FIELD: biotechnology.
SUBSTANCE: present invention relates to genetic engineering of plants, namely to genetic markers detecting genetic modifications of the SSIIA gene, obtained using CRISPR/Cas9 on genome of durum wheat (Triticum durum) and winter and spring triticale (×Triticosecale). Disclosed is a method based on carrying out a polymerase chain reaction (PCR) with oligonucleotide primers, flanking an intended editing site, with subsequent detection of PCR results using capillary electrophoresis.
EFFECT: invention enables detecting SSIIA gene editing events in cereals resulting from editing using the CRISPR/Cas9 system.
3 cl, 5 dwg, 1 tbl, 2 ex
| Title | Year | Author | Number | 
|---|---|---|---|
| METHOD FOR DETECTING RSR1 GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2833967C1 | 
| METHOD FOR DETECTING GBSSI GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2834229C1 | 
| METHOD FOR DETECTING SBEIIA GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2833965C1 | 
| METHOD FOR DETECTING ISA1 GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2833963C1 | 
| METHOD FOR DETECTING ISA1 GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2833966C1 | 
| METHOD FOR DETECTING RSR1 GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2833964C1 | 
| METHOD FOR DETECTING GBSSI GENE EDITING EVENTS IN CEREALS USING SET OF OLIGONUCLEOTIDE SEQUENCES | 2023 | 
 | RU2817377C1 | 
| MOLECULE OF RNA-CONDUCTOR SGRNA FOR INTRODUCING MUTATIONS INTO CONSERVED REGION OF COMMON WHEAT PPD-D1 GENE PROMOTER REGION USING CRISPR/CAS9 GENOME EDITING SYSTEM | 2024 | 
 | RU2822358C1 | 
| METHOD OF OBTAINING POTATO PLANT WITH BIALLELIC MUTATIONS IN EDR1 GENE ENCODING REGION USING CRISPR/CAS9 PLANT GENOME EDITING METHOD | 2022 | 
 | RU2817376C2 | 
| METHOD OF OBTAINING POTATO PLANT WITH TETRAALLEL MUTATIONS IN EDR1 GENE ENCODING REGION USING CRISPR/CAS9 PLANT GENOME EDITING TECHNOLOGY | 2022 | 
 | RU2817384C2 | 
Authors
Dates
2025-05-07—Published
2023-12-01—Filed