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从玉米中分离和功能表征一个涝渍诱导启动子。

Isolation and functional characterization of a waterlogging-induced promoter from maize.

机构信息

College of Life Science, Yangtze University, Jingzhou, 434025, Hubei, People's Republic of China.

出版信息

Plant Cell Rep. 2010 Nov;29(11):1269-75. doi: 10.1007/s00299-010-0913-x. Epub 2010 Aug 22.

Abstract

Using thermal asymmetric interlaced polymerase chain reaction (TAIL PCR), promoter sequences of 1,444 bp (HM241145) and 1,249 bp (HM241146) from the Zea mays zinc finger (zmzf) protein gene were isolated from the maize inbred lines Mo17 and Hz32, respectively. Sequence analysis demonstrated that the Mo17 zmzf promoter contained multiple cis-regulatory elements responding to anaerobic conditions. These included two GC-motifs, five anaerobic response elements (AREs), one GT-motif, and four G-boxes. Sequence alignment revealed that there was a 195 bp DNA deletion (-258 to -452 bp) in the Hz32 zmzf promoter compared with the Mo17 promoter. The deleted fragment contained three AREs. According to quantitative real time PCR analysis, the expression of the uidA gene driven by the Mo17 zmzf promoter increased after day 1 waterlogging treatment, peaked after day 2 and decreased at days 4-8. Staining for β-glucuronidase (GUS) was observed in the roots of Mo17 zmzf transgenic lines under waterlogged conditions, but not in the leaves. GUS expression was not observed in the roots and leaves of Hz32 zmzf transgenic lines, even under submerged conditions, indicating that the Hz32 zmzf promoter was non-functional because of the deletion of three AREs. We propose that the Mo17 zmzf promoter was inducible by waterlogging, highly active, and root-specific, and might be useful for the genetic engineering of waterlogging tolerance.

摘要

利用热不对称交错聚合酶链反应(TAIL-PCR),从玉米自交系 Mo17 和 Hz32 中分别分离出玉米锌指蛋白(zmzf)基因的启动子序列 1444bp(HM241145)和 1249bp(HM241146)。序列分析表明,Mo17 zmzf 启动子含有多个响应厌氧条件的顺式调控元件。这些元件包括两个 GC 基序、五个厌氧响应元件(AREs)、一个 GT 基序和四个 G 框。序列比对显示,Hz32 zmzf 启动子与 Mo17 启动子相比存在 195bp 的 DNA 缺失(-258 至-452bp)。缺失片段包含三个 AREs。根据定量实时 PCR 分析,由 Mo17 zmzf 启动子驱动的 uidA 基因的表达在水涝处理后第 1 天增加,第 2 天达到峰值,第 4-8 天下降。在水涝条件下,Mo17 zmzf 转基因系的根中观察到β-葡萄糖醛酸酶(GUS)染色,但在叶片中没有观察到。在 Hz32 zmzf 转基因系的根和叶片中均未观察到 GUS 表达,即使在淹没条件下也是如此,这表明 Hz32 zmzf 启动子由于三个 AREs 的缺失而失去功能。我们提出,Mo17 zmzf 启动子可以被水涝诱导,活性高,且具有根特异性,可能对水涝耐受的遗传工程有用。

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