Two different novel cis-acting elements of erd1, a clpA homologous Arabidopsis gene function in induction by dehydration stress and dark-induced senescence

被引:357
作者
Simpson, SD
Nakashima, K
Narusaka, Y
Seki, M
Shinozaki, K
Yamaguchi-Shinozaki, K
机构
[1] JIRCAS, Biol Resources Div, Tsukuba, Ibaraki 3058686, Japan
[2] RIKEN Tsukuba Inst, Plant Mol Biol Lab, Tsukuba, Ibaraki 3050074, Japan
[3] RIKEN Genom Sci Ctr, Plant Funct Genom Grp, Tsukuba, Ibaraki 3050074, Japan
关键词
senescence; dehydration stress; promoter; cis-acting elements; Arabidopsis;
D O I
10.1046/j.1365-313X.2003.01624.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Many plant genes have been shown to be induced by water stress and function in stress tolerance. The erd1 gene has been shown to be upregulated in response to both water stress and etiolation. Promoter studies using the erd1 promoter region fused to the luciferase (LUC ) reporter gene in Arabidopsis thaliana were performed to identify the putative cis elements involved. Results indicated that the cis elements, responsible for gene expression during dehydration and etiolation, are separately located in two discrete portions of the erd1 promoter. Base substitution analysis showed that a 14-bp region from -599 to -586, and a myc recognition motif from -466 to -461 are necessary for the induction of LUC activity in dehydrated plants. On the other hand, base substitution analysis revealed that both an abscisic acid responsive element (ABRE)-like sequence (from -199 to -195) and an ACGT sequence (from -155 to -152) are required for an etiolation-induced increase in LUC activity. LUC activity measurements from etiolated transgenic plants incubated in either water, N6-benzyleadenine (BA), or a 1% sucrose solution found that while BA was able to delay the increase in LUC activity seen in water-treated plants, no increase in LUC activity was seen in plants incubated in sucrose. These results indicate that the erd1 promoter contains two different regulatory systems that are involved in upregulation by dehydration stress and dark-induced senescence.
引用
收藏
页码:259 / 270
页数:12
相关论文
共 34 条
[1]   Role of Arabidopsis MYC and MYB homologs in drought- and abscisic acid-regulated gene expression [J].
Abe, H ;
YamaguchiShinozaki, K ;
Urao, T ;
Iwasaki, T ;
Hosokawa, D ;
Shinozaki, K .
PLANT CELL, 1997, 9 (10) :1859-1868
[2]   Genetic analysis of ABA signal transduction pathways [J].
Bonetta, D ;
McCourt, P .
TRENDS IN PLANT SCIENCE, 1998, 3 (06) :231-235
[3]   Plant responses to water deficit [J].
Bray, EA .
TRENDS IN PLANT SCIENCE, 1997, 2 (02) :48-54
[4]   Analysis of estrogen receptor interaction with a repressor of estrogen receptor activity (REA) and the regulation of estrogen receptor transcriptional activity by REA [J].
Delage-Mourroux, R ;
Martini, PGV ;
Choi, I ;
Kraichely, DM ;
Hoeksema, J ;
Katzenellenbogen, BS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (46) :35848-35856
[5]   Proteases and cellular regulation in plants [J].
Estelle, M .
CURRENT OPINION IN PLANT BIOLOGY, 2001, 4 (03) :254-260
[6]   The WRKY superfamily of plant transcription factors [J].
Eulgem, T ;
Rushton, PJ ;
Robatzek, S ;
Somssich, IE .
TRENDS IN PLANT SCIENCE, 2000, 5 (05) :199-206
[7]   STRUCTURE AND EXPRESSION OF THE NUCLEAR GENE CODING FOR THE PLASTID CS1 RIBOSOMAL-PROTEIN FROM SPINACH [J].
FRANZETTI, B ;
ZHOU, DX ;
MACHE, R .
NUCLEIC ACIDS RESEARCH, 1992, 20 (16) :4153-4157
[8]   INHIBITION OF LEAF SENESCENCE BY AUTOREGULATED PRODUCTION OF CYTOKININ [J].
GAN, SS ;
AMASINO, RM .
SCIENCE, 1995, 270 (5244) :1986-1988
[9]   ABA signal transduction [J].
Grill, E ;
Himmelbach, A .
CURRENT OPINION IN PLANT BIOLOGY, 1998, 1 (05) :412-418
[10]   A PLANT LEUCINE ZIPPER PROTEIN THAT RECOGNIZES AN ABSCISIC-ACID RESPONSE ELEMENT [J].
GUILTINAN, MJ ;
MARCOTTE, WR ;
QUATRANO, RS .
SCIENCE, 1990, 250 (4978) :267-271