| Literature DB >> 16125431 |
Balasulojini Karunanandaa1, Qungang Qi, Ming Hao, Susan R Baszis, Pamela K Jensen, Yun-Hua H Wong, Jian Jiang, Mylavarapu Venkatramesh, Kenneth J Gruys, Farhad Moshiri, Dusty Post-Beittenmiller, James D Weiss, Henry E Valentin.
Abstract
Tocochromanols (tocopherols and tocotrienols) are important lipid soluble antioxidants and are an essential part of the mammalian diet. Oilseeds are particularly rich in tocochromanols with an average concentration 10-fold higher than other plant tissues. Here we describe a systematic approach to identify rate-limiting reactions in the tocochromanol biosynthetic pathway, and the application of this knowledge to engineer tocochromanol biosynthesis in oilseed crops. Seed-specific expression of genes encoding limiting tocochromanol pathway enzymes in soybean increased total tocochromanols up to 15-fold from 320 ng/mg in WT seed to 4800 ng/mg in seed from the best performing event. Although WT soybean seed contain only traces of tocotrienols, these transgenic soybean accumulated up to 94% of their tocochromanols as tocotrienols. Upon crossing transgenic high tocochromanol soybean with transgenic high alpha-tocopherol soybean, the vitamin E activity in the best performing F2-seed was calculated to be 11-fold higher than the average WT soybean seed vitamin E activity.Entities:
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Year: 2005 PMID: 16125431 DOI: 10.1016/j.ymben.2005.05.005
Source DB: PubMed Journal: Metab Eng ISSN: 1096-7176 Impact factor: 9.783