Hattori T, Terada T, Hamasuna S
Center for Molecular Biology and Genetics, Mie University, Tsu, Japan.
Plant J. 1995 Jun;7(6):913-25. doi: 10.1046/j.1365-313x.1995.07060913.x.
Osem, a rice gene homologous to the wheat Em gene, which encodes one of the late-embryogenesis abundant proteins was isolated. The gene was characterized with respect to control of transcription by abscisic acid (ABA) and the transcriptional activator VP1, which is involved in the ABA-regulated gene expression during late embryo-genesis. A fusion gene (Osem-GUS) consisting of the Osem promoter and the bacterial beta-glucuronidase (GUS) gene was constructed and tested in a transient expression system, using protoplasts derived from a suspension-cultured line of rice cells, for activation by ABA and by co-transfection with an expression vector (35S-Osvp1) for the rice VP1 (OSVP1) cDNA. The expression of Osem-GUS was strongly (40- to 150-fold) activated by externally applied ABA and by over-expression of (OS)VP1. The Osem promoter has three ACGTG-containing sequences, motif A, motif B and motif A', which resemble the abscisic acid-responsive element (ABRE) that was previously identified in the wheat Em and the rice Rab16. There is also a CATGCATG sequence, which is known as the Sph box and is shown to be essential for the regulation by VP1 of the maize anthocyanin regulatory gene C1. Focusing on these sequence elements, various mutant derivatives of the Osem promoter in the transient expression system were assayed. The analysis revealed that motif A functions not only as an ABRE but also as a sequence element required for the regulation by (OS)VP1.
分离出了一个与小麦Em基因同源的水稻基因Osem,该基因编码一种胚胎后期丰富蛋白。对该基因在脱落酸(ABA)和转录激活因子VP1调控转录方面进行了特性分析,VP1参与胚胎后期发育过程中ABA调控的基因表达。构建了一个由Osem启动子和细菌β-葡萄糖醛酸酶(GUS)基因组成的融合基因(Osem-GUS),并在瞬时表达系统中进行测试,该系统使用来源于水稻细胞悬浮培养系的原生质体,以检测其是否能被ABA激活以及与水稻VP1(OSVP1)cDNA的表达载体(35S-Osvp1)共转染后是否能被激活。Osem-GUS的表达被外源施加的ABA和(OS)VP1的过表达强烈激活(40至150倍)。Osem启动子有三个含ACGTG的序列,基序A、基序B和基序A',它们类似于先前在小麦Em和水稻Rab16中鉴定出的脱落酸应答元件(ABRE)。还有一个CATGCATG序列,即Sph盒,已证明它对于VP1调控玉米花青素调控基因C1至关重要。聚焦于这些序列元件,在瞬时表达系统中对Osem启动子的各种突变衍生物进行了检测。分析表明,基序A不仅作为ABRE起作用,而且还是(OS)VP1调控所需的序列元件。