Repositorium

What is a repositorium?

The repositorium is a searchable database that provides data on relevant articles from journals, company web pages and web pages of governmental agencies about studies/applications of genome-editing in model plants and agricultural crops in the period January 1996 to May 2018. Search options are article type, technique, plant, traits or free text. The repositorium is based on the systematic map of Dominik Modrzejewski et al., published in the journal environmental evidence. (Download article PDF).

Efficient in planta gene targeting in tomato using geminiviral replicons and the CRISPR/Cas9 system


Typ / Jahr

Journal Article / 2018

Autoren

Dahan-Meir, Tal; Filler-Hayut, Shdema; Melamed-Bessudo, Cathy; Bocobza, Samuel; Czosnek, Henryk; Aharoni, Asaph; Levy, Avraham A.

Abstract

Current breeding relies mostly on random mutagenesis and recombination to generate novel genetic variation. However, targeted genome editing is becoming an increasingly important tool for precise plant breeding. Using the CRISPR-Cas system combined with the bean yellow dwarf virus rolling circle replicon, we optimized a method for targeted mutagenesis and gene replacement in tomato. The carotenoid isomerase (CRTISO) and phytoene synthase 1 (PSY1) genes from the carotenoid biosynthesis pathway were chosen as targets due to their easily detectable change of phenotype. We took advantage of the geminiviral replicon amplification as a means to provide a large amount of donor template for the repair of a CRISPR-Casinduced DNA double-strand break (DSB) in the target gene, via homologous recombination (HR). Mutagenesis experiments, performed in the Micro-Tom variety, achieved precise modification of the CRTISO and PSY1 loci at an efficiency of up to 90%. In the gene targeting (GT) experiments, our target was a fast-neutroninduced crtiso allele that contained a 281-bp deletion. This deletion was repaired with the wild-type sequence through HR between the CRISPR-Cas-induced DSB in the crtiso target and the amplified donor in 25% of the plants transformed. This shows that efficient GT can be achieved in the absence of selection markers or reporters using a single and modular construct that is adaptable to other tomato targets and other crops.

Keywords
CRISPR-Cas9; editing.; geminiviral replicons; Gene replacement; genome; homologous recombination
Periodical
The Plant Journal
Periodical Number
1
Page range
5–16
Volume
95
DOI
10.1111/tpj.13932

Techniques

ID Corresponding Author
Country
Plant Species GE Technique
Sequence Identifier
Trait
Type of Alteration
Progress in Research
Key Topic
679 Levy, Avraham A.
Israel
Solanum lycopersicum CRISPR/Cas9
CRTISO
Orange fruits, yellowish young leaves and pale petals
SDN3
Market-oriented
Product quality
680 Levy, Avraham A.
Israel
Solanum lycopersicum CRISPR/Cas9
PSY1
Yellow fruits
SDN3
Market-oriented
Product quality