Fruit preferential activity of the tomato RIP1 gene promoter in transgenic tomato and Arabidopsis

被引:11
作者
Agarwal, Priyanka [1 ]
Kumar, Rahul [1 ,2 ]
Pareek, Amit [1 ]
Sharma, Arun K. [1 ]
机构
[1] Univ Delhi, Dept Plant Mol Biol, South Campus, New Delhi 110021, India
[2] Univ Hyderabad, Dept Plant Sci, Repository Tomato Genom Resources, Hyderabad 500046, Andhra Pradesh, India
关键词
RIP1; Promoter; Ripening; Tomato; Arabidopsis; SYNTHASE GENE; ENHANCER ELEMENT; E8; PROMOTER; EXPRESSION; ETHYLENE; PROTEIN; RICE; TRANSCRIPTION; SEQUENCES; PLANTS;
D O I
10.1007/s00438-016-1262-4
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
Isolation and functional characterization of tissue- and stage-specific gene promoters is beneficial for genetic improvement of economically important crops. Here, we have characterized a putative promoter of a ripening-induced gene RIP1 (Ripening induced protein 1) in tomato. Quantification of the transcript level of RIP1 showed that its expression is fruit preferential, with maximum accumulation in red ripe fruits. To test the promoter activity, we made a reporter construct by cloning 1450 bp putative RIP1 promoter driving the GUS (B-glucuronidase) gene expression and generated stable transgenic lines in tomato and Arabidopsis. Histochemical and fluorometric assays validated the fruit-specific expression of RIP1 as the highest GUS activity was found in red ripe tomatoes. Similarly, we detected high levels of GUS activity in the siliques of Arabidopsis. On the contrary, weak GUS activity was found in the flower buds in both tomato and Arabidopsis. To characterize the specific regions of the RIP1 promoter that might be essential for its maximum activity and specificity in fruits, we made stable transgenic lines of tomato and Arabidopsis with 5'-deletion constructs. Characterization of these transgenic plants showed that the full length promoter is essential for its function. Overall, we report the identification and characterization of a ripening-induced promoter of tomato, which would be useful for the controlled manipulation of the ripening-related agronomic traits in genetic manipulation studies in future.
引用
收藏
页码:145 / 156
页数:12
相关论文
共 47 条
[1]   Transcriptome and selected metabolite analyses reveal multiple points of ethylene control during tomato fruit development [J].
Alba, R ;
Payton, P ;
Fei, ZJ ;
McQuinn, R ;
Debbie, P ;
Martin, GB ;
Tanksley, SD ;
Giovannoni, JJ .
PLANT CELL, 2005, 17 (11) :2954-2965
[2]   Characterization of a pollen-preferential gene OSIAGP from rice (Oryza sativa L. subspecies indica) coding for an arabinogalactan protein homologue, and analysis of its promoter activity during pollen development and pollen tube growth [J].
Anand, Saurabh ;
Tyagi, Akhilesh K. .
TRANSGENIC RESEARCH, 2010, 19 (03) :385-397
[3]   Ethylene and fruit ripening [J].
Barry, Cornelius S. ;
Giovannoni, James J. .
JOURNAL OF PLANT GROWTH REGULATION, 2007, 26 (02) :143-159
[4]   The regulation of 1-aminocyclopropane-1-carboxylic acid synthase gene expression during the transition from system-1 to system-2 ethylene synthesis in tomato [J].
Barry, CS ;
Llop-Tous, MI ;
Grierson, D .
PLANT PHYSIOLOGY, 2000, 123 (03) :979-986
[5]   Functional architecture of a late pollen promoter: pollen-specific transcription is developmentally regulated by multiple stage-specific and co-dependent activator elements [J].
Bate, N ;
Twell, D .
PLANT MOLECULAR BIOLOGY, 1998, 37 (05) :859-869
[6]   The Tomato FRUITFULL Homologs TDR4/FUL1 and MBP7/FUL2 Regulate Ethylene-Independent Aspects of Fruit Ripening [J].
Bemer, Marian ;
Karlova, Rumyana ;
Ballester, Ana Rosa ;
Tikunov, Yury M. ;
Bovy, Arnaud G. ;
Wolters-Arts, Mieke ;
Rossetto, Priscilla de Barros ;
Angenent, Gerco C. ;
de Maagd, Ruud A. .
PLANT CELL, 2012, 24 (11) :4437-4451
[7]   THE TOMATO POLYGALACTURONASE GENE AND RIPENING-SPECIFIC EXPRESSION IN TRANSGENIC PLANTS [J].
BIRD, CR ;
SMITH, CJS ;
RAY, JA ;
MOUREAU, P ;
BEVAN, MW ;
BIRD, AS ;
HUGHES, S ;
MORRIS, PC ;
GRIERSON, D ;
SCHUCH, W .
PLANT MOLECULAR BIOLOGY, 1988, 11 (05) :651-662
[8]   Cell wall metabolism in fruit softening and quality and its manipulation in transgenic plants [J].
Brummell, DA ;
Harpster, MH .
PLANT MOLECULAR BIOLOGY, 2001, 47 (1-2) :311-340
[9]  
CHAUDHURY A, 1993, PHYSIOL PLANTARUM, V89, P842, DOI 10.1111/j.1399-3054.1993.tb05294.x
[10]   Floral dip:: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana [J].
Clough, SJ ;
Bent, AF .
PLANT JOURNAL, 1998, 16 (06) :735-743