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一种O-甲基转移酶可调节番茄幼苗中甲基化花青素的积累。

An O-methyltransferase modifies accumulation of methylated anthocyanins in seedlings of tomato.

作者信息

Gomez Roldan Maria Victoria, Outchkourov Nikolay, van Houwelingen Adèle, Lammers Michiel, Romero de la Fuente Irene, Ziklo Noa, Aharoni Asaph, Hall Robert D, Beekwilder Jules

机构信息

BU Biosciences, Plant Research International, Wageningen University and Research Centre, PO Box 16, 6700 AA, Wageningen, The Netherlands; Netherlands Consortium for Systems Biology, PO Box 94215, 1090 GE, Amsterdam, The Netherlands; Netherlands Metabolomics Centre, Einsteinweg 55, 2333 CC, Leiden, The Netherlands.

出版信息

Plant J. 2014 Nov;80(4):695-708. doi: 10.1111/tpj.12664. Epub 2014 Oct 15.

Abstract

Anthocyanins contribute to the appearance of fruit by conferring to them a red, blue or purple colour. In a food context, they have also been suggested to promote consumer health. In purple tomato tissues, such as hypocotyls, stems and purple fruits, various anthocyanins accumulate. These molecules have characteristic patterns of modification, including hydroxylations, methylations, glycosylations and acylations. The genetic basis for many of these modifications has not been fully elucidated, and nor has their role in the functioning of anthocyanins. In this paper, AnthOMT, an O-methyltransferase (OMT) mediating the methylation of anthocyanins, has been identified and functionally characterized using a combined metabolomics and transcriptomics approach. Gene candidates were selected from the draft tomato genome, and their expression was subsequently monitored in a tomato seedling system comprising three tissues and involving several time points. In addition, we also followed gene expression in wild-type red and purple transgenic tomato fruits expressing Rosea1 and Delila transcription factors. Of the 57 candidates identified, only a single OMT gene showed patterns strongly correlating with both accumulation of anthocyanins and expression of anthocyanin biosynthesis genes. This candidate (AnthOMT) was compared to a closely related caffeoyl CoA OMT by recombinant expression in Escherichia coli, and then tested for substrate specificity. AnthOMT showed a strong affinity for glycosylated anthocyanins, while other flavonoid glycosides and aglycones were much less preferred. Gene silencing experiments with AnthOMT resulted in reduced levels of the predominant methylated anthocyanins. This confirms the role of this enzyme in the diversification of tomato anthocyanins.

摘要

花青素赋予果实红色、蓝色或紫色,从而影响果实外观。在食品领域,它们还被认为有助于促进消费者健康。在紫色番茄组织中,如胚轴、茎和紫色果实中,会积累各种花青素。这些分子具有特定的修饰模式,包括羟基化、甲基化、糖基化和酰化。许多这些修饰的遗传基础尚未完全阐明,它们在花青素功能中的作用也未明确。在本文中,利用代谢组学和转录组学相结合的方法,鉴定并对介导花青素甲基化的O -甲基转移酶(OMT)AnthOMT进行了功能表征。从番茄基因组草图中筛选基因候选物,随后在包含三个组织并涉及多个时间点的番茄幼苗系统中监测它们的表达。此外,我们还跟踪了在表达Rosea1和Delila转录因子的野生型红色和紫色转基因番茄果实中的基因表达。在鉴定出的57个候选物中,只有一个OMT基因的表达模式与花青素积累和花青素生物合成基因的表达都有很强的相关性。通过在大肠杆菌中重组表达,将这个候选基因(AnthOMT)与密切相关的咖啡酰辅酶A OMT进行比较,然后测试其底物特异性。AnthOMT对糖基化花青素具有很强的亲和力,而其他类黄酮糖苷和苷元则不太受青睐。对AnthOMT进行基因沉默实验导致主要甲基化花青素水平降低。这证实了该酶在番茄花青素多样化中的作用。

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