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Positive and negative cis-acting DNA domains are required for spatial and temporal regulation of gene expression by a seed storage protein promoter.

机译:种子储存蛋白启动子对基因表达的时空调节需要正和负顺式作用的DNA结构域。

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摘要

Mutations affecting spatial and temporal regulation of a beta-phaseolin gene encoding the major storage protein of bean (Phaseolus vulgaris) were analyzed by stable and transient transformation approaches. The results substantiate the value of transient assays for rapid determination of the functionality of cis-acting sequences and the importance of stable transformation to identify tissue-specific determinants. Spatial information is specified primarily by two upstream activating sequences (UAS). UAS1 (-295 to -109) was sufficient for seed-specific expression from both homologous and heterologous (CaMV 35S) promoters. In situ localization of GUS expression in tobacco embryos demonstrated that UAS1 activity was restricted to the cotyledons and shoot meristem. A second positive domain, UAS2 (-468 to -391), extended gene activity to the hypocotyl. Temporal control of GUS expression was found to involve two negative regulatory sequences, NRS1 (-391 to -295) and NRS2 (-518 to -418), as well as the positive domain UAS1. The deletion of either negative element caused premature onset of GUS expression. These findings indicate combinatorial interactions between multiple sequence motifs specifying spatial information, and provide the first example of the involvement of negative elements in the temporal control of gene expression in higher plants.
机译:通过稳定和瞬时转化方法,分析了影响编码豆主要贮藏蛋白(菜豆)的β-菜豆蛋白基因的时空调控的突变。结果证实了瞬时测定对快速测定顺式作用序列的功能的价值以及稳定转化以鉴定组织特异性决定簇的重要性。空间信息主要由两个上游激活序列(UAS)指定。 UAS1(-295至-109)足以从同源和异源(CaMV 35S)启动子进行种子特异性表达。烟草胚中GUS表达的原位定位表明UAS1活性仅限于子叶和分生组织。第二个正结构域UAS2(-468至-391)将基因活性扩展至下胚轴。发现GUS表达的时间控制涉及两个负调控序列,NRS1(-391至-295)和NRS2(-518至-418),以及正结构域UAS1。任一负性元件的缺失都会导致GUS表达过早发作。这些发现表明指定空间信息的多个序列基序之间的组合相互作用,并提供了负性元素参与高等植物基因表达的时间控制的第一个例子。

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