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Why Is Golden Rice Golden (Yellow) Instead of Red?

机译:为什么金米是金(黄色)而不是红色?

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摘要

The endosperm of Golden Rice (Oryza sativa) is yellow due to the accumulation of β-carotene (provitamin A) and xanthophylls. The product of the two carotenoid biosynthesis transgenes used in Golden Rice, phytoene synthase (PSY) and the bacterial carotene desaturase (CRTI), is lycopene, which has a red color. The absence of lycopene in Golden Rice shows that the pathway proceeds beyond the transgenic end point and thus that the endogenous pathway must also be acting. By using TaqMan real-time PCR, we show in wild-type rice endosperm the mRNA expression of the relevant carotenoid biosynthetic enzymes encoding phytoene desaturase, ζ-carotene desaturase, carotene cis-trans-isomerase, β-lycopene cyclase, and β-carotene hydroxylase; only PSY mRNA was virtually absent. We show that the transgenic phenotype is not due to up-regulation of expression of the endogenous rice pathway in response to the transgenes, as was suggested to be the case in tomato (Lycopersicon esculentum) fruit, where CRTI expression resulted in a similar carotenoid phenomenon. This means that β-carotene and xanthophyll formation in Golden Rice relies on the activity of constitutively expressed intrinsic rice genes (carotene cis-trans-isomerase, α/β-lycopene cyclase, β-carotene hydroxylase). PSY needs to be supplemented and the need for the CrtI transgene in Golden Rice is presumably due to insufficient activity of the phytoene desaturase and/or ζ-carotene desaturase enzyme in endosperm. The effect of CRTI expression was also investigated in leaves of transgenic rice and Arabidopsis (Arabidopsis thaliana). Here, again, the mRNA levels of intrinsic carotenogenic enzymes remained unaffected; nevertheless, the carotenoid pattern changed, showing a decrease in lutein, while the β-carotene-derived xanthophylls increased. This shift correlated with CRTI-expression and is most likely governed at the enzyme level by lycopene-cis-trans-isomerism. Possible implications are discussed.
机译:由于β-胡萝卜素(原蛋白A)和叶黄素的积累,金稻(Oryza sativa)的胚乳呈黄色。金稻中使用的两个类胡萝卜素生物合成转基因,八氢番茄红素合酶(PSY)和细菌性胡萝卜素去饱和酶(CRTI)的产物是番茄红素,其为红色。金稻中番茄红素的缺乏表明该途径超出了转基因终点,因此内源性途径也必须起作用。通过使用TaqMan实时PCR,我们在野生型稻胚乳中显示了编码类胡萝卜素去饱和酶,ζ-胡萝卜素去饱和酶,胡萝卜素顺反异构酶,β-番茄红素环化酶和β-胡萝卜素的相关类胡萝卜素生物合成酶的mRNA表达。羟化酶实际上几乎没有PSY mRNA。我们表明转基因表型不是由于内源水稻途径响应转基因而表达上调所致,正如番茄(Lycopersicon esculentum)果实中的情况一样,其中CRTI表达导致类似的类胡萝卜素现象。这意味着金稻中的β-胡萝卜素和叶黄素的形成依赖于组成型表达的内在水稻基因(胡萝卜素顺反异构酶,α/β-番茄红素环化酶,β-胡萝卜素羟化酶)的活性。 PSY需要补充,并且金稻中CrtI转基因的需要大概是由于胚乳中的植烯脱氢酶和/或ζ-胡萝卜素脱氢酶的活性不足。还研究了转基因水稻和拟南芥(Arabidopsis thaliana)叶片中CRTI表达的影响。在此,内源性类胡萝卜素酶的mRNA水平仍然保持不变。然而,类胡萝卜素模式发生了变化,表明叶黄素减少,而β-胡萝卜素衍生的叶黄素增加。该变化与CRTI表达相关,并且最有可能在酶水平上受番茄红素-顺-反-异构现象支配。讨论了可能的含义。

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