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Dynamics of sugars, anaerobic metabolism enzymes and metabolites in apples stored under dynamic controlled atmosphere

机译:在动态控制气氛下储存苹果中糖,厌氧代谢酶和代谢物的动态

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摘要

Apple storage under extremely low oxygen concentrations, as in dynamic controlled atmosphere, changes both aerobic and anaerobic metabolism. In this work we evaluated the effects of controlled atmosphere (CA) and dynamic controlled atmosphere based on respiratory quotient (DCA - RQ), with RQ 1.3 and RQ 1.5, on the dynamics of pyruvic acid, sugars, anaerobic metabolites and enzymes involved in anaerobic metabolism of 'Elstar' and 'Nicoter' apples after harvest, 6 and 9 months of storage plus 7 days of shelf life. We also investigated the induction of sorbitol and glycerol biosynthesis, as a response to low oxygen stress in apples stored under DCA - RQ, protecting the cell membrane from leakage. Storage under CA and DCA - RQ had different dynamics of sugars accumulation from harvest up to 9 months of storage, especially for sorbitol, which accumulated more over the storage period when fruit are stored under DCA - RQ. Glycerol was not detected in any of the cultivars or storage conditions. Storage under DCA reduces the membrane permeability even with the accumulation of anaerobic metabolism compounds, like acetaldehyde and ethanol. Perhaps, this is a result of the higher sorbitol accumulation, which acts as osmolyte. For both cultivars, the storage under DCA resulted in an increase of PDC enzyme activity from harvest to 9 months of storage. The dynamics of anaerobic metabolism compounds were different for both cultivars: 'Elstar' apples showed an increase from harvest to 9 months storage, but 'Nicoter' had an increase until 6 months of storage and a sharp reduction until 9 months of storage. The regulation of anaerobic metabolism is performed by PDC enzyme activity, with little influence of ADH enzyme activity, when apples are stored under DCA - RQ. 'Nicoter' apples are much more sensitive to low oxygen stress conditions as compared to 'Elstar'.
机译:苹果储存在极低的氧气浓度下,如动态受控的气氛中,改变有氧和厌氧代谢。在这项工作中,我们评估了基于呼吸器(DCA - RQ)的受控气氛(CA)和动态控制气氛的影响,RQ 1.3和RQ 1.5,丙酮酸,糖,厌氧代谢物和参与厌氧的酶的动态收获后'elstar'和'尼古尔'苹果的代谢,6和9个月的存储加上7天的保质期。我们还研究了山梨糖醇和甘油生物合成的诱导,作为在DCA - RQ下储存的苹果中的低氧胁迫的反应,保护细胞膜免受泄漏。 CA和DCA - RQ下的储存在收集中具有不同的糖积累,高达9个月的储存,尤其是山梨糖醇,当水果储存在DCA - RQ下的储存期内累积更多。在任何品种或储存条件下未检测到甘油。 DCA下的储存即使厌氧代谢化合物的积累也降低了膜渗透性,如乙醛和乙醇。也许,这是山梨糖醇累积较高的结果,其充当渗透压。对于两种品种,DCA下的储存导致从收获到9个月的储存中的PDC酶活性增加。厌氧代谢化合物的动态对既有品种不同:'Elstar'苹果表现出收获增加到9个月的储存,但“尼氏菌丝”直至储存6个月,速度急剧减少,直至9个月的储存。当苹果储存在DCA - RQ下时,通过PDC酶活性进行厌氧代谢的调节,随着ADH酶活性的影响很小。与'Elstar'相比,“尼古尔”苹果对低氧气应力条件更敏感。

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