首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Isolation of a promoter sequence from the glutamine synthetase(1-2) gene capable of conferring tissue-specific gene expression in transgenic maize
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Isolation of a promoter sequence from the glutamine synthetase(1-2) gene capable of conferring tissue-specific gene expression in transgenic maize

机译:从能够赋予转基因玉米组织特异性基因表达的谷氨酰胺合成酶(1-2)基因中分离启动子序列

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摘要

Glutamine synthetase(1-2) (GS(1-2)), one of the six glutamine synthetase (GS) genes found in the maize (Zea mays L.) genome, encodes a cytoplasm-localized GS isozyme (GS(p1)) that is specifically expressed in the basal maternal tissues of the developing kernel. This gene has now been isolated, and its 5' upstream regulatory region has been sequenced and then used to drive reporter gene expression in stable maize transformants. Expression of the GS(1-2) promoter/GUS heterologous gene resulted in the predicted tissue-specific expression in the basal maternal seed tissues, including the surrounding pericarp. Gene expression within the pedicel parenchyma that subtends the basal endosperm transfer cells and embryo was particularly strong. In contrast, GUS staining was absent in the endosperm and embryo, as well as in leaves or roots. Strong staining was also observed in the basal tissues of developing anthers. which are anatomically similar to the pedicel, and in mature pollen. Silks and husks also stained weakly. A possible explanation for ecotopic expression of GS(1-2)/GUS in pollen is presented. The GS(1-2) expression pattern within the kernel is consistent with the GS(p1) isozyme's recognized role in nitrogen metabolism during grain fill.
机译:玉米(Zea mays L.)基因组中发现的六个谷氨酰胺合成酶(GS)基因之一的谷氨酰胺合成酶(1-2)(GS(1-2))编码一种定位于细胞质的GS同工酶(GS(p1) )在发育中的内核的基底母体组织中特异性表达。现在已经分离出该基因,并对其5'上游调控区进行了测序,然后用于驱动稳定玉米转化体中报告基因的表达。 GS(1-2)启动子/ GUS异源基因的表达导致在基底母体种子组织(包括周围的果皮)中预测组织特异性表达。花梗薄壁组织内的基因表达对着基底胚乳转移细胞和胚胎有特别强烈的作用。相反,胚乳和胚以及叶或根中没有GUS染色。在发育中的花药的基部组织中也观察到强染色。在解剖学上类似于花梗,花粉成熟。丝绸和果壳也被微弱地染色。提出了花粉中GS(1-2)/ GUS在生态位表达的可能解释。谷粒中GS(1-2)的表达方式与GS(p1)同工酶在谷粒充实过程中氮代谢中的公认作用一致。

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