Kumar Pavan, Jander Georg
Boyce Thompson Institute for Plant Research , 533 Tower Road, Ithaca, New York 14853, United States.
J Agric Food Chem. 2017 Apr 5;65(13):2737-2742. doi: 10.1021/acs.jafc.7b00272. Epub 2017 Mar 27.
Potatoes (Solanum tuberosum) are deficient in methionine, an essential amino acid in human and animal diets. Higher methionine levels increase the nutritional quality and promote the typically pleasant aroma associated with baked and fried potatoes. Several attempts have been made to elevate tuber methionine levels by genetic engineering of methionine biosynthesis and catabolism. Overexpressing Arabidopsis thaliana cystathionine γ-synthase (AtCGS) in S. tuberosum up-regulates a rate-limiting step of methionine biosynthesis and increases tuber methionine levels. Alternatively, silencing S. tuberosum methionine γ-lyase (StMGL), which causes decreased degradation of methionine into 2-ketobutyrate, also increases methionine levels. Concurrently enhancing biosynthesis and reducing degradation were predicted to provide further increases in tuber methionine content. Here we report that S. tuberosum cv. Désirée plants with AtCGS overexpression and StMGL silenced by RNA interference are morphologically normal and accumulate higher free methionine levels than either single-transgenic line.
土豆(Solanum tuberosum)缺乏蛋氨酸,而蛋氨酸是人类和动物饮食中的一种必需氨基酸。较高的蛋氨酸水平可提高营养价值,并促进与烘焙和油炸土豆相关的典型宜人香气。人们已经尝试通过对蛋氨酸生物合成和分解代谢进行基因工程来提高块茎中的蛋氨酸水平。在土豆中过表达拟南芥胱硫醚γ-合酶(AtCGS)可上调蛋氨酸生物合成的限速步骤,并提高块茎中的蛋氨酸水平。另外,使土豆蛋氨酸γ-裂解酶(StMGL)沉默,这会导致蛋氨酸降解为2-酮丁酸的过程减少,也会提高蛋氨酸水平。预计同时增强生物合成和减少降解可进一步提高块茎中的蛋氨酸含量。在此,我们报道,通过RNA干扰使AtCGS过表达且StMGL沉默的土豆品种迪西蕾植株形态正常,且积累的游离蛋氨酸水平高于任一单转基因株系。