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An Egg Apparatus-Specific Enhancer of Arabidopsis Identified by Enhancer Detection

机译:通过增强子检测鉴定出的一种拟卵子拟南芥增强子

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摘要

Despite a central role in angiosperm reproduction, few gametophyte-specific genes and promoters have been isolated, particularly for the inaccessible female gametophyte (embryo sac). Using the Ds-based enhancer-detector line ET253, we have cloned an egg apparatus-specific enhancer (EASE) from Arabidopsis (Arabidopsis thaliana). The genomic region flanking the Ds insertion site was further analyzed by examining its capability to control gusA and GFP reporter gene expression in the embryo sac in a transgenic context. Through analysis of a 5′ and 3′ deletion series in transgenic Arabidopsis, the sequence responsible for egg apparatus-specific expression was delineated to 77 bp. Our data showed that this enhancer is unique in the Arabidopsis genome, is conserved among different accessions, and shows an unusual pattern of sequence variation. This EASE works independently of position and orientation in Arabidopsis but is probably not associated with any nearby gene, suggesting either that it acts over a large distance or that a cryptic element was detected. Embryo-specific ablation in Arabidopsis was achieved by transactivation of a diphtheria toxin gene under the control of the EASE. The potential application of the EASE element and similar control elements as part of an open-source biotechnology toolkit for apomixis is discussed.
机译:尽管在被子植物的繁殖中起着核心作用,但几乎没有分离出配子体特异性基因和启动子,特别是对于难以接近的雌性配子体(胚囊)而言。使用基于Ds的增强子检测器线ET253,我们从拟南芥(Arabidopsis thaliana)克隆了一个卵具特异性增强子(EASE)。通过检查其在转基因环境中控制胚囊中gusA和GFP报告基因表达的能力,进一步分析了Ds插入位点侧翼的基因组区域。通过分析转基因拟南芥中的5'和3'缺失序列,将负责卵器特异性表达的序列定为77 bp。我们的数据表明,这种增强子在拟南芥基因组中是独特的,在不同种质之间是保守的,并且显示出异常的序列变异模式。该EASE与拟南芥中的位置和方向无关,但可能与附近的任何基因均不相关,这表明它在很长的距离内起作用或检测到了隐性元素。在EASE的控制下,通过白喉毒素基因的反式激活来实现拟南芥中的胚胎特异性消融。讨论了EASE元件和类似控制元件作为无融合生殖的开源生物技术工具包的一部分的潜在应用。

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