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Seed storage proteins and approaches for improvement of their nutritional quality by genetic engineering [Review]

机译:种子贮藏蛋白及其通过基因工程改善营养品质的方法[综述]

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Seed storage proteins of grain crops meet the major dietary protein requirement of over half of the world population, However, seed proteins in general are deficient in some essential amino acids and hence are of poor nutritional quality. Therefore, intensive research is going on to isolate and characterize these proteins and their genes, and to produce transgenic crop plants with modified seed protein genes, with a view to improving their nutritive value as human food and animal feed. Many seed storage protein genes from cereals, legumes and oil seeds have been isolated, sequenced and their regulation has been studied by promoter deletion assay in transgenic plants. The amino acid composition of seed proteins of some transgenic crops has been marginally improved by modifying these genes for more methionine and lysine codons by site-directed mutagenesis or by introducing heterologous genes. The synthesis, processing and targeting of the introduced gene products and their stable expression in successive generations of transgenic plants have also been studied, The potentiality of such genetic engineering approaches has been amply demonstrated, But problems of control over copy number and site of integration of the foreign gene and the position effect of the changes in the amino acid in the polypeptide chain on the final level of expression and deposition of the correctly processed storage protein remains unsolved, More basic research is needed before large-scale application of this approach for improvement of nutritional quality of seed proteins becomes possible. [References: 169]
机译:谷物作物的种子贮藏蛋白满足世界一半以上人口的主要饮食蛋白需求,但是,种子蛋白通常缺乏某些必需氨基酸,因此营养质量较差。因此,正在进行深入的研究以分离和表征这些蛋白质及其基因,并生产具有修饰的种子蛋白质基因的转基因作物,以提高其作为人类食物和动物饲料的营养价值。已经从谷物,豆类和油料种子中分离了许多种子贮藏蛋白基因,对其进行了测序,并通过启动子缺失试验在转基因植物中研究了它们的调控。通过定点诱变或通过引入异源基因,通过修饰这些基因以获得更多的蛋氨酸和赖氨酸密码子,已略微改善了某些转基因作物种子蛋白的氨基酸组成。还研究了导入的基因产物的合成,加工和靶向以及它们在连续世代转基因植物中的稳定表达,已充分证明了这种基因工程方法的潜力,但控制拷贝数和整合位点存在问题。尚未解决外源基因和多肽链氨基酸变化对正确加工的存储蛋白最终表达和沉积的最终位置的影响,在大规模应用此方法进行改进之前,需要更多基础研究种子蛋白质的营养品质成为可能。 [参考:169]

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