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首页> 外文期刊>Journal of Plant Growth Regulation >The Effect of Maturity Status on Biochemical Composition, Antioxidant Activity, and Anthocyanin Biosynthesis Gene Expression in a Pomegranate (Punica granatum L.) Cultivar with Red Flowers, Yellow Peel, and Pinkish Arils
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The Effect of Maturity Status on Biochemical Composition, Antioxidant Activity, and Anthocyanin Biosynthesis Gene Expression in a Pomegranate (Punica granatum L.) Cultivar with Red Flowers, Yellow Peel, and Pinkish Arils

机译:成熟状态对生物化学成分,抗氧化活性和花青素生物合成基因表达的生化状态(Punica Granatum L.)栽培品种,红花,黄色果皮和粉红色的基础

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Pomegranate (Punica granatum L.) has widely been used as a fruit and in folk medicine since ancient civilizations in the world. It is now known that bioactive compounds present in pomegranates attribute to its therapeutic potential. Harvesting at the correct maturity stage is one of the key factors deciding the quality of harvest for consumption in fresh or value-added forms. Identification of the correct maturity stage (harvesting index) is particularly difficult for cultivars having yellowish peel and pinkish arils (sarcotesta). We studied the changes in total phenolic content (TPC), antioxidant activity (AOX), punicalagin alpha and beta contents, color indices, total soluble solids (TSS), and expression of anthocyanin biosynthetic pathway genes from flowering to harvesting in the pomegranate cultivar Nimali, having red flowers, yellow peels, and pinkish arils at maturity over two growing seasons. Interestingly, there was no seasonal variation observed in any of the parameters over two cultivation seasons. Although the beta punicalagin content did not change, the TPC, AOX, punicalagin alpha contents in both peel and arils gradually decreased from flowering to maturity. Though the TPC of both peels and arils, AOX and total punicalagin content of peel did not change significantly 140days after flower initiation, the TPC and the total punicalagin of arils reached a stable level at 160 days. The TSS in both peels and arils increased significantly with the maturity having the highest values at 180days. The peel color changed from green to yellow with maturity with a significant increase in l* and b* values and significant decrease in a* value. Nevertheless, the aril color changed from pale white to pink with the maturity with significant reduction of l* and b* values and significant increase of a* value. Changes in pomegranate dihydroflavonol 4-reductase (DFR), flavanone 3-hydroxylase (F3H), and leucoanthocyanidin dioxygenase (anthocyanidin synthase-ANS) gene expression in Nimali arils correlated with its color changes during maturity. These findings support to identify the harvesting index of Nimali ensuring the maximum nutritional and health benefits of pomegranate flower, arils, and peels for different downstream uses.
机译:石榴(Punica Granatum L.)广泛被用作世界古代文明以来的水果和民间医学。现在已知石榴归因于其治疗潜力的生物活性化合物。在正确的成熟阶段收获是决定收获质量以新鲜或增值表格的收获质量的关键因素之一。鉴定正确的成熟阶段(收获指数)对于具有淡黄色果皮和粉红色的基础(Sarcotesta)的品种特别难以。我们研究了总酚类含量(TPC),抗氧化活性(AOX),瞳孔α和β内容物,颜色指数,总可溶性固体(TSS)的变化,以及花青素中的花青素生物合成途径基因的表达,从开花中纳米马里在两种生长季节的成熟度时,红花,黄皮和粉红色的果实。有趣的是,在两个种植季节的任何参数中都没有观察到季节性变化。虽然Beta Punicalagin含量没有变化,但TPC,AOX,两种果皮和基础旁的瞳孔α含量逐渐从开花到成熟时逐渐减少。虽然皮肤和果皮的TPC,果冻的果蝇和Peel总旁咽蛋白含量在花开始后没有显着变化,但TPC和Arils的总疗程在160天内达到稳定水平。两根皮肤和基因中的TS在180天具有最高值的成熟程度显着增加。剥离颜色从绿色变为黄色到黄色,成熟度,L *和B *值显着增加,并且*值显着降低。尽管如此,Aril颜色从苍白的白色变为粉红色,成熟度,L *和B *值显着降低,并且A *值的显着增加。石榴二氢烷醇4-还原酶(DFR)的变化,黄烷酮3-羟化酶(F3H),尼莫利菌中的白蒽哒唑苄啶二氧基酶(花青素合酶-NAS)基因表达与成熟期间的颜色变化相关。这些调查结果支持识别Nimali的收获指数,确保石榴花,基础的最大营养和健康益处,并在不同的下游使用。

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