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Characterization of a flavonol 3-O-methyltransferase in the trichomes of the wild tomato species Solanum habrochaites

机译:黄酮3-O-甲基转移酶在野生番茄茄属梭梭的毛状体中的表征

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The glandular trichomes of the wild tomato species Solanum habrochaites accumulate the polymethylated flavonol aglycones, 3,7,3′-O-methyl myricetin, 3,7,3′,5′-O-methyl myricetin, and 3,7,3′,4′,5′-O-methyl myricetin. Partially methylated flavonol aglycones and partially methylated flavonol glycones containing a methyl group at the 3 position have been previously reported from a variety of plants. The 3-O-methyltransferase (3-OMT) activity has been previously partially purified from plants, but a gene transcript encoding an enzyme capable of methylating flavonols at the 3 position has not yet been identified, nor have been such proteins purified and characterized. We previously identified two gene transcripts expressed in the glandular trichomes of S. habrochaites and showed that they encode enzymes capable of methylating myricetin at the 3′ and 5′ and the 7 and 4′ positions, respectively. Here we report the identification of gene transcripts expressed in S. lycopersicum (cultivated tomato) and in S. habrochaites glandular trichomes that encode enzymes capable of methylating myricetin, and its partially methylated derivatives exclusively at the 3 position. The S. habrochaites gene transcript is preferentially expressed in the glandular trichomes and it encodes a protein with high similarity to the S. habrochaites, 3′/5′ O-methyltransferase which is also present in glandular trichomes. Phylogenic analysis suggests that the 3-OMT activity has probably evolved from an ancestral 3′/5′ methyltransferase activity. The discovery and characterization of 3-OMT provides a more complete picture of the series of reactions leading to highly methylated myricetin compounds in S. habrochaites glandular trichomes.
机译:野生番茄茄属茄子的腺毛积累了多甲基化的黄酮醇苷元,3,7,3'-O-甲基杨梅素,3,7,3',5'-O-甲基杨梅素和3,7,3' ,4',5'-O-甲基杨梅素。先前已经从多种植物中报道了在3位上含有甲基的部分甲基化的黄酮醇苷元和部分甲基化的黄酮醇苷。先前已经从植物中部分纯化了3-O-甲基转移酶(3-OMT)活性,但是尚未鉴定出编码能够使3位黄酮醇甲基化的酶的基因转录物,也没有纯化和表征这种蛋白。我们先前确定了两个基因转录本,在沙门氏菌的腺毛中表达,并显示它们编码能够分别在3'和5'以及7和4'位置甲基化杨梅素的酶。在这里,我们报告鉴定在S. lycopersicum(培养的番茄)和S. habrochaites腺毛中表达的基因转录本,这些基因编码能够甲基化杨梅素的酶,以及仅在3位甲基化的部分甲基化衍生物。盐生沙雷氏菌基因转录物优先在腺毛状体中表达,并且编码与盐生沙雷氏菌高度相似的蛋白质3'/ 5'O-甲基转移酶,该蛋白质也存在于腺毛状体中。系统发生分析表明3-OMT活性可能已经从祖先的3'/ 5'甲基转移酶活性演化而来。 3-OMT的发现和表征提供了一系列反应的更完整图景,这些反应导致盐生沙门氏菌腺毛状体中高度甲基化的杨梅素化合物。

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