Cryptic genetic elements for regulation of gene expression in plants: The tCUP gene expression system

被引:0
|
作者
Brown, DCW [1 ]
Tian, L [1 ]
Sibbald, S [1 ]
Latosek-Green, M [1 ]
Miki, BL [1 ]
Ouellet, T [1 ]
Wu, K [1 ]
Hu, M [1 ]
Zhang, P [1 ]
Foster, L [1 ]
Malik, K [1 ]
Martin, T [1 ]
Xing, T [1 ]
Hattori, J [1 ]
Labbe, H [1 ]
机构
[1] Agr & Agri Food Canada, So Crop Protect & Food Res Ctr, London, ON N5V 4T3, Canada
关键词
alfalfa; Arabidosis; cryptic; enhancers; promoter; TATA box; tobacco;
D O I
10.17660/ActaHortic.2001.560.4
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Cryptic gene regulatory elements are a class of regulatory elements that possess the same activities as regulatory elements associated with genes but they are inactive at their native locations in the plant genome. Cryptic elements have been found widely among organisms and, at AAFC, a family of cryptic elements were found by random insertion of a promoterless marker gene into the tobacco genome - an approach also known as promoter tagging. tCUP is a cryptic, constitutive promoter and is a member of a repetitive family of elements (RENT) in the tobacco genome. tCUP comprises a short TATA-less core promoter region with a Inr (initiator) sequence, a region of upstream enhancer elements and a translational enhancer in the mRNA leader sequence. By modifying the sequence of the upstream enhancer elements, core promoter and translational enhancer element, tCUP can be enhanced and modified to suit a wide range of applications. tCUP has been shown to an effective promoter sequence in a wide range of dicot plants: alfalfa, tobacco, canola, cauliflower, tomato, pea, Arabidopsis, conifer species, and fruit tree species. Specific elements of the tCUP system have also been shown to be active in diverse species ranging from alfalfa, tomato, tobacco, corn and wheat to conifers and yeast. Through development of the tCUP Gene Expression System we have shown: cryptic elements can replace or compliment existing expression systems derived from genes to control gene expression in transgenic plants; they can be combined with elements from genes to create novel, composite gene regulatory systems in plants; they can be modified to alter the level and specificity of transgene expression in diverse crops; they are as diverse and efficient as elements associated with genes in regulating transcription and translation of cloned genes in transgenic crops.
引用
收藏
页码:51 / 54
页数:4
相关论文
共 50 条
  • [31] The Mitochondrial Genome of Higher Plants: Gene Expression Regulation
    I. B. Khvorostov
    M. K. Ivanov
    G. M. Dymshits
    Molecular Biology, 2002, 36 : 314 - 321
  • [32] The mitochondrial genome of higher plants: Gene expression regulation
    Khvorostov, IB
    Ivanov, MK
    Dymshits, GM
    MOLECULAR BIOLOGY, 2002, 36 (03) : 314 - 321
  • [33] REGULATION SYSTEM OF GENE-EXPRESSION IN YEAST
    UNO, I
    NIPPON NOGEIKAGAKU KAISHI-JOURNAL OF THE JAPAN SOCIETY FOR BIOSCIENCE BIOTECHNOLOGY AND AGROCHEMISTRY, 1988, 62 (12): : 1798 - 1801
  • [34] Genetic regulation of gene expression in the epileptic human hippocampus
    Mirza, Nasir
    Appleton, Richard
    Burn, Sasha
    du Plessis, Daniel
    Duncan, Roderick
    Farah, Jibril Osman
    Feenstra, Bjarke
    Hviid, Anders
    Josan, Vivek
    Mohanraj, Rajiv
    Shukralla, Arif
    Sills, Graeme J.
    Marson, Anthony G.
    Pirmohamed, Munir
    HUMAN MOLECULAR GENETICS, 2017, 26 (09) : 1759 - 1769
  • [35] TRANSFAC:: an integrated system for gene expression regulation
    Wingender, E
    Chen, X
    Hehl, R
    Karas, H
    Liebich, I
    Matys, V
    Meinhardt, T
    Prüss, M
    Reuter, I
    Schacherer, F
    NUCLEIC ACIDS RESEARCH, 2000, 28 (01) : 316 - 319
  • [36] The rules of gene expression in plants: Organ identity and gene body methylation are key factors for regulation of gene expression in Arabidopsis thaliana
    Aceituno, Felipe F.
    Moseyko, Nick
    Rhee, Seung Y.
    Gutierrez, Rodrigo A.
    BMC GENOMICS, 2008, 9 (1)
  • [37] Genetic and Epigenetic Regulation of Human lincRNA Gene Expression
    Popadin, Konstantin
    Gutierrez-Arcelus, Maria
    Dermitzakis, Emmanouil T.
    Antonarakis, Stylianos E.
    AMERICAN JOURNAL OF HUMAN GENETICS, 2013, 93 (06) : 1015 - 1026
  • [38] Alternative polyadenylation mediates genetic regulation of gene expression
    Mittleman, Briana E.
    Pott, Sebastian
    Warland, Shane
    Zeng, Tony
    Mu, Zepeng
    Kaur, Mayher
    Gilad, Yoav
    Li, Yang
    ELIFE, 2020, 9 : 1 - 21
  • [39] Genetic insulators and epigenetic variations in gene expression and regulation
    Gaussin, Armelle
    Esnault, Germain
    Mermod, Nicolas
    HUMAN GENE THERAPY, 2007, 18 (10) : 989 - 989
  • [40] The rules of gene expression in plants: Organ identity and gene body methylation are key factors for regulation of gene expression in Arabidopsis thaliana
    Felipe F Aceituno
    Nick Moseyko
    Seung Y Rhee
    Rodrigo A Gutiérrez
    BMC Genomics, 9