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TRANSGENIC CANOLA AND SOYBEAN SEEDS WITH INCREASED LYSINE

机译:赖氨酸含量增加的转基因卡诺拉和大豆种子

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摘要

We have increased the lysine content in the seeds of canola and soybean plants by circumventing the normal feedback regulation of two enzymes of the biosynthetic pathway, aspartokinase (AK) and dihydrodipicolinic acid synthase (DHDPS). Lysine-feedback-insensitive bacterial DHDPS and AK enzymes encoded by the Corynebacterium dapA gene and a mutant E. coli lysC gene, respectively, were linked to a chloroplast transit peptide and expressed from a seed-specific promoter in transgenic canola and soybean seeds. Expression of Corynebacterium DHDPS resulted in more than a 100-fold increase in the accumulation of free lysine in the seeds of canola; total seed lysine content approximately doubled. Expression of Corynebacterium DHDPS plus lysine-insensitive E. coli AK in soybean transformants similarly caused several hundred-fold increases in free lysine and increased total seed lysine content by as much as 5-fold, Accumulation of alpha-amino adipic acid (AA) in canola and saccharopine in soybean, which are intermediates in lysine catabolism, was also observed.
机译:通过规避生物合成途径的两种酶(天冬氨酸激酶(AK)和二氢二吡啶甲酸合酶(DHDPS))的正常反馈调节,我们提高了油菜籽和大豆植物种子中的赖氨酸含量。分别由棒状杆菌dapA基因和突变的大肠杆菌lysC基因编码的对赖氨酸反馈不敏感的细菌DHDPS和AK酶与叶绿体转运肽相连,并从转基因油菜和大豆种子中的种子特异性启动子表达。棒状杆菌DHDPS的表达导致油菜籽中游离赖氨酸的积累增加了100倍以上;种子总赖氨酸含量大约增加了一倍。大豆转化体中棒状杆菌DHDPS加上不依赖赖氨酸的大肠杆菌AK的表达同样导致游离赖氨酸增加数百倍,种子总赖氨酸含量增加多达5倍,α-氨基己二酸(AA)的积累还观察到大豆中的低芥酸菜子和糖精是赖氨酸分解代谢的中间体。

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