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Inhibiting Lycopene Cyclases to Accumulate Lycopene in High beta-Carotene-Accumulating Dunaliella bardawil

机译:抑制番茄红素环化酶在高β-胡萝卜素积累杜氏杜氏藻中积累番茄红素

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Dunaliella bardawil is characterized as a mass accumulator of beta-carotene through lycopene cyclization by lycopene cyclase catalysis. The present research tried to inhibit the formation of beta-carotene in D. bardawil to accumulate lycopene using triethylamine, a lycopene cyclase inhibitor. Results showed that 50 similar to aEuro parts per thousand 100 ppm triethylamine could steadily trigger lycopene production, and 150 ppm triethylamine treatment for 3 days led to maximum proportion of lycopene with lowest proportion of beta-carotene. The upstream genes (GGPS, PSY, PDS, and ZDS) involved in lycopene biosynthesis of D. bardawil were upregulated after triethylamine treatment for 3 days. While the transcription levels of the downstream genes (LycB, LycE, and ChyB) were decreased at high triethylamine concentration (50 similar to aEuro parts per thousand 150 ppm). Triethylamine seemed to increase lycopene metabolic flow by inhibiting the expressions of LycB and LycE, which stimulated the expression levels of the upstream genes. The increased expression of upstream genes resulting from the inhibition of lycopene cyclases in D. bardawil provides a new insight into the desired pathway of carotenoid synthesis in algae and plants.
机译:杜氏盐藻(Dunaliella bardawil)的特征是通过番茄红素环化酶催化番茄红素的环化作用使β-胡萝卜素大量积累。本研究试图使用番茄红素环化酶抑制剂三乙胺抑制巴尔达维尔氏菌中β-胡萝卜素的形成,从而积累番茄红素。结果表明,每千分之100的三乙胺中有50欧元左右的欧元可以稳定地触发番茄红素的产生,而150 ppm的三乙胺处理3天导致番茄红素的比例最大,而β-胡萝卜素的比例最低。三乙胺处理3天后,参与D. bardawil番茄红素生物合成的上游基因(GGPS,PSY,PDS和ZDS)被上调。在高三乙胺浓度下(50类似于千分之150的欧元),下游基因(LycB,LycE和ChyB)的转录水平降低。三乙胺似乎通过抑制LycB和LycE的表达来增加番茄红素的代谢流量,从而刺激了上游基因的表达水平。由于抑制番茄中的番茄红素环化酶而使上游基因表达增加,这为藻类和植物中类胡萝卜素合成的所需途径提供了新的见解。

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