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一种负责拟南芥花粉特异性黄酮醇末端修饰的类黄酮3 - O - 葡萄糖苷:2″ - O - 葡萄糖基转移酶。

A flavonoid 3-O-glucoside:2"-O-glucosyltransferase responsible for terminal modification of pollen-specific flavonols in Arabidopsis thaliana.

作者信息

Yonekura-Sakakibara Keiko, Nakabayashi Ryo, Sugawara Satoko, Tohge Takayuki, Ito Takuya, Koyanagi Misuzu, Kitajima Mariko, Takayama Hiromitsu, Saito Kazuki

机构信息

RIKEN Center for Sustainable Resource Science, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, 230-0045, Japan.

出版信息

Plant J. 2014 Sep;79(5):769-82. doi: 10.1111/tpj.12580. Epub 2014 Jul 28.

Abstract

Flavonol 3-O-diglucosides with a 1→2 inter-glycosidic linkage are representative pollen-specific flavonols that are widely distributed in plants, but their biosynthetic genes and physiological roles are not well understood. Flavonoid analysis of four Arabidopsis floral organs (pistils, stamens, petals and calyxes) and flowers of wild-type and male sterility 1 (ms1) mutants, which are defective in normal development of pollen and tapetum, showed that kaempferol/quercetin 3-O-β-d-glucopyranosyl-(1→2)-β-d-glucopyranosides accumulated in Arabidopsis pollen. Microarray data using wild-type and ms1 mutants, gene expression patterns in various organs, and phylogenetic analysis of UDP-glycosyltransferases (UGTs) suggest that UGT79B6 (At5g54010) is a key modification enzyme for determining pollen-specific flavonol structure. Kaempferol and quercetin 3-O-glucosyl-(1→2)-glucosides were absent from two independent ugt79b6 knockout mutants. Transgenic ugt79b6 mutant lines transformed with the genomic UGT79B6 gene had the same flavonoid profile as wild-type plants. Recombinant UGT79B6 protein converted kaempferol 3-O-glucoside to kaempferol 3-O-glucosyl-(1→2)-glucoside. UGT79B6 recognized 3-O-glucosylated/galactosylated anthocyanins/flavonols but not 3,5- or 3,7-diglycosylated flavonoids, and prefers UDP-glucose, indicating that UGT79B6 encodes flavonoid 3-O-glucoside:2″-O-glucosyltransferase. A UGT79B6-GUS fusion showed that UGT79B6 was localized in tapetum cells and microspores of developing anthers.

摘要

具有1→2糖苷键的黄酮醇3 - O - 二葡萄糖苷是植物中广泛分布的代表性花粉特异性黄酮醇,但其生物合成基因和生理作用尚未完全明确。对野生型和雄性不育1(ms1)突变体(其花粉和绒毡层正常发育存在缺陷)的四种拟南芥花器官(雌蕊、雄蕊、花瓣和花萼)及花朵进行的黄酮类化合物分析表明,山奈酚/槲皮素3 - O - β - D - 吡喃葡萄糖基 -(1→2)- β - D - 吡喃葡萄糖苷在拟南芥花粉中积累。利用野生型和ms1突变体的微阵列数据、不同器官中的基因表达模式以及尿苷二磷酸糖基转移酶(UGTs)的系统发育分析表明,UGT79B6(At5g54010)是决定花粉特异性黄酮醇结构的关键修饰酶。在两个独立的ugt79b6基因敲除突变体中不存在山奈酚和槲皮素3 - O - 葡萄糖基 -(1→2)- 葡萄糖苷。用基因组UGT79B6基因转化的转基因ugt79b6突变体系具有与野生型植物相同的黄酮类化合物谱。重组UGT79B6蛋白将山奈酚3 - O - 葡萄糖苷转化为山奈酚3 - O - 葡萄糖基 -(1→2)- 葡萄糖苷。UGT79B6识别3 - O - 葡萄糖基化/半乳糖基化的花青素/黄酮醇,但不识别3,5 - 或3,7 - 二糖苷化的黄酮类化合物,且更倾向于尿苷二磷酸葡萄糖,这表明UGT79B6编码黄酮类化合物3 - O - 葡萄糖苷:2″ - O - 葡萄糖基转移酶。一个UGT79B6 - GUS融合蛋白显示UGT79B6定位于发育中的花药的绒毡层细胞和小孢子中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdab/4282749/47f7fab9b371/tpj0079-0769-f1.jpg

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