AN AUXIN-INDUCIBLE ELEMENT IN SOYBEAN SAUR PROMOTERS

被引:74
|
作者
LI, Y [1 ]
LIU, ZB [1 ]
SHI, XY [1 ]
HAGEN, G [1 ]
GUILFOYLE, TJ [1 ]
机构
[1] UNIV MISSOURI,DEPT BIOCHEM,COLUMBIA,MO 65211
关键词
D O I
10.1104/pp.106.1.37
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The soybean SAUR (Small Auxin-Up RNA) genes are transcriptionally induced by exogenous auxins within a few minutes after hormone application. This response is specifically induced by auxins primarily in epidermal and cortical cells within elongation zones of hypocotyls and epicotyls. We have previously shown that an 832-bp soybean SAUR promoter/beta-glucuronidase (GUS) reporter gene fusion is responsive to auxin in transgenic tobacco plants (Y. Li, C. Hagen, T.J. Guilfoyle [1991] Plant Cell 3: 1167-1175). Similar results were obtained with an 868-bp SAUR 15A promoter-GUS reporter gene in transgenic tobacco (Y. Li, unpublished results). We have now analyzed a soybean SAUR 15A promoter in transgenic tobacco plants using 5' unidirectional deletions, internal deletions and mutations, and gain-of-function assays with a minimal cauliflower mosaic virus 35S promoter. Our results indicate that the distal upstream element/Ndel restriction endonuclease site element (NDE) (B.A. McClure, C. Hagen, C.S. Brown, M.A. Gee, T.J. Guilfoyle [1989] Plant Cell 1: 229-239) in the SAUR 15A promoter is necessary and sufficient for auxin induction. Our results also show that the 30-bp NDE portion of this element is responsible for most, if not all, of the auxin inducibility of the SAUR 15A promoter. The NDE contains two adjacent sequences, TGTCTC and GGTCCCAT, which have been previously identified as putative auxin-responsive elements. We propose that these elements might function independently or together, possibly with an additional element(s), to confer auxin inducibility to the SAUR promoters.
引用
收藏
页码:37 / 43
页数:7
相关论文
共 50 条
  • [41] Conditional Knockdown of Proteins Using Auxin-inducible Degron (AID) Fusions in Toxoplasma gondii
    Brown, Kevin M.
    Long, Shaojun
    Sibley, L. David
    BIO-PROTOCOL, 2018, 8 (04):
  • [42] Auxin-inducible degron 2 system deciphers functions of CTCF domains in transcriptional regulation
    Judith Hyle
    Mohamed Nadhir Djekidel
    Justin Williams
    Shaela Wright
    Ying Shao
    Beisi Xu
    Chunliang Li
    Genome Biology, 24
  • [43] Rapid and specific degradation of endogenous proteins in mouse models using auxin-inducible degrons
    Macdonald, Lewis
    Taylor, Gillian C.
    Brisbane, Jennifer Margaret
    Christodoulou, Ersi
    Scott, Lucy
    von Kriegsheim, Alex
    Rossant, Janet
    Gu, Bin
    Wood, Andrew J.
    ELIFE, 2022, 11
  • [44] Effects of three auxin-inducible LBD members on lateral root formation in Arabidopsis thaliana
    Zhenhua Feng
    Jian Zhu
    Xiling Du
    Xianghuan Cui
    Planta, 2012, 236 : 1227 - 1237
  • [45] Identification and characterization of an auxin-inducible protein kinase, VrCRK1, from mungbean
    Kwon, C
    Yun, HS
    Kaufman, PB
    Kim, SK
    Kim, TW
    Kang, BG
    Chang, SC
    MOLECULES AND CELLS, 2004, 18 (03) : 346 - 352
  • [46] MOLECULAR-CLONING OF CDNAS FOR AUXIN-INDUCED MESSENGER-RNAS AND DEVELOPMENTAL EXPRESSION OF THE AUXIN-INDUCIBLE GENES
    REDDY, ASN
    JENA, PK
    MUKHERJEE, SK
    POOVAIAH, BW
    PLANT MOLECULAR BIOLOGY, 1990, 14 (05) : 643 - 653
  • [47] Expression of the auxin-inducible GH3 Promoter GUS fusion gene as a useful molecular marker for auxin physiology
    Li, Y
    Wu, YH
    Hagen, G
    Guilfoyle, T
    PLANT AND CELL PHYSIOLOGY, 1999, 40 (07) : 675 - 682
  • [48] Auxin-inducible degron system: an efficient protein degradation tool to study protein function
    Phanindhar, Kundurthi
    Mishra, Rakesh K.
    BIOTECHNIQUES, 2023, 74 (04) : 186 - 198
  • [49] Quantitative characterization of the auxin-inducible degron: a guide for dynamic protein depletion in single yeast cells
    Papagiannakis, Alexandros
    de Jonge, Janeska J.
    Zhang, Zheng
    Heinemann, Matthias
    SCIENTIFIC REPORTS, 2017, 7
  • [50] A novel auxin-inducible degron system for rapid, cell cycle-specific targeted proteolysis
    Marina Capece
    Anna Tessari
    Joseph Mills
    Gian Luca Rampioni Vinciguerra
    Darian Louke
    Chenyu Lin
    Bryan K. McElwain
    Wayne O. Miles
    Vincenzo Coppola
    Alexander E. Davies
    Dario Palmieri
    Carlo M. Croce
    Cell Death & Differentiation, 2023, 30 : 2078 - 2091