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Intron retention and rhythmic diel pattern regulation of carotenoid cleavage dioxygenase 2 during crocetin biosynthesis in saffron

机译:藏红花中藏花色素生物合成过程中类胡萝卜素裂解双加氧酶2的内含子保留和节律性diel模式调节

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摘要

The carotenoid cleavage dioxygenase 2, a new member of the CCD family, catalyzes the conversion of zeaxanthin into crocetin-dialdehyde in Crocus. CCD2 is expressed in flowers, being responsible for the yellow, orange and red colorations displayed by tepals and stigma. Three CsCCD2 genes were identified in Crocus sativus, the longest contains ten exons and the shorter is a truncated copy with no introns and which lacks one exon sequence. Analysis of RNA-seq datasets of three developmental stages of saffron stigma allowed the determination of alternative splicing in CsCCD2, being intron retention (IR) the prevalent form of alternative splicing in CsCCD2. Further, high IR was observed in tissues that do not accumulate crocetin. The analysis of one CsCCD2 promoter showed cis-regulatory motifs involved in the response to light, temperature, and circadian regulation. The light and circadian regulation are common elements shared with the previously characterized CsLycB2a promoter, and these shared common cis-acting elements may represent binding sites for transcription factors responsible for co-regulation of these genes during the development of the stigma in saffron. A daily coordinated rhythmic regulation for CsCCD2 and CsLycB2a was observed, with higher levels of mRNA occurring at low temperatures during darkness, confirming the results obtained in the in silico promoter analysis. In addition, to the light and temperature dependent regulation of CsCCD2 expression, the apocarotenoid β-cyclocitral up-regulated CsCCD2 expression and could acts as a mediator of chromoplast-to-nucleus signalling, coordinating the expression of CsCCD2 with the developmental state of the chromoplast in the developing stigma.Electronic supplementary materialThe online version of this article (doi:10.1007/s11103-016-0473-8) contains supplementary material, which is available to authorized users.
机译:CCD家族的新成员类胡萝卜素裂解双加氧酶2催化番红花中玉米黄质转化为藏红花素-二醛。 CCD2以花表示,是花被和柱头显示出的黄色,橙色和红色的颜色。在番红花中鉴定出三个CsCCD2基因,最长的包含十个外显子,较短的是不包含内含子的截短拷贝,并且缺少一个外显子序列。分析藏红花柱头三个发育阶段的RNA-seq数据集,可以确定CsCCD2中的替代剪接,因为内含子保留(IR)是CsCCD2中替代剪接的普遍形式。此外,在没有积累藏红花素的组织中观察到高IR。一个CsCCD2启动子的分析表明,顺式调控基元参与了对光,温度和昼夜节律调控的响应。轻度和昼夜节律调节是与先前表征的CsLycB2a启动子共有的共同元件,并且这些共有的共同顺式作用元件可能代表在藏红花柱头形成过程中负责这些基因的共同调节的转录因子的结合位点。观察到CsCCD2和CsLycB2a的日常节律性调节,在黑暗中的低温下,mRNA的水平更高,这证实了在计算机启动子分析中获得的结果。此外,对于光和温度依赖性的CsCCD2表达调节,类胡萝卜素β-环柠檬醛上调了CsCCD2表达,并且可以作为色质-核信号的介体,使CsCCD2的表达与色质的发育状态相协调。电子补充材料本文的在线版本(doi:10.1007 / s11103-016-0473-8)包含补充材料,授权用户可以使用。

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