de Pater S, Pham K, Chua N H, Memelink J, Kijne J
Center for Phytotechnology, Leiden University, The Netherlands.
Plant Cell. 1993 Aug;5(8):877-86. doi: 10.1105/tpc.5.8.877.
To elucidate the molecular mechanisms responsible for seed-specific gene expression in plants, the promoter of the pea lectin (psl) gene, encoding an abundant seed protein, was used as a model. Leaf and seed nuclear proteins bound to a region in the psl promoter containing three overlapping TGAC-like motifs, which have been shown to be a binding site for basic/leucine zipper proteins, including TGA1a. A trimer of a 22-bp region of the psl promoter, containing the TGAC-like motifs, coupled to a heterologous minimal promoter conferred low reporter gene expression in root, stem, and leaf and high expression in seed of transgenic tobacco. Expression increased during the midmaturation stage of seed development and was observed in the endosperm as well as in the embryo, where it strongly decreased within a few days after germination. This expression pattern is qualitatively identical to the expression pattern conferred by a 2000-bp fragment of the psl promoter. Nucleotides within the TGAC-like motifs important for in vitro binding are also essential for in vivo transcription activation in vegetative tissue as well as in seed. The electrophoretic mobility of a DNA-protein complex containing seed nuclear protein was different from that formed with leaf nuclear protein. Furthermore, the TGA1a steady state mRNA level in immature seed was relatively low. These results suggest that a seed-specific factor different from TGA1a, but with similar binding specificity, is responsible for gene activation in seed. We conclude that the 22-bp region contains all the information, including an essential TGAGTCATCA sequence, necessary for seed-specific expression and very likely plays an essential role in the seed-specific expression pattern of the psl gene.
为阐明植物种子特异性基因表达的分子机制,以编码一种丰富种子蛋白的豌豆凝集素(psl)基因启动子为模型。叶和种子核蛋白与psl启动子中一个包含三个重叠TGAC样基序的区域结合,该基序已被证明是包括TGA1a在内的碱性/亮氨酸拉链蛋白的结合位点。psl启动子一个包含TGAC样基序的22bp区域的三聚体与异源最小启动子相连,在转基因烟草的根、茎和叶中赋予低水平报告基因表达,而在种子中赋予高水平表达。表达在种子发育的中成熟阶段增加,在胚乳和胚中均有观察到,在萌发后几天内其表达在胚中强烈下降。这种表达模式在性质上与psl启动子2000bp片段赋予的表达模式相同。TGAC样基序中对体外结合重要的核苷酸对于营养组织和种子中的体内转录激活也是必不可少的。包含种子核蛋白的DNA-蛋白复合物的电泳迁移率与叶核蛋白形成的复合物不同。此外,未成熟种子中TGA1a的稳态mRNA水平相对较低。这些结果表明,一种不同于TGA1a但具有相似结合特异性的种子特异性因子负责种子中的基因激活。我们得出结论,22bp区域包含种子特异性表达所需的所有信息,包括必需的TGAGTCATCA序列,并且很可能在psl基因的种子特异性表达模式中起重要作用。