» Articles » PMID: 11576441

Construct Design for Efficient, Effective and High-throughput Gene Silencing in Plants

Overview
Journal Plant J
Date 2001 Sep 29
PMID 11576441
Citations 553
Authors
Affiliations
Soon will be listed here.
Abstract

Post-transcriptional silencing of plant genes using anti-sense or co-suppression constructs usually results in only a modest proportion of silenced individuals. Recent work has demonstrated the potential for constructs encoding self-complementary 'hairpin' RNA (hpRNA) to efficiently silence genes. In this study we examine design rules for efficient gene silencing, in terms of both the proportion of independent transgenic plants showing silencing, and the degree of silencing. Using hpRNA constructs containing sense/anti-sense arms ranging from 98 to 853 nt gave efficient silencing in a wide range of plant species, and inclusion of an intron in these constructs had a consistently enhancing effect. Intron-containing constructs (ihpRNA) generally gave 90-100% of independent transgenic plants showing silencing. The degree of silencing with these constructs was much greater than that obtained using either co-suppression or anti-sense constructs. We have made a generic vector, pHANNIBAL, that allows a simple, single PCR product from a gene of interest to be easily converted into a highly effective ihpRNA silencing construct. We have also created a high-throughput vector, pHELLSGATE, that should facilitate the cloning of gene libraries or large numbers of defined genes, such as those in EST collections, using an in vitro recombinase system. This system may facilitate the large-scale determination and discovery of plant gene functions in the same way as RNAi is being used to examine gene function in Caenorhabditis elegans.

Citing Articles

RNAi and genome editing of sugarcane: Progress and prospects.

Brant E, Zuniga-Soto E, Altpeter F Plant J. 2025; 121(5):e70048.

PMID: 40051334 PMC: 11886501. DOI: 10.1111/tpj.70048.


The Deubiquitinating Enzyme AMSH1 Contributes to Plant Immunity Through Regulating the Stability of BDA1.

Wang Y, Huang W, Li X, Zhang Y Plants (Basel). 2025; 14(3).

PMID: 39942991 PMC: 11819993. DOI: 10.3390/plants14030429.


RNAi-mediated downregulation of endogenous 4-coumarate: CoA ligase activity in Sorghum bicolor to alter the lignin content, which augmented the carbohydrate content and growth.

Bhanupriya C, Kar S Planta. 2025; 261(2):30.

PMID: 39794647 DOI: 10.1007/s00425-024-04603-y.


The Defective in Autoregulation (DAR) gene of Medicago truncatula encodes a protein involved in regulating nodulation and arbuscular mycorrhiza.

Schnabel E, Bashyal S, Corbett C, Kassaw T, Nowak S, Rosales-Garcia R BMC Plant Biol. 2024; 24(1):766.

PMID: 39123119 PMC: 11316349. DOI: 10.1186/s12870-024-05479-6.


RNAi-mediated downregulation of AcCENH3 can induce in vivo haploids in onion (Allium cepa L.).

Manape T, Satheesh V, Somasundaram S, Soumia P, Khade Y, Mainkar P Sci Rep. 2024; 14(1):14481.

PMID: 38914600 PMC: 11196721. DOI: 10.1038/s41598-024-64432-7.