternal tissue and the developing endosperm. However, the expression during floral development should be considered if the promoters are used in rice.
机译:从数据库搜索识别出两个推定的胚胎特异性稻米基因,OSPR602和OSPR9a。分离这些基因的启动子区域,转录启动子:β-葡糖醛酸酶(GUS)融合构建体稳定地转化为水稻和大麦。 GUS表达模式表明,这些启动子在稻米和大麦的早期籽粒发育中活跃,并且在谷物填充的早期阶段期间表现出胚乳转移细胞中最强的表达。 GUS表达在大米和大麦中相似,但是,在大麦中,表达完全在胚乳转移细胞中,不同于激活相对于水稻的时间。在水稻中,两个启动子不仅在胚乳转移细胞中显示出活动,而且表明母体组织的转移细胞和授粉前几乎不久的花组织。 ospr602和ospr9a中的表达式模式不同。两种稻米和大麦中表达的相似性表明,这些启动子可用于控制谷粒的转移细胞中的转基因表达,目的是改变营养吸收或增强母体组织之间的边界的屏障和发育胚乳之间的障碍。然而,如果在水稻中使用促进剂,则应考虑在花卉发育过程中的表达。

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