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在转基因烟草中,高 CO2 特异性所需的因素诱导厌氧玉米 GapC4 启动子。

Factors required for the high CO2 specificity of the anaerobically induced maize GapC4 promoter in transgenic tobacco.

机构信息

Technische Universität Braunschweig, Institut für Genetik, Spielmannstr. 7, D-38106 Braunschweig, Germany.

出版信息

Plant Cell Environ. 2011 Feb;34(2):220-9. doi: 10.1111/j.1365-3040.2010.02237.x. Epub 2010 Nov 12.

Abstract

Flooding, a natural cause of anaerobiosis, is often accompanied by high CO(2) concentrations in the flood water. Plants need to respond to these environmental conditions. Strong anaerobic reporter gene activity in tobacco (Nicotiana tabacum) controlled by the glycolytic glyceraldehyde-3-phosphate dehydrogenase (GapC4) promoter from maize (Zea mays) depends on the presence of CO(2) and light. To identify factors required for CO(2) regulated gene expression, promoter deletions fused to the β-glucuronidase reporter gene were studied in transgenic tobacco. Deletion of a 40 bp fragment directly upstream of the TATA box leads to increased anaerobic reporter gene activity both, in the presence and absence of CO(2). This deletion does not affect light specific anaerobic expression. A positive correlation between increasing CO(2) concentrations and gene activity is observed. Electrophoretic mobility shift experiments indicate that tobacco nuclear extracts harbour proteins that bind to part of the 40 bp fragment. Database assisted as well as experimental analysis reveal a role for AP2/EREBP transcription factors for conferring the high CO(2) specificity to the GapC4 promoter in tobacco leaves. This work highlights the importance for plants to respond to high environmental CO(2) concentrations under anaerobic conditions.

摘要

洪水是无氧环境的一个自然成因,常常伴随着洪水水中的高浓度二氧化碳。植物需要对这些环境条件作出反应。由玉米(玉米)的糖酵解甘油醛-3-磷酸脱氢酶(GapC4)启动子控制的烟草(Nicotiana tabacum)的强无氧报告基因活性取决于二氧化碳和光的存在。为了鉴定 CO2 调节基因表达所需的因素,将与β-葡萄糖醛酸酶报告基因融合的启动子缺失进行了转基因烟草的研究。在 TATA 盒上游直接缺失 40bp 片段会导致在存在和不存在 CO2 的情况下,无氧报告基因活性增加。该缺失不影响光特异性无氧表达。观察到随着 CO2 浓度的增加,基因活性呈正相关。电泳迁移率变动实验表明,烟草核提取物含有与 40bp 片段部分结合的蛋白质。数据库辅助和实验分析表明,AP2/EREBP 转录因子在赋予烟草叶片中 GapC4 启动子高 CO2 特异性方面发挥作用。这项工作强调了植物在无氧条件下应对高环境 CO2 浓度的重要性。

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