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首页> 外文期刊>Plant Biotechnology Journal >The Lem2 gene promoter of barley directs cell?¢???? and development?¢????specific expression of gfp in transgenic plants
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The Lem2 gene promoter of barley directs cell?¢???? and development?¢????specific expression of gfp in transgenic plants

机译:大麦的Lem2基因启动子指导细胞?和发育gfp在转基因植物中的特异性表达

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摘要

Transgenic approaches to combating fungal pathogens, such as Fusarium graminearum , require the targeting of antifungal gene expression in tissues of developing seed spikes of cereal grains, especially lemmas and epicarps. The Lem2 gene of barley encodes a lectin?¢????like protein that is strongly up?¢????regulated by salicylic acid and is preferentially expressed in lemmas, paleas (lemma/palea) and coleoptiles. Transient expression studies have indicated that the proximal ?¢????75/+70 region (relative to the transcription start site) determines organ specificity. In the present study, Golden Promise barley stably transformed with Morex Lem2 promoter/ gfp reporter constructs displayed cell?¢???? and development?¢????specific expression of gfp (green fluorescent protein gene). This expression corresponded to the expression seen in Northern blots of Morex organs. Under the full?¢????length promoter, strong GFP fluorescence was observed in the lemma/palea, glumes, coleoptile, auricle and ligule. Weak GFP fluorescence was also observed in the rachis, tips of primary leaves and the leaf sheath. Unexpectedly, strong expression occurred in the epicarp, even though Lem2 is not expressed in this organ in Morex. Studies showed that the Lem2 promoter is more highly methylated in the epicarp than in the lemma of Morex. In the lemma/palea, gfp underwent a temporal shift in expression from the mesophyll to specialized epidermal cork cells. Similar to the lemma/palea, expression in the leaf sheath was localized in the cork cells. Progressive 5?¢???2 deletions of the promoter to nucleotide ?¢????75 gradually reduced the level of gfp expression, but tissue?¢???? and cell?¢????specific expression was retained.
机译:对抗真菌病原体(例如镰刀镰刀菌)的转基因方法需要靶向正在发育的谷物(尤其是外mas和果皮)种子穗的组织中的抗真菌基因表达。大麦的Lem2基因编码一种凝集素样蛋白,该蛋白被水杨酸强烈上调,并优先在外mas,内pale(外ma /小叶)和胚芽鞘中表达。瞬时表达研究表明,近端的75 / + 70区(相对于转录起始位点)决定器官的特异性。在本研究中,用Morex Lem2启动子/ gfp报告基因构建体稳定转化的Golden Promise大麦显示了细胞?和发展gfp(绿色荧光蛋白基因)的特异性表达。该表达对应于在Morex器官的Northern印迹中看到的表达。在全长的启动子下,在外膜/手掌,颖片,胚芽鞘,耳廓和舌状叶中观察到强的GFP荧光。在叶片,初生叶的尖端和叶鞘中也观察到弱的GFP荧光。出乎意料的是,即使在Morex的该器官中未表达Lem2,在果皮中也会发生强烈的表达。研究表明,Lep2启动子在果皮中的甲基化程度高于莫雷克斯的外lem。在外//足lea中,gfp的表达从叶肉到特定的表皮软木细胞经历了时间变化。与外lem /掌类似,在叶鞘中的表达定位于软木细胞中。核苷酸5′→7′的启动子的进行性5′→2′缺失逐渐降低了gfp的表达水平,但组织却逐渐消失。并且保留了细胞的特异性表达。

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