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1.
BMC Plant Biol ; 16(1): 225, 2016 10 13.
Artículo en Inglés | MEDLINE | ID: mdl-27733139

RESUMEN

BACKGROUND: The ability to modulate levels of individual fatty acids within soybean oil has potential to increase shelf-life and frying stability and to improve nutritional characteristics. Commodity soybean oil contains high levels of polyunsaturated linoleic and linolenic acid, which contribute to oxidative instability - a problem that has been addressed through partial hydrogenation. However, partial hydrogenation increases levels of trans-fatty acids, which have been associated with cardiovascular disease. Previously, we generated soybean lines with knockout mutations within fatty acid desaturase 2-1A (FAD2-1A) and FAD2-1B genes, resulting in oil with increased levels of monounsaturated oleic acid (18:1) and decreased levels of linoleic (18:2) and linolenic acid (18:3). Here, we stack mutations within FAD2-1A and FAD2-1B with mutations in fatty acid desaturase 3A (FAD3A) to further decrease levels of linolenic acid. Mutations were introduced into FAD3A by directly delivering TALENs into fad2-1a fad2-1b soybean plants. RESULTS: Oil from fad2-1a fad2-1b fad3a plants had significantly lower levels of linolenic acid (2.5 %), as compared to fad2-1a fad2-1b plants (4.7 %). Furthermore, oil had significantly lower levels of linoleic acid (2.7 % compared to 5.1 %) and significantly higher levels of oleic acid (82.2 % compared to 77.5 %). Transgene-free fad2-1a fad2-1b fad3a soybean lines were identified. CONCLUSIONS: The methods presented here provide an efficient means for using sequence-specific nucleases to stack quality traits in soybean. The resulting product comprised oleic acid levels above 80 % and linoleic and linolenic acid levels below 3 %.


Asunto(s)
Glycine max/metabolismo , Ácido Oléico/genética , Proteínas de Plantas/metabolismo , Aceite de Soja/genética , Ácido alfa-Linolénico/genética , Edición Génica , Mutación/genética , Ácido Oléico/metabolismo , Proteínas de Plantas/genética , Aceite de Soja/metabolismo , Glycine max/genética , Ácido alfa-Linolénico/metabolismo
2.
Plant Biotechnol J ; 14(1): 169-76, 2016 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-25846201

RESUMEN

Cold storage of potato tubers is commonly used to reduce sprouting and extend postharvest shelf life. However, cold temperature stimulates the accumulation of reducing sugars in potato tubers. Upon high-temperature processing, these reducing sugars react with free amino acids, resulting in brown, bitter-tasting products and elevated levels of acrylamide--a potential carcinogen. To minimize the accumulation of reducing sugars, RNA interference (RNAi) technology was used to silence the vacuolar invertase gene (VInv), which encodes a protein that breaks down sucrose to glucose and fructose. Because RNAi often results in incomplete gene silencing and requires the plant to be transgenic, here we used transcription activator-like effector nucleases (TALENs) to knockout VInv within the commercial potato variety, Ranger Russet. We isolated 18 plants containing mutations in at least one VInv allele, and five of these plants had mutations in all VInv alleles. Tubers from full VInv-knockout plants had undetectable levels of reducing sugars, and processed chips contained reduced levels of acrylamide and were lightly coloured. Furthermore, seven of the 18 modified plant lines appeared to contain no TALEN DNA insertions in the potato genome. These results provide a framework for using TALENs to quickly improve traits in commercially relevant autotetraploid potato lines.


Asunto(s)
Frío , Criopreservación/métodos , Técnicas de Inactivación de Genes , Marcación de Gen , Solanum tuberosum/genética , Acrilamida/análisis , Secuencia de Bases , Carbohidratos/análisis , Genes de Plantas , Mutación/genética , Plantas Modificadas Genéticamente , Nucleasas de los Efectores Tipo Activadores de la Transcripción/metabolismo , Vacuolas/enzimología , beta-Fructofuranosidasa/genética
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