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两个来自烟草同源 AGAMOUS 基因的相似但不同的第二内含子片段,赋予了相同的花器官特异性表达能力,足以使植物完全不育。

Two similar but distinct second intron fragments from tobacco AGAMOUS homologs confer identical floral organ-specific expression sufficient for generating complete sterility in plants.

机构信息

College of Life Sciences, Northwest A&F University, Yangling, Shaanxi, People's Republic of China.

出版信息

Planta. 2010 Apr;231(5):1159-69. doi: 10.1007/s00425-010-1120-2. Epub 2010 Feb 25.

Abstract

The carpel- and stamen-specific AtAGIP promoter derived from the Arabidopsis AGAMOUS (AG) second intron/enhancer is ideal for engineering complete sterility but it is highly host-specific. To ascertain whether a chimeric promoter with similar tissue specificity can be created for species other than Arabidopsis, we isolated two similar but distinct AG second intron/enhancers from tobacco (NtAGI-1 and NtAGI-2) and analyzed their ability to drive floral organ-specific expression in plants through the creation of forward- and reverse-oriented chimeric promoters, fNtAGIP1, rNtAGIP1, fNtAGIP2 and rNtAGIP2. Analyses of transgenic plants bearing each respective promoter fused to the beta-glucuronidase (GUS) reporter gene showed that all four promoters are able, like the AtAGIP, to drive very similar carpel- and stamen-specific expression without any leaky activity in vegetative tissues. These results indicate that unlike their counterparts in rice and maize, the tobacco NtAGI-1 and NtAGI-2 enhancers share a highly conserved regulatory function. Interestingly, all four promoters display additional tissue specificity in petals, and their activity is influenced by the orientation of the incorporated enhancer, with reverse-oriented enhancers exhibiting approximately double the effectiveness of forward-oriented enhancers. These properties are novel and have not been observed with the AtAGIP promoter in Arabidopsis. As expected, these highly specific promoters can also direct the expression of the DT-A cytotoxic gene exclusively in carpels, stamens and petals, resulting in complete sterility through the precise ablation of targeted floral organs. Further analyses demonstrated that the resulting trait is mitotically stable, which is critical for the long-term containment of seed-, pollen- and fruit-mediated gene flow in field conditions.

摘要

心皮和雄蕊特异性 AtAGIP 启动子源自拟南芥 AGAMOUS(AG)第二内含子/增强子,非常适合工程完全不育,但它具有高度的宿主特异性。为了确定是否可以为拟南芥以外的物种创建具有相似组织特异性的嵌合启动子,我们从烟草中分离出两个相似但不同的 AG 第二内含子/增强子(NtAGI-1 和 NtAGI-2),并通过创建正向和反向嵌合启动子 fNtAGIP1、rNtAGIP1、fNtAGIP2 和 rNtAGIP2,分析它们驱动花器官特异性表达的能力。分析携带各自启动子融合到β-葡萄糖醛酸酶(GUS)报告基因的转基因植物表明,所有四个启动子都能够像 AtAGIP 一样,在没有任何营养组织渗漏活性的情况下,驱动非常相似的心皮和雄蕊特异性表达。这些结果表明,与水稻和玉米中的对应物不同,烟草 NtAGI-1 和 NtAGI-2 增强子具有高度保守的调节功能。有趣的是,所有四个启动子在花瓣中显示出额外的组织特异性,并且它们的活性受到掺入增强子的取向的影响,反向取向的增强子的效率大约是正向取向的增强子的两倍。这些特性是新颖的,并且在拟南芥中的 AtAGIP 启动子中没有观察到。正如预期的那样,这些高度特异性的启动子还可以专门在心皮、雄蕊和花瓣中指导 DT-A 细胞毒性基因的表达,通过精确消融靶向花器官导致完全不育。进一步的分析表明,所产生的特性是有丝分裂稳定的,这对于在田间条件下长期控制种子、花粉和果实介导的基因流至关重要。

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