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来自草莓(凤梨草莓)瘦果和花托的多底物黄酮醇O-葡萄糖基转移酶。

Multi-substrate flavonol O-glucosyltransferases from strawberry (Fragaria x ananassa) achene and receptacle.

作者信息

Griesser Markus, Vitzthum Florian, Fink Barbara, Bellido Mari Luz, Raasch Constanze, Munoz-Blanco Juan, Schwab Wilfried

机构信息

Biomolecular Food Technology, Technical University Munich, Lise-Meitner-Str. 34, 85354 Freising, Germany.

出版信息

J Exp Bot. 2008;59(10):2611-25. doi: 10.1093/jxb/ern117. Epub 2008 May 17.

Abstract

In an effort to characterize fruit ripening-related genes functionally, two glucosyltransferases, FaGT6 and FaGT7, were cloned from a strawberry (Fragaria x ananassa) cDNA library and the full-length open reading frames were amplified by rapid amplification of cDNA ends. FaGT6 and FaGT7 were expressed heterologously as fusion proteins in Escherichia coli and target protein was purified using affinity chromatography. Both recombinant enzymes exhibited a broad substrate tolerance in vitro, accepting numerous flavonoids, hydroxycoumarins, and naphthols. FaGT6 formed 3-O-glucosides and minor amounts of 7-O-, 4'-O-, and 3'-O-monoglucosides and one diglucoside from flavonols such as quercetin. FaGT7 converted quercetin to the 3-O-glucoside and 4'-O-glucoside and minor levels of the 7- and 3'-isomers but formed no diglucoside. Gene expression studies showed that both genes are strongly expressed in achenes of small-sized green fruits, while the expression levels were generally lower in the receptacle. Significant levels of quercetin 3-O-, 7-O-, and 4'-O-glucosides, kaempferol 3-O- and 7-O-glucosides, as well as isorhamnetin 7-O-glucoside, were identified in achenes and the receptacle. In the receptacle, the expression of both genes is negatively controlled by auxin which correlates with the ripening-related gene expression in this tissue. Salicylic acid, a known signal molecule in plant defence, induces the expression of both genes. Thus, it appears that FaGT6 and FaGT7 are involved in the glucosylation of flavonols and may also participate in xenobiotic metabolism. The latter function is supported by the proven ability of strawberries to glucosylate selected unnatural substrates injected in ripe fruits. This report presents the first biochemical characterization of enzymes mainly expressed in strawberry achenes and provides the foundation of flavonoid metabolism in the seeds.

摘要

为了从功能上表征与果实成熟相关的基因,从草莓(凤梨草莓)cDNA文库中克隆了两种糖基转移酶FaGT6和FaGT7,并通过cDNA末端快速扩增技术扩增出全长开放阅读框。FaGT6和FaGT7在大肠杆菌中作为融合蛋白进行异源表达,并用亲和层析法纯化目标蛋白。两种重组酶在体外均表现出广泛的底物耐受性,能接受多种黄酮类化合物、羟基香豆素和萘酚。FaGT6从槲皮素等黄酮醇形成3 - O - 葡萄糖苷以及少量的7 - O -、4' - O - 和3' - O - 单葡萄糖苷和一种二糖苷。FaGT7将槲皮素转化为3 - O - 葡萄糖苷和4' - O - 葡萄糖苷以及少量的7 - 和3' - 异构体,但不形成二糖苷。基因表达研究表明,这两个基因在小型绿色果实的瘦果中强烈表达,而在花托中的表达水平通常较低。在瘦果和花托中鉴定出了大量的槲皮素3 - O -、7 - O - 和4' - O - 葡萄糖苷、山奈酚3 - O - 和7 - O - 葡萄糖苷以及异鼠李素7 - O - 葡萄糖苷。在花托中,这两个基因的表达受到生长素的负调控,这与该组织中与成熟相关的基因表达相关。水杨酸是植物防御中一种已知的信号分子,可诱导这两个基因的表达。因此,FaGT6和FaGT7似乎参与了黄酮醇的糖基化,也可能参与异源物质代谢。草莓能够将注入成熟果实中的选定非天然底物糖基化,这一已证实的能力支持了后一种功能。本报告首次对主要在草莓瘦果中表达的酶进行了生化表征,并为种子中的黄酮类代谢奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05f2/2638449/2655a6e42e53/jexbotern117f01_lw.jpg

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