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Elevated production of melatonin in transgenic rice seeds expressing rice tryptophan decarboxylase

机译:表达水稻色氨酸脱羧酶的转基因水稻种子中褪黑激素的产量增加

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摘要

A major goal of plant biotechnology is to improve the nutritional qualities of crop plants through metabolic engineering. Melatonin is a well-known bioactive molecule with an array of health-promoting properties, including potent antioxidant capability. To generate melatonin-rich rice plants, we first independently overexpressed three tryptophan decarboxylase isogenes in the rice genome. Melatonin levels were altered in the transgenic lines through overexpression of TDC1, TDC2, and TDC3; TDC3 transgenic seed (TDC3-1) had melatonin concentrations 31-fold higher than those of wild-type seeds. In TDC3 transgenic seedlings, however, only a doubling of melatonin content occurred over wild-type levels. Thus, a seed-specific accumulation of melatonin appears to occur in TDC3 transgenic lines. In addition to increased melatonin content, TDC3 transgenic lines also had enhanced levels of melatonin intermediates including 5-hydroxytryptophan, tryptamine, serotonin, and N-acetylserotonin. In contrast, expression levels of melatonin biosynthetic mRNA did not increase in TDC3 transgenic lines, indicating that increases in melatonin and its intermediates in these lines are attributable exclusively to overexpression of the TDC3 gene.
机译:植物生物技术的主要目标是通过代谢工程来改善农作物的营养品质。褪黑激素是一种众所周知的生物活性分子,具有一系列促进健康的特性,包括有效的抗氧化能力。为了产生富含褪黑激素的水稻植株,我们首先在水稻基因组中独立过表达了三个色氨酸脱羧酶同工酶。通过过度表达TDC1,TDC2和TDC3,改变了转基因品系中的褪黑激素水平; TDC3转基因种子(TDC3-1)的褪黑激素浓度比野生型种子高31倍。但是,在TDC3转基因幼苗中,褪黑激素含量在野生型水平上仅翻倍。因此,褪黑激素的种子特异性积累似乎出现在TDC3转基因品系中。除了增加褪黑激素含量外,TDC3转基因品系还提高了褪黑激素中间体的水平,包括5-羟色氨酸,色胺,色胺和N-乙酰基5-羟色胺。相反,褪黑激素生物合成mRNA的表达水平在TDC3转基因株系中没有增加,表明褪黑激素及其在这些株系中的中间产物的增加完全归因于TDC3基因的过表达。

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