Forster C, Arthur E, Crespi S, Hobbs S L, Mullineaux P, Casey R
John Innes Centre, Colney Lane, Norwich, UK.
Plant Mol Biol. 1994 Oct;26(1):235-48. doi: 10.1007/BF00039535.
Part of the 5'-flanking sequence of a pea (Pisum sativum) lipoxygenase (LOX) gene was cloned, after amplification from genomic DNA by inverse polymerase chain reaction. Translational and transcriptional fusions of 818 bp of the 5'-flanking region and its deletion derivatives (-513 and -356) were made to a beta-glucuronidase (GUS)-coding sequence and introduced into tobacco. Analysis of T1 transformants showed that the 818 bp 5'-flanking sequence drove GUS expression in seeds that was temporally regulated in a fashion similar to the accumulation of LOX mRNA in developing pea seeds. Contrary to expectations, however, expression of the 818 bp promoter-GUS fusion was not seed-specific; GUS activity was highest in leaves and also present in stems and, to a lesser extent, roots. Deletion analyses identified the region between -818 and -513 as essential for high-level, temporally regulated expression in seeds and also indicated that the sequence between -513 and -356 plays a negative role in leaf/stem, but not seed, expression. Comparison of translational and transcriptional fusions indicated that the LOX initiation codon was used more efficiently than the GUS initiation codon by the tobacco leaf translational apparatus.
通过反向聚合酶链反应从基因组DNA扩增后,克隆了豌豆(Pisum sativum)脂氧合酶(LOX)基因5'-侧翼序列的一部分。将818 bp的5'-侧翼区域及其缺失衍生物(-513和-356)与β-葡萄糖醛酸酶(GUS)编码序列进行翻译和转录融合,并导入烟草。对T1代转化体的分析表明,818 bp的5'-侧翼序列驱动种子中GUS的表达,其时间调控方式与发育中的豌豆种子中LOX mRNA的积累相似。然而,与预期相反,818 bp启动子-GUS融合体的表达不是种子特异性的;GUS活性在叶片中最高,在茎中也有,在根中程度较小。缺失分析确定-818至-513之间的区域对于种子中高水平的时间调控表达至关重要,并且还表明-513至-356之间的序列在叶/茎表达中起负作用,但在种子表达中不起作用。翻译融合和转录融合的比较表明,烟草叶片翻译装置对LOX起始密码子的使用效率高于GUS起始密码子。