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百合科杂种小苍兰中类胡萝卜素双加氧酶 2 基因的克隆及在番红花醛和藏红花素生物合成中的功能鉴定。

Cloning and functional characterization of a carotenoid cleavage dioxygenase 2 gene in safranal and crocin biosynthesis from Freesia hybrida.

机构信息

Key Laboratory of Molecular Epigenetics of MOE and Institute of Genetics & Cytology, Northeast Normal University, Changchun, China; School of Chemistry and Life Science, Changchun University of Technology, Changchun, China.

Key Laboratory of Molecular Epigenetics of MOE and Institute of Genetics & Cytology, Northeast Normal University, Changchun, China.

出版信息

Plant Physiol Biochem. 2020 Sep;154:439-450. doi: 10.1016/j.plaphy.2020.06.035. Epub 2020 Jul 5.

Abstract

Safranal and crocin, commonly derived from the oxidative cleavage reaction of zeaxanthin in plants, are two kinds of apocarotenoids with versatile functions, which were only found in limited number of plant species. In this study, both metabolites were detected and varied concomitantly with the expression of carotenoid cleavage dioxygenase (CCD) genes in Freesia hybrida, Red River® and Ambiance cultivars. The newly isolated CCD, denoted here as FhCCD2, was phylogenetically clustered with other reported saffron CCD2s. Besides, ten introns were also observed in the genomic DNA sequence of FhCCD2 and the presence of N-terminal transporter peptide suggested its plastidial sub-localization. Biochemical analysis showed that the FhCCD2 cleaved zeaxanthin at the 7, 8 and 7', 8' double bonds to generate intermediates prerequisite for the biosynthesis of safranal and crocin. Further, gene transient expression analysis showed that the promoter of FhCCD2 was functional in Ambiance as well as Red River® cultivars, even with slight variation in their promoter sequence. At present, CCD2 proteins have only been found in Freesia and Crocus genus of Iridaceae family. Phylogenetic and intron position analysis infer that CCD2 perhaps emerged after the intron loss during evolutionary process of CCD1 or their shared ancestry.

摘要

甜橙烯和藏红花素通常是植物中叶黄质氧化裂解反应的产物,是两种具有多种功能的类胡萝卜素降解产物,仅在有限数量的植物物种中发现。在这项研究中,这两种代谢物都在杂种小苍兰、Red River®和Ambiance 品种中被检测到,并与类胡萝卜素裂解双加氧酶(CCD)基因的表达同时变化。新分离的 CCD 在这里被表示为 FhCCD2,它与其他已报道的藏红花 CCD2s 在系统发育上聚类。此外,还在 FhCCD2 的基因组 DNA 序列中观察到 10 个内含子,并且存在 N 端转运肽表明其质体亚定位。生化分析表明,FhCCD2 可在 7、8 和 7'、8'双键处裂解玉米黄质,生成甜橙烯和藏红花素生物合成所需的中间产物。此外,基因瞬时表达分析表明,FhCCD2 的启动子在 Ambiance 以及 Red River®品种中具有功能,尽管它们的启动子序列略有差异。目前,CCD2 蛋白仅在小苍兰属和鸢尾科的藏红花属中发现。系统发育和内含子位置分析推断,CCD2 可能是在 CCD1 或它们共同祖先的进化过程中内含子丢失后出现的。

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