Two MYB-related transcription factors play opposite roles in sugar signaling in Arabidopsis

被引:55
作者
Chen, Yi-Shih [1 ]
Chao, Yi-Chi [1 ]
Tseng, Tzu-Wei [1 ]
Huang, Chun-Kai [1 ]
Lo, Pei-Ching [1 ]
Lu, Chung-An [1 ]
机构
[1] Natl Cent Univ, Dept Life Sci, Taoyuan 32001, Taiwan
关键词
MYB transcription factor; Sugar signaling; ABA; Arabidopsis; AMYLASE GENE-EXPRESSION; 3' UNTRANSLATED REGION; ABSCISIC-ACID; MESSENGER-RNA; SEEDLING DEVELOPMENT; INSENSITIVE MUTANTS; LEAF SENESCENCE; DNA-BINDING; GLUCOSE; MECHANISMS;
D O I
10.1007/s11103-016-0562-8
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Sugar regulation of gene expression has profound effects at all stages of the plant life cycle. Although regulation at the transcriptional level is one of the most prominent mechanisms by which gene expression is regulated, only a few transcription factors have been identified and demonstrated to be involved in the regulation of sugar-regulated gene expression. OsMYBS1, an R1/2-type MYB transcription factor, has been demonstrated to be involved in sugar- and hormone-regulated alpha-amylase gene expression in rice. Arabidopsis contains two OsMYBS1 homologs. In the present study, we investigate MYBS1 and MYBS2 in sugar signaling in Arabidopsis. Our results indicate that MYBS1 and MYBS2 play opposite roles in regulating glucose and ABA signaling in Arabidopsis during seed germination and early seedling development. MYB proteins have been classified into four subfamilies: R2R3-MYB, R1/2-MYB, 3R-MYB, and 4R-MYB. An R1/2-type MYB transcription factor, OsMYBS1, has been demonstrated to be involved in sugar- and hormone-regulated alpha-amylase genes expression in rice. In this study, two genes homologous to OsMYBS1, MYBS1 and MYBS2, were investigated in Arabidopsis. Subcellular localization analysis showed that MYBS1 and MYBS2 were localized in the nucleus. Rice embryo transient expression assays indicated that both MYBS1 and MYBS2 could recognize the sugar response element, TA-box, in the promoter and induced promoter activity. mybs1 mutant exhibited hypersensitivity to glucose, whereas mybs2 seedlings were hyposensitive to it. MYBS1 and MYBS2 are involved in the control of glucose-responsive gene expression, as the mybs1 mutant displayed increased expression of a hexokinase gene (HXK1), chlorophyll a/b-binding protein gene (CAB1), ADP-glucose pyrophosphorylase gene (APL3), and chalcone synthase gene (CHS), whereas the mybs2 mutant exhibited decreased expression of these genes. mybs1 also showed an enhanced response to abscisic acid (ABA) in the seed germination and seedling growth stages, while mybs2 showed reduced responses. The ABA biosynthesis inhibitor fluridone rescued the mybs1 glucose-hypersensitive phenotype. Moreover, the mRNA levels of three ABA biosynthesis genes, ABA1, NCED9, and AAO3, and three ABA signaling genes, ABI3, ABI4, and ABI5, were increased upon glucose treatment of mybs1 seedlings, but were decreased in mybs2 seedlings. These results indicate that MYBS1 and MYBS2 play opposite roles in regulating glucose and ABA signaling in Arabidopsis during seed germination and early seedling development.
引用
收藏
页码:299 / 311
页数:13
相关论文
共 42 条
[11]   Floral dip:: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana [J].
Clough, SJ ;
Bent, AF .
PLANT JOURNAL, 1998, 16 (06) :735-743
[12]   A gateway cloning vector set for high-throughput functional analysis of genes in planta [J].
Curtis, MD ;
Grossniklaus, U .
PLANT PHYSIOLOGY, 2003, 133 (02) :462-469
[13]   Sugars, signalling, and plant development [J].
Eveland, Andrea L. ;
Jackson, David P. .
JOURNAL OF EXPERIMENTAL BOTANY, 2012, 63 (09) :3367-3377
[14]   Abscisic acid inhibition of radicle emergence but not seedling growth is suppressed by sugars [J].
Finkelstein, RR ;
Lynch, TJ .
PLANT PHYSIOLOGY, 2000, 122 (04) :1179-1186
[15]   The sugar-insensitive1 (sis1) mutant of Arabidopsis is allelic to ctr1 [J].
Gibson, SI ;
Laby, RJ ;
Kim, DG .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2001, 280 (01) :196-203
[16]   A single-repeat MYB transcription repressor, MYBH, participates in regulation of leaf senescence in Arabidopsis [J].
Huang, Chun-Kai ;
Lo, Pei-Ching ;
Huang, Li-Fen ;
Wu, Shaw-Jye ;
Yeh, Ching-Hui ;
Lu, Chung-An .
PLANT MOLECULAR BIOLOGY, 2015, 88 (03) :269-286
[17]   The Arabidopsis SUCROSE UNCOUPLED-6 gene is identical to ABSCISIC ACID INSENSITIVE-4:: involvement of abscisic acid in sugar responses [J].
Huijser, C ;
Kortstee, A ;
Pego, J ;
Weisbeek, P ;
Wisman, E ;
Smeekens, S .
PLANT JOURNAL, 2000, 23 (05) :577-585
[18]   SUGAR SENSING IN HIGHER-PLANTS [J].
JANG, JC ;
SHEEN, J .
PLANT CELL, 1994, 6 (11) :1665-1679
[19]   The Arabidopsis bZIP1 Transcription Factor Is Involved in Sugar Signaling, Protein Networking, and DNA Binding [J].
Kang, Shin Gene ;
Price, John ;
Lin, Pei-Chi ;
Hong, Jong Chan ;
Jang, Jyan-Chyun .
MOLECULAR PLANT, 2010, 3 (02) :361-373
[20]   Sucrose metabolism: regulatory mechanisms and pivotal roles in sugar sensing and plant development [J].
Koch, K .
CURRENT OPINION IN PLANT BIOLOGY, 2004, 7 (03) :235-246