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).

Mutagenesis of the FAE1 genes significantly changes fatty acid composition in seeds of Camelina sativa


Typ / Jahr

Journal Article / 2018

Autoren

Ozseyhan, Mehmet E.; Kang, Jinling; Mu, Xiaopeng; Lu, Chaofu

Abstract

Camelina sativa is a re-emerging low-input oilseed crop that has great potentials. It is necessary to ameliorate camelina oils for optimized fatty acid composition that can meet different application requirements. Camelina seed contains significant amounts of C20-C24 very long-chain fatty acids (VLCFAs) that may not be desirable. We demonstrated that these VLCFAs can be effectively reduced by deactivating the Fatty Acid Elongase1 (FAE1) in camelina. The allohexaploid camelina contains three alleles of FAE1 genes. Ethyl methanesulfonate (EMS) induced mutation at the FAE1-B gene caused over 60% reduction of VLCFAs in seed. Homozygous knockout mutants were successfully created in a single generation by simultaneously targeting three FAE1 alleles using the CRISPR technology with an egg cell-specific Cas9 expression. VLCFAs were reduced to less than 2% of total fatty acids compared to over 22% in the wild type, and the C18 unsaturated fatty acids were concomitantly increased. The fae1 mutants were indistinguishable from wild type in seed physiology and plant growth. This study demonstrated that the CRISPR/Cas9 technology can be effectively applied to the polyploid crop camelina to rapidly obtain desired traits such as optimal fatty acid composition in its seed oil. Knocking out FAE1 also provides a means to increase the levels of oleic acid or α-linolenic acid in camelina oils that are desirable for industrial or food/feed uses.

Keywords
Camelina sativa; CRISPR/Cas9; Ethyl methanesulfonate; FAE1; Fatty Acids; mutagenesis
Periodical
Plant physiology and biochemistry : PPB
Periodical Number
Page range
1–7
Volume
123
DOI
10.1016/j.plaphy.2017.11.021

Techniques

ID Corresponding Author
Country
Plant Species GE Technique
Sequence Identifier
Trait
Type of Alteration
Progress in Research
Key Topic
783 Lu, Chaofu
USA
Camelina sativa CRISPR/Cas9
FAE1-A
Increased levels of oleic acid and α-linolenic acid
SDN1
Market-oriented
Product quality
784 Lu, Chaofu
USA
Camelina sativa CRISPR/Cas9
FAE1-B
Increased levels of oleic acid and α-linolenic acid
SDN1
Market-oriented
Product quality
785 Lu, Chaofu
USA
Camelina sativa CRISPR/Cas9
FAE1-C
Increased levels of oleic acid and α-linolenic acid
SDN1
Market-oriented
Product quality