首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Cell-specific expression in transgenic plants reveals nonoverlapping roles for chloroplast and cytosolic glutamine synthetase.
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Cell-specific expression in transgenic plants reveals nonoverlapping roles for chloroplast and cytosolic glutamine synthetase.

机译:转基因植物中的细胞特异性表达揭示了叶绿体和胞质谷氨酰胺合成酶的不重叠作用。

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摘要

Chloroplast and cytosolic isoforms of glutamine synthetase (GS; EC 6.3.1.2) are encoded by separate nuclear genes in plants. Here we report that the promoters for chloroplast GS2 and cytosolic GS3A of Pisum sativum confer nonoverlapping, cell-specific expression patterns on the beta-glucuronidase (GUS) reporter gene in transgenic tobacco. The promoter for chloroplast GS2 directs GUS expression within photosynthetic cell types (e.g., palisade parenchymal cells of the leaf blade, chlorenchymal cells of the midrib and stem, and photosynthetic cells of tobacco cotyledons). The promoter for chloroplast GS2 retains the ability to confer light-regulated gene expression in the heterologous transgenic tobacco system in a manner analogous to the light-regulated expression of the cognate gene for chloroplast GS2 in pea. These expression patterns reflect the physiological role of the chloroplast GS2 isoform in the assimilation of ammonia generated by nitrite reduction and photorespiration. In contrast, the promoter for cytosolic GS3A directs expression of GUS specifically within the phloem elements in all organs of mature plants. This phloem-specific expression pattern suggests that the cytosolic GS3A isoenzyme functions to generate glutamine for intercellular nitrogen transport. In germinating seedlings, the intense expression of the cytosolic GS3A-GUS transgene in the vasculature of cotyledons reveals a role for cytosolic GS in the mobilization of seed storage reserves. The distinct, cell-specific patterns of expression conferred by the promoters for chloroplast GS2 and cytosolic GS3A indicate that the corresponding GS isoforms perform separate metabolic functions.
机译:谷氨酰胺合成酶(GS; EC 6.3.1.2)的叶绿体和胞质亚型由植物中单独的核基因编码。在这里,我们报告的Pisum sativum叶绿体GS2和胞质GS3A的启动子赋予转基因烟草中β-葡萄糖醛酸苷酶(GUS)报告基因非重叠的细胞特异性表达模式。叶绿体GS2的启动子指导GUS在光合细胞类型(例如,叶片的栅栏实质细胞,中脉和茎的氯间质细胞以及烟草子叶的光合细胞)内表达。叶绿体GS2的启动子保留了在异源转基因烟草系统中赋予光调节基因表达的能力,其方式类似于豌豆中叶绿体GS2同源基因的表达。这些表达方式反映了叶绿体GS2同工型在亚硝酸盐还原和光呼吸作用产生的氨同化中的生理作用。相反,胞质GS3A的启动子直接在成熟植物的所有器官的韧皮部元件内指导GUS的表达。韧皮部特异性表达模式表明,胞质GS3A同工酶的功能是生成谷氨酰胺,以进行细胞间氮转运。在发芽的幼苗中,子叶的脉管系统中胞质GS3A-GUS转基因的强烈表达揭示了胞质GS在动员种子贮藏储备中的作用。叶绿体GS2和胞质GS3A的启动子赋予的独特的细胞特异性表达模式表明,相应的GS同工型具有独立的代谢功能。

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