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Energy status of ripening and postharvest senescent fruit of litchi (Litchi chinensis Sonn.)

机译:荔枝成熟和果实采后的能量状态

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Background Recent studies have demonstrated that cellular energy is a key factor switching on ripening and senescence of fruit. However, the factors that influence fruit energy status remain largely unknown. Results HPLC profiling showed that ATP abundance increased significantly in developing preharvest litchi fruit and was strongly correlated with fruit fresh weight. In contrast, ATP levels declined significantly during postharvest fruit senescence and were correlated with the decrease in the proportion of edible fruit. The five gene transcripts isolated from the litchi fruit pericarp were highly expressed in vegetative tissues and peaked at 70 days after flowering (DAF) consistent with fruit ADP concentrations, except for uncoupling mitochondrial protein 1 (UCP1), which was predominantly expressed in the root, and ATP synthase beta subunit (AtpB), which was up-regulated significantly before harvest and peaked 2 days after storage. These results indicated that the color-breaker stage at 70 DAF and 2 days after storage may be key turning points in fruit energy metabolism. Transcript abundance of alternative oxidase 1 (AOX1) increased after 2 days of storage to significantly higher levels than those of LcAtpB, and was down-regulated significantly by exogenous ATP. ATP supplementation had no significant effect on transcript abundance of ADP/ATP carrier 1 (AAC1) and slowed the changes in sucrose non-fermenting-1-related kinase 2 (SnRK2) expression, but maintained ATP and energy charge levels, which were correlated with delayed senescence. Conclusions Our results suggest that senescence of litchi fruit is closely related with energy. A surge of LcAtpB expression marked the beginning of fruit senescence. The findings may provide a new strategy to extend fruit shelf life by regulating its energy level.
机译:背景技术最近的研究表明,细胞能量是影响果实成熟和衰老的关键因素。但是,影响水果能量状态的因素仍然未知。结果HPLC谱分析显示,在收获前荔枝果实中,ATP丰度显着增加,并且与果实鲜重密切相关。相反,在果实采后衰老期间,ATP水平显着下降,并且与可食用水果比例的下降相关。从荔枝果皮中分离出的5个基因转录物在营养组织中高表达,并在开花后70天达到峰值(DAF),与水果ADP浓度一致,但主要在根部表达的线粒体蛋白1(UCP1)解偶联。和ATP合酶β亚基(AtpB),在收获前显着上调,在储存后2天达到峰值。这些结果表明,在70 DAF和储存后2天的破色阶段可能是水果能量代谢的关键转折点。储存2天后,替代氧化酶1(AOX1)的转录本丰富度显着高于LcAtpB,并且被外源ATP显着下调。补充ATP对ADP / ATP载体1(AAC1)的转录本丰度没有显着影响,并且减慢了蔗糖非发酵-1相关激酶2(SnRK2)表达的变化,但维持了ATP和能量水平,这与延迟衰老。结论我们的结果表明荔枝果实的衰老与能量密切相关。 LcAtpB表达的激增标志着果实衰老的开始。这些发现可能提供了通过调节其能量水平来延长水果保质期的新策略。

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