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水果成熟基因启动子中乙烯响应区域的鉴定

Identification of an ethylene-responsive region in the promoter of a fruit ripening gene.

作者信息

Montgomery J, Goldman S, Deikman J, Margossian L, Fischer R L

机构信息

Department of Plant Biology, University of California, Berkeley 94720.

出版信息

Proc Natl Acad Sci U S A. 1993 Jul 1;90(13):5939-43. doi: 10.1073/pnas.90.13.5939.

Abstract

Transcription of the E4 gene is controlled by an increase in ethylene concentration during tomato fruit ripening. To investigate the molecular basis for ethylene regulation, we have examined the E4 promoter to identify cis elements and trans-acting factors that are involved in E4 gene expression. In transgenic tomato plants a chimeric gene construct containing a 1.4-kilobase E4 promoter fused to a beta-glucuronidase reporter gene is rapidly induced by ethylene in ripening fruit. Deletion of E4 promoter sequences to 193 base pairs reduces the level of GUS activity but does not affect ethylene induction. Transient expression of E4 promoter-luciferase chimeric gene constructs containing various deletions, introduced into tomato fruit pericarp by particle bombardment, indicates that a positive ethylene-responsive region is localized between nucleotides -161 and -85 relative to the transcription start site. DNase I footprint analysis shows that a nuclear factor in unripe fruit interacts specifically with sequences in this element, from -142 to -110, which are required for the ethylene response. The DNase I footprint of this factor is reduced in ethylene-treated unripe fruit and undetectable in ripe fruit. Based on the correlation of a nuclear factor binding site with promoter sequences required for ethylene induction, we propose that this in vitro DNA-binding activity may represent a factor that is involved in ethylene-regulated E4 gene expression.

摘要

番茄果实成熟过程中,E4基因的转录受乙烯浓度升高的调控。为了探究乙烯调控的分子基础,我们检测了E4启动子,以鉴定参与E4基因表达的顺式元件和反式作用因子。在转基因番茄植株中,一个包含1.4千碱基E4启动子与β-葡萄糖醛酸酶报告基因融合的嵌合基因构建体,在成熟果实中被乙烯迅速诱导。将E4启动子序列缺失至193个碱基对会降低GUS活性水平,但不影响乙烯诱导。通过微粒轰击将含有各种缺失的E4启动子-荧光素酶嵌合基因构建体瞬时导入番茄果实果皮,结果表明,一个正乙烯响应区域位于相对于转录起始位点的核苷酸-161至-85之间。DNase I足迹分析表明,未成熟果实中的一种核因子与该元件中-142至-110的序列特异性相互作用,这些序列是乙烯响应所必需的。该因子的DNase I足迹在乙烯处理的未成熟果实中减小,在成熟果实中无法检测到。基于核因子结合位点与乙烯诱导所需启动子序列的相关性,我们推测这种体外DNA结合活性可能代表一种参与乙烯调控E4基因表达的因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d5f/46842/ca7ebb8d941a/pnas01470-0071-a.jpg

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