赖氨酸
生物
生物合成
天冬酰胺
生物化学
食品科学
贮藏蛋白
转基因玉米
转基因作物
氨基酸
转基因
生物技术
酶
基因
作者
Shihshieh Huang,Diane E. Kruger,Alessandra Frizzi,Robert L. D’Ordine,Cheryl A. Florida,W. Robert Adams,Wayne E. Brown,Michael H. Luethy
标识
DOI:10.1111/j.1467-7652.2005.00146.x
摘要
Corn is one of the major crops in the world, but its low lysine content is often problematic for animal consumption. While exogenous lysine supplementation is still the most common solution for today's feed corn, high-lysine corn has been developed through genetic research and biotechnology. Reducing the lysine-poor seed storage proteins, zeins, or expressing a deregulated lysine biosynthetic enzyme, CordapA, has shown increased total lysine or free lysine content in the grains of modified corn plants, respectively. Here, by combining these two approaches through genetic crosses, the total lysine content has more than doubled in F1 progeny. We also observe a synergy between the transgenic zein reduction and the enhanced lysine biosynthesis by CordapA expression. The zein reduction plants are found to accumulate higher levels of aspartate, asparagine and glutamate, and therefore, provide excess precursors for the enhanced lysine biosynthesis.
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