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Are high-lysine cereal crops still a challenge?

机译:高赖氨酸谷物作物仍然是一个挑战吗?

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The essential amino acids lysine and threonine are synthesized in higher plants via a pathway starting with aspartate that also leads to the formation of methionine and isoleucine. Lysine is one of most limiting amino acids in plants consumed by humans and livestock. Recent genetic, molecular, and biochemical evidence suggests that lysine synthesis and catabolism are regulated by complex mechanisms. Early kinetic studies utilizing mutants and transgenic plants that over-accumulate lysine have indicated that the major step for the regulation of lysine biosynthesis is at the enzyme dihydrodipicolinate synthase. Despite this tight regulation, recent strong evidence indicates that lysine catabolism is also subject to control, particularly in cereal seeds. The challenge of producing crops with a high-lysine concentration in the seeds appeared to be in sight a few years ago. However, apart from the quality protein maize lines currently commercially available, the release of high-lysine crops has not yet occurred. We are left with the question, is the production of high-lysine crops still a challenge?
机译:必需氨基酸赖氨酸和苏氨酸是在高等植物中通过从天冬氨酸开始的途径合成的,该途径也导致蛋氨酸和异亮氨酸的形成。赖氨酸是人类和牲畜消耗的植物中最限制性的氨基酸之一。最近的遗传,分子和生化证据表明,赖氨酸的合成和分解代谢受复杂机制的调控。利用突变体和过量积累赖氨酸的转基因植物进行的早期动力学研究表明,调节赖氨酸生物合成的主要步骤是二氢吡啶二甲酸合酶。尽管有严格的规定,但最近有力的证据表明,赖氨酸分解代谢也受到控制,特别是在谷物种子中。几年前似乎就面临着生产种子中赖氨酸浓度高的农作物的挑战。然而,除了目前可商购的优质蛋白玉米品系之外,尚未发生高赖氨酸作物的释放。剩下的问题是,高赖氨酸作物的生产仍然是一个挑战吗?

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