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首页> 外文期刊>Postharvest Biology and Technology >Effects of postharvest treatments on gene expression in Prunus persica fruit: normal and altered ripening.
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Effects of postharvest treatments on gene expression in Prunus persica fruit: normal and altered ripening.

机译:采后处理对桃李果实基因表达的影响:正常和改变的成熟度。

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Peach (Prunus persica) fruit have a short shelf-life, and the most common method employed to delay ripening and increase their postharvest life is cold storage. However, after extended storage at low temperature some cultivars have alterated ripening processes, resulting in a lack of juice and a woolly texture. To improve our understanding of the molecular mechanisms involved in the responses of peach fruit to cold storage we determined gene expression changes of fruit (cv. O'Henry) under different postharvest conditions: ripening (5 days at 21 degrees C), cold storage (21 days at 4 degrees C) and induction of woolliness (21 days at 4 degrees C followed by 5 days at 21 degrees C). Cluster analyses of genes differentially expressed between treatments revealed unique patterns associated with biological processes that operate during postharvest treatments. Genes up-regulated during postharvest ripening and woolliness include components of ethylene, and aroma biosynthesis as well as oxidative stress response. During cold storage treatment and woolliness, several genes linked to the oxidative stress response increased in abundance, suggesting changes in redox status. Quantitative RT-PCR analysis showed a sequential increase levels of mRNAs encoding key components of cellular stress response. Moreover, after 21 days of cold storage, expression of genes encoding oxidoreductase, catalase, superoxide dismutase and gluthatione reductase was still significantly higher than before cold treatment, suggesting that fruit cells were able to respond to the increased production of ROS that was induced by extended cold storage. In the woolly fruit, up-regulation of stress response genes was accompanied by down-regulation of key components of metabolic pathways that are active during peach ripening. The altered expression pattern of these genes might account for the abnormal ripening of woolly fruit
机译:桃(Prunus persica)果实的保质期很短,最常用的延迟成熟并延长其收获后寿命的方法是冷藏。但是,在低温下长时间保存后,某些品种已经改变了成熟过程,从而导致汁液不足和羊毛质地。为了更好地了解桃果实对冷藏的响应所涉及的分子机制,我们确定了不同采后条件下果实(c'。O'Henry)的基因表达变化:成熟(在21摄氏度下放置5天),冷藏(在4摄氏度下21天)和诱导羊毛感(在4摄氏度下21天,然后在21摄氏度下5天)。在处理之间差异表达的基因的聚类分析揭示了与采后处理期间起作用的生物学过程相关的独特模式。采后成熟和毛羽化过程中上调的基因包括乙烯成分,香气生物合成以及氧化应激反应。在冷藏和羊毛化过程中,与氧化应激反应相关的几个基因大量增加,表明氧化还原状态发生了变化。定量RT-PCR分析显示,编码细胞应激反应关键成分的mRNA顺序增加。此外,冷藏21天后,编码氧化还原酶,过氧化氢酶,超氧化物歧化酶和谷胱甘肽还原酶的基因的表达仍显着高于冷藏前,表明果细胞能够应对由长期延伸诱导的ROS产量增加。冷库。在羊毛果实中,应激反应基因的上调伴随着桃子成熟过程中活跃的代谢途径关键成分的下调。这些基因表达模式的改变可能解释了羊毛果实的异常成熟

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