» Articles » PMID: 11069700

Technical Advance: An Estrogen Receptor-based Transactivator XVE Mediates Highly Inducible Gene Expression in Transgenic Plants

Overview
Journal Plant J
Date 2000 Nov 9
PMID 11069700
Citations 474
Authors
Affiliations
Soon will be listed here.
Abstract

We have developed an estrogen receptor-based chemical-inducible system for use in transgenic plants. A chimeric transcription activator, XVE, was assembled by fusion of the DNA-binding domain of the bacterial repressor LexA (X), the acidic transactivating domain of VP16 (V) and the regulatory region of the human estrogen receptor (E; ER). The transactivating activity of the chimeric XVE factor, whose expression was controlled by the strong constitutive promoter G10-90, was strictly regulated by estrogens. In transgenic Arabidopsis and tobacco plants, estradiol-activated XVE can stimulate expression of a GFP reporter gene controlled by the target promoter, which consists of eight copies of the LexA operator fused upstream of the -46 35S minimal promoter. Upon induction by estradiol, GFP expression levels can be eightfold higher than that transcribed from a 35S promoter, whereas the uninduced controls have no detectable GFP transcripts, as monitored by Northern blot analysis. Neither toxic nor adverse physiological effects of the XVE system have been observed in transgenic Arabidopsis plants under all the conditions tested. The XVE system thus appears to be a reliable and efficient chemical-inducible system for regulating transgene expression in plants.

Citing Articles

Synthetic gene circuits in plants: recent advances and challenges.

Khan A, Lister R Quant Plant Biol. 2025; 6:e6.

PMID: 40070723 PMC: 11894408. DOI: 10.1017/qpb.2025.3.


The switch-liker's guide to plant synthetic gene circuits.

Lloyd J, Khan A, Lister R Plant J. 2025; 121(5):e70090.

PMID: 40052500 PMC: 11887007. DOI: 10.1111/tpj.70090.


A chromosome-level reference genome facilitates the discovery of clubroot-resistant gene in Chinese cabbage.

Yang S, Wang X, Wang Z, Zhang W, Su H, Wei X Hortic Res. 2025; 12(3):uhae338.

PMID: 40046320 PMC: 11879649. DOI: 10.1093/hr/uhae338.


Control of plasma membrane-associated actin polymerization specifies the pattern of the cell wall in xylem vessels.

Kijima S, Sasaki T, Kikushima Y, Inoue D, Sakamoto S, Kondo Y Nat Commun. 2025; 16(1):1921.

PMID: 40011437 PMC: 11865516. DOI: 10.1038/s41467-025-56866-y.


Improved plant biomass production under low nitrogen conditions through conditional accumulation of the second messenger, guanosine tetraphosphate, in chloroplasts and mitochondria.

Goto M, Nemoto T, Sakoda K, Sakurai A, Imamura S, Masuda S Front Plant Sci. 2025; 15:1524665.

PMID: 39872205 PMC: 11770007. DOI: 10.3389/fpls.2024.1524665.