首页> 外文期刊>Scientia horticulturae >The effects of bagging and debagging on external fruit quality, metabolites, and the expression of anthocyanin biosynthetic genes in 'Jonagold' apple (Malus domestica borkh.).
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The effects of bagging and debagging on external fruit quality, metabolites, and the expression of anthocyanin biosynthetic genes in 'Jonagold' apple (Malus domestica borkh.).

机译:套袋和套袋对'Jonagold'苹果(Malus domestica borkh。)苹果果实外部品质,代谢产物和花色苷生物合成基因表达的影响。

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'Jonagold' apple (Malus domestica Borkh.) was used to determine the effects of bagging and debagging on fruit external and internal qualities, as well as transcript levels for key genes involved in anthocyanin synthesis. Fruits from three treatments - control (never bagged), always bagged, or debagged - were harvested at 0 h, 6 h, 30 h, 3 d, 7 d, and 14 d after certain bags were removed. Peel and flesh tissues were sampled separately. Compared with the control, bagged fruit were yellowish, and had higher scores for lightness and hue angle, lower values for chroma, and the lowest concentration of anthocyanins. Fruit firmness was slightly increased by bagging treatment, whereas soluble solids content (SSC) was decreased. Compared with the control, bagged fruit had more starch, glucose, and galactose, but less of the other sugars and sugar alcohols. The concentrations of fructose and total non-structural carbohydrates were not obviously affected by bagging. Although the malic acid concentration was not influenced by bagging, other acids were either increased (quinic, shikimic, and citric) or decreased (ascorbic). The concentration of total organic acids did not show large difference among three treatments except that it tended to be lower at 14 DABR (days after bag removal). Phenolic compounds, especially flavonols in the peel, were severely inhibited, but their concentrations were increased by re-exposure to sunlight after bag removal. The debagging treatment led to up-regulation of the expression of MdMYB10 and seven structural genes involved in anthocyanin biosynthesis, and subsequent accumulation of anthocysnins. However, the peel of debagged fruit still have lower levels of anthocyanins and other phenolic compounds at harvest, although bag removal made up for the loss of total phenolics in the flesh.
机译:使用“乔纳金”苹果(Malus domestica Borkh。)来确定套袋和装袋对水果外部和内部品质的影响,以及花青素合成所涉及的关键基因的转录水平。取下某些袋子后,分别在0小时,6小时,30小时,3天,7天和14天收获三种处理方法(对照(不装袋),始终装袋或装袋)的水果。果皮和果肉组织分别取样。与对照组相比,袋装水果偏黄,亮度和色相角得分较高,色度值较低,花色苷浓度最低。套袋处理可稍微提高果实硬度,而可溶性固形物含量(SSC)则降低。与对照组相比,袋装水果的淀粉,葡萄糖和半乳糖更多,而其他糖和糖醇则更少。套袋对果糖和总非结构性碳水化合物的浓度没有明显影响。尽管苹果酸浓度不受套袋的影响,但其他酸要么增加(奎宁酸,sh草酸和柠檬酸),要么减少(抗坏血酸)。在三种处理之间,总有机酸的浓度没有显着差异,只是在14 DABR(移袋后的天数)时较低。酚类化合物,尤其是果皮中的黄酮醇受到严重抑制,但在去除袋子后再次暴露于阳光下,其浓度增加。装袋处理导致MdMYB10的表达和花青素生物合成中涉及的七个结构基因的表达上调,以及随后的花青素积累。然而,尽管摘袋弥补了果肉中总酚类的损失,但去袋装水果的果皮在收获时仍具有较低的花色苷和其他酚类化合物含量。

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