Study / S54SW390C2020-05-14

Identification of Plant Enhancers and Their Constituent Elements by STARR-seq in Tobacco Leaves

Tobias Jores, Jackson Tonnies, Michael W. Dorrity, Josh T. Cuperus, Stanley Fields et al.

About this study

Genetic engineering of cis-regulatory elements in crop plants is a promising strategy to ensure food security. However, such engineering is currently hindered by our limited knowledge of plant cis-regulatory elements. Here, we adapted self-transcribing active regulatory region sequencing (STARR-seq)—a technology for the high-throughput identification of enhancers—for its use in transiently transformed tobacco (Nicotiana benthamiana) leaves. We demonstrate that the optimal placement in the reporter construct of enhancer sequences from a plant virus, pea (Pisum sativum) and wheat (Triticum aestivum), was just upstream of a minimal promoter and that none of these four known enhancers was active in the 3′ untranslated region of the reporter gene. The optimized assay sensitively identified small DNA regions containing each of the four enhancers, including two whose activity was stimulated by light. Furthermore, we coupled the assay to saturation mutagenesis to pinpoint functional regions within an enhancer, which we recombined to create synthetic enhancers. Our results describe an approach to define enhancer properties that can be performed in potentially any plant species or tissue transformable by Agrobacterium and that can use regulatory DNA derived from any plant genome.

Full author list & citation

Tobias Jores, Jackson Tonnies, Michael W. Dorrity, Josh T. Cuperus, Stanley Fields, Christine Queitsch. Identification of Plant Enhancers and Their Constituent Elements by STARR-seq in Tobacco Leaves. 2020-05-14. https://doi.org/10.1105/tpc.20.00155

Experiments 2

E5IXX4105

Short pZS*11_4enh fragment library in tobacco leaves

A Tn5-fragmented pZS*11_4enh library containing four known plant enhancers was inserted upstream of the 35S minimal promoter and assayed in transiently transformed tobacco leaves. This table summarizes the public Fig5D_Rep1 plasmid-input and cDNA barcode counts at unique fragment coordinates after package QC.

Standard STARR-seqNCBITaxon:4100
Explore data
E6XFSCR44

35S enhancer position and orientation library in tobacco leaves

A barcoded STARR-seq library tested one or two copies of the cauliflower mosaic virus 35S enhancer in forward or reverse orientation at the up, down, up2, and down2 positions of the reporter construct. This table summarizes the public Fig1B_Rep1 plasmid-input and cDNA barcode counts after package QC and aggregates them to construct conditions.

Standard STARR-seqNCBITaxon:4100
Explore data

Raw source data 28 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 28 files (ZIP)github_repository/example_files/barcodes_Fig1B_Rep1_cDNA.countgithub_repository/example_files/barcodes_Fig1B_Rep1_input.countgithub_repository/example_files/barcodes_Fig5D_Rep1_cDNA.countgithub_repository/example_files/barcodes_Fig5D_Rep1_input.countgithub_repository/extract_barcodes.shgithub_repository/README.mdgithub_repository/subassembly_files/pZS11_4enh.fagithub_repository/subassembly_files/subassembly_35Senh_mutagenesis.shgithub_repository/subassembly_files/subassembly_35Senh_mutagenesis_Fig6C.tsvgithub_repository/subassembly_files/subassembly_35Senh_recombination.shgithub_repository/subassembly_files/subassembly_35Senh_recombination_Fig6E.tsvgithub_repository/subassembly_files/subassembly_35Spro_mutagenesis.shgithub_repository/subassembly_files/subassembly_35Spro_mutagenesis_Fig6A.tsvgithub_repository/subassembly_files/subassembly_distance_35Senh_Fig1C.tsvgithub_repository/subassembly_files/subassembly_dual_enhancer_Fig3D.tsvgithub_repository/subassembly_files/subassembly_intron_Fig3C.tsvgithub_repository/subassembly_files/subassembly_light_plant_enhancers_Fig4B.tsvgithub_repository/subassembly_files/subassembly_position_35Senh_Fig1B.tsvgithub_repository/subassembly_files/subassembly_position_plant_enhancers_Fig1D.tsvgithub_repository/subassembly_files/subassembly_pZS11_4enh_fragments.shgithub_repository/subassembly_files/subassembly_pZS11_4enh_fragments_long_Fig5B.tsvgithub_repository/subassembly_files/subassembly_pZS11_4enh_fragments_short_Fig5D.tsvgithub_repository/subassembly_files/subassembly_TCV-USR_Fig3B.tsvgithub_repository/subassembly_files/subassembly_Zm_protoplasts_Fig2B.tsvgithub_repository/tobacco-STARR-seq_analysis.Rgithub_repository_tree.jsonPRJNA627258_SRA_runinfo.csvsource_notes.txt

Cite OpenMPRA

Cite the OpenMPRA database. Include your access date because the collection changes over time.

Please also cite the source studies when using their data.