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Anthocyanins Accumulation and Related Gene Expression in Red Orange Fruit Induced by Low Temperature Storage

机译:低温贮藏诱导橙橘果实中花色苷的积累及相关基因表达

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The aim of this work was to study the impact of moderately long storage periods at 4 deg C upon red orange [Citrus sinensis(L.)Osbeck] anthocyanins production and the expression of structural genes involved in their biosynthesis such as phehylalanine ammonia lyase(PAL),chalcone synthase(CHS),dihydroflavonol 4-reductase(DFR),and UDP-glucose flavonoid glucosyl transferase(UFGT).Our results showed that low temperature-induced anthocyanins accumulation in red orange juice vesicles after 75 days reached values eight times higher than those kept at 25 deg C.Furthermore,real-time polymerase chain reaction showed that expression of PAL,CHS,DFR,and UFGT was strongly induced during low temperature exposure since levels of all transcripts increased at least 40-fold with respect to control samples.Interestingly,in orange fruits subjected to a brief exposure at low temperature(45 days)and subsequently kept at 25 deg C,the anthocyanins content dropped although samples still maintained higher levels of these pigments than those registered in control oranges.Concordantly,the expression of chs,dfr,and ufgt declined upon return to control conditions,but it was always much higher in samples subjected to brief cold induction than in the control samples.On the contrary,the amount of PAL transcripts became negligible immediately after the temperature change from 4 to 25 deg C,thus indicating that"early"and"late"genes,respectively,implicated in the first and in the last steps leading to the anthocyanins,might be affected by different regulation mechanisms.
机译:这项工作的目的是研究在4摄氏度下适度的储存时间对桔红[Citrus sinensis(L.)Osbeck]花色苷生产的影响以及参与其生物合成的结构基因如苯丙氨酸丙氨酸裂解酶(PAL)的表达。 ),查尔酮合酶(CHS),二氢黄酮醇4-还原酶(DFR)和UDP-葡萄糖类黄酮葡糖基转移酶(UFGT)。我们的结果表明,低温诱导的红橙汁囊泡中花色苷在75天后的低温积累值达到了八倍。此外,实时聚合酶链反应显示,在低温暴露期间,强烈诱导了PAL,CHS,DFR和UFGT的表达,因为相对于对照,所有转录本的水平至少增加了40倍有趣的是,在低温(45天)下短暂暴露并随后保持在25摄氏度的橙色水果中,尽管样品仍保持较高水平,但花色苷含量却下降了。相应地,chs,dfr和ufgt的表达在恢复到对照条件后下降,但是在短暂受冷诱导的样品中chs,dfr和ufgt的表达总是比对照样品中的高。 ,从4到25摄氏度的温度变化后,PAL转录本的数量可以忽略不计,因此表明“早期”和“晚期”基因分别涉及导致花色苷的第一步和最后一步受不同监管机制的影响。

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