Seffens W S, Almoguera C, Wilde H D, Vonder Haar R A, Thomas T L
Department of Biology, Texas A&M University, College Station.
Dev Genet. 1990;11(1):65-76. doi: 10.1002/dvg.1020110108.
Extensive studies of gene expression programs in carrot somatic embryos identified a gene, designated Dc3, that serves as a reliable molecular marker for the acquisition of embryogenic potential by carrot cells in culture. The complete sequence of a carrot genomic region, DcG3, encoding a Dc3-like mRNA, was determined. The DcG3 transcription unit contains a single intron and encodes mRNA that is expressed at high levels in embryonic tissue but is undetectable in somatic tissue of carrot. The predicted protein sequence of DcG3 is 163 amino acids and includes two approximately 50 amino acid direct repeats which in turn include additional repetitive elements with an unusual distribution of charged amino acids. Dc3 and Dc3-like mRNAs are encoded by a small divergent gene family. Furthermore, similarities of the Dc3 gene family with genes from other plant species that are expressed in response to environmental and developmental cues suggest a possible role in seed desiccation and possibly in more general water-stress responses in plants. Analysis of transgenic tobacco containing a beta-glucuronidase (GUS) reporter gene fused to a 1.7 kb 5' upstream element of DcG3 defined a promoter/enhancer complex that confers developmentally and environmentally regulated expression of GUS activity. Thus, DcG3 is phylogenetically conserved together with the trans-acting factors required for its regulated expression in transgenic tobacco.
对胡萝卜体细胞胚中的基因表达程序进行的广泛研究鉴定出一个名为Dc3的基因,它是培养中的胡萝卜细胞获得胚性潜能的可靠分子标记。确定了编码类Dc3 mRNA的胡萝卜基因组区域DcG3的完整序列。DcG3转录单元包含一个内含子,编码在胚胎组织中高水平表达但在胡萝卜体细胞组织中无法检测到的mRNA。DcG3的预测蛋白质序列为163个氨基酸,包括两个约50个氨基酸的直接重复序列,这些重复序列又包含具有异常带电氨基酸分布的额外重复元件。Dc3和类Dc3 mRNA由一个小的分化基因家族编码。此外,Dc3基因家族与其他植物物种中响应环境和发育线索而表达的基因的相似性表明其在种子脱水以及可能在植物更普遍的水分胁迫反应中可能发挥作用。对含有与DcG3的1.7 kb 5'上游元件融合的β-葡萄糖醛酸酶(GUS)报告基因的转基因烟草的分析确定了一个启动子/增强子复合体,该复合体赋予GUS活性以发育和环境调节的表达。因此,DcG3与其在转基因烟草中受调控表达所需的反式作用因子在系统发育上是保守的。