...
首页> 外文期刊>Journal of Agricultural and Food Chemistry >Anthocyanin Biosynthesis and DNA Methylation Dynamics in Sweet Orange Fruit [Citrus sinensis L. (Osbeck)] under Cold Stress
【24h】

Anthocyanin Biosynthesis and DNA Methylation Dynamics in Sweet Orange Fruit [Citrus sinensis L. (Osbeck)] under Cold Stress

机译:甜橙果实中的花青素生物合成和DNA甲基化动力学[柑橘Sinensis L.(Osbeck)]在冷应激下

获取原文
获取原文并翻译 | 示例
           

摘要

The blood red color of pigmented orange fruit varieties [ Citrus sinensis L. (Osbeck)] is due to the presence of anthocyanin pigments that largely contribute to determine the high organoleptic qualities and the nutritional properties of the fruits. The content of pigments in sweet orange depends primarily on genetic factors and on environmental conditions. In particular, it has been extensively shown that cold temperature induces an increase of anthocyanin content that is achieved by the induction of the related gene expression. The purpose of our work is to understand the mechanism underlying the color variegation occurring inside the blood oranges during the cold induction of anthocyanin biosynthesis, despite the fact that the entire fruit is genotypically programmed to produce pigments. Therefore, the amount of anthocyanin and the expression of both structural and regulatory genes have been monitored in either high-pigmented (HP) or not/low pigmented (NP) segments of the same fruit during the storage at 4 degrees C for a total experimental period of 25 days. Our results clearly indicate that the anthocyanin content is directly correlated with the levels of gene transcription, with higher pigmented areas showing higher enhancement of gene expression. Furthermore, we analyzed the reshaping of the DNA methylation status at the promoter regions of genes related to anthocyanin biosynthetic pathway, such as DFR and Ruby. Our results unequivocally demonstrate that in the promoter regions of both DFR and Ruby, the amount of cytosine methylation strongly decreases along the cold storage in the HP areas, whereas it increases in the NP areas of the same fruit, probably causing a partial block of the gene transcription. Finally, by measuring the changes in the expression levels of the Citrus DNA demethylases, we found that DML1 might play a crucial role in determining the observed demethylation of DFR and Ruby promoters, with its expression induced by cold in the HP areas of the fruits. This is the first report in which different levels of gene expression implicated in anthocyanin production in blood orange fruit is correlated with an epigenetic control mechanism such as promoter methylation.
机译:的着色橙色水果品种血红色[脐橙L.(柚)]是由于花色素苷色素在很大程度上有助于确定高感官品质和水果的营养特性的存在。在甜蜜的橙色颜料的含量主要取决于遗传因素和环境条件。特别是,它已经被广泛地表明,冷温度诱导由所述相关基因表达的诱导来实现花色素苷含量的增加。我们工作的目的是为了了解冷诱导花青素合成过程中的血橙的内部所产生的颜色花斑背后的机制,尽管整个水果基因型编程,以生产颜料。因此,花青素的量和结构和调控基因的表达已在任一高着色(HP)监视或不/低着色相同水果的(NP)的段存储过程中在4摄氏度共实验为期25天。我们的研究结果清楚地表明,花青素含量直接与基因转录的水平相关,与显示增强更高的基因表达的高色素沉着区。此外,我们分析的DNA甲基化状态的整形在花青素生物合成途径,如DFR和Ruby相关基因的启动子区。我们的研究结果明确表明,在这两个DFR和Ruby的启动子区,胞嘧啶甲基化的量以及在HP地区冷库强烈减少,而它增加在同一水果的NP领域,可能造成的局部块基因转录。最后,通过测量柑橘DNA去甲基酶的表达水平的变化,我们发现,DML1可能在确定DFR和Ruby发起人的观察去甲基化起到至关重要的作用,其表现在果实的HP地区诱发感冒。这是在其中不同级别在血橙果花青素的生产牵涉的基因表达与外遗传控制机构如启动子甲基化相关的第一份报告。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号