首页> 外文期刊>Plant Physiology and Biochemistry >Differential expression of flavonoid 3'-hydroxylase during fruit development establishes the different B-ring hydroxylation patterns of flavonoids in Fragaria× ananassa and Fragaria vesca
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Differential expression of flavonoid 3'-hydroxylase during fruit development establishes the different B-ring hydroxylation patterns of flavonoids in Fragaria× ananassa and Fragaria vesca

机译:果实发育过程中类黄酮3'-羟化酶的差异表达建立了草莓(Fragaria×ananassa)和草莓(Fragaria vesca)中黄酮类化合物的不同B环羟化模式。

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Flavonoid 3'-hydroxylase (F3'. H) was studied for the first time in different Fragaria species. The cDNA clones isolated from unripe and ripe fruits of Fragaria x ananassa (garden strawberry) and Fragaria vesca (wild strawberry) showed high similarity (99% at the amino acid level) to the publically available F.vesca genome sequence and no significant differences could be identified between species and developmental stages of the fruits. In contrast, the genomic F3'. H clones showed differences in the non-coding regions and 5'-flanking elements. The recombinant F3'Hs were functionally active and showed high specificity for naringenin, dihydrokaempferol, and kaempferol, whereas apigenin was only a minor substrate. During fruit development, a clear difference in the F3'. H expression was observed between F.× ananassa and F.vesca. While a drastic decline of F3'. H expression occurred during fruit ripening in F.× ananassa, F3'. H in F.vesca was highly expressed in all stages. This was reflected by the anthocyanin composition, which showed a prevalence of pelargonidin in ripe fruits of F.× ananassa, whereas F.vesca had a high content of cyanidin. Screening of 17 berry species for their anthocyanin and flavonol composition showed that the prevalence of monohydroxylated anthocyanins makes garden strawberry unique among all other fruit species indicating that selection of bright red color during strawberry breeding, which consumers typically associate with freshness and ripeness, has selected phenotypes with a special biochemical background.
机译:在不同的草莓属物种中首次研究了类黄酮3'-羟化酶(F3'。H)。从草莓和草莓中的未成熟果实中分离出的cDNA克隆与公开的F.vesca基因组序列具有很高的相似性(氨基酸水平为99%),没有明显的差异。在水果的种类和发育阶段之间进行识别。相反,基因组F3'。 H克隆显示出非编码区和5'侧翼元件的差异。重组F3'Hs具有功能活性,并且对柚皮苷,二氢kaempferol和kaempferol具有高特异性,而芹菜素仅是次要底物。在果实发育期间,F3'明显不同。在F.×ananassa和F.vesca之间观察到H表达。同时F3'急剧下降。 F.×ananassa,F3′在果实成熟期间发生H表达。 F.vesca中的H在所有阶段均高表达。花色苷组成反映了这一点,其中花青素成分在F.×ananassa的成熟果实中普遍存在pelargonidin,而F.vesca中的花青素含量较高。对17种浆果的花色苷和黄酮醇组成进行筛选表明,单羟基化的花色苷的流行使花园草莓在所有其他水果物种中独树一帜,表明草莓育种期间选择鲜红色,消费者通常将其与新鲜度和成熟度相关联,已选择了表型。具有特殊的生化背景。

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