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首页> 外文期刊>Postharvest Biology and Technology >Postharvest applications of n-butanol increase greasiness in apple skins by altering wax composition via effects on gene expression
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Postharvest applications of n-butanol increase greasiness in apple skins by altering wax composition via effects on gene expression

机译:通过对基因表达改变蜡组合物改变蜡组合物,正丁醇的采后应用增加苹果皮的油脂

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The postharvest development of greasiness in apple skin has negative effects on fruit appearance and market quality and causes significant economic losses. The fluid wax constituents responsible for skin greasiness comprise mainly oleate and linoleate esters of (E,E)-farnesol and short-chain alcohols (C-3-C-5). Butyl esters are also key components. It is believed that accumulations of volatile alcohols affect the development of skin greasiness by offering substrates for the biosynthesis of the greasy esters. To demonstrate the putative role of volatile alcohols on apple skin greasiness, 'Cripps Pink' apples were treated with either 10 or 25 mu L L-1 n-butanol (NBA) and then stored at 20 degrees C. The composition of each cuticular wax was analyzed, and the expression levels of the related genes were recorded. There was no significant difference in the time course of fruit ripening or senescence among the two NBA treatments and the control. As expected, accumulations of the fluid wax constituents were indeed promoted in the NBA-treated fruit. On day 42, compared with the control, the butyl ester contents of the skins of the 10 and 25 mu L L-1 NBA-treated fruits were 1.7 and 2.9 times higher, respectively. Moreover, the 25 mu L L-1 NBA-treated fruit showed higher greasiness levels and looked shinier than the fruit exposed to the lower NBA treatment or the control. Several genes were more highly expressed in the NBA-treated fruit than in the control. These included MdKASIII, MdSAD6, MdWSD1 (related to wax biosynthesis) and MdLTPG1 (related to wax export). We conclude that NBA had no significant effects on fruit ripening or senescence but promoted the development of skin greasiness.
机译:苹果皮上油腻的发泡性发育对水果外观和市场质量产生负面影响,并导致严重的经济损失。负责皮肤油腻的流体蜡成分主要包括(E,E) - 羟基醇和短链醇(C-3-C-5)的油eate和LiNoleate酯。丁酯也是关键部件。据信,挥发性醇的累积通过为油脂的生物合成的基材提供底物来影响皮肤油腻的发育。为了证明挥发性醇对苹果皮肤油腻的推定作用,用10或25μmLL-1正丁醇(NBA)处理'Crepps Pink'苹果,然后在20℃下储存。每种切割蜡的组成分析了相关基因的表达水平。两种NBA治疗和对照中的果实成熟或衰老时期没有显着差异。正如预期的那样,在NBA处理的果实中确实促进了流体蜡成分的累积。在第42天,与对照相比,10和25μLL-1 NBA处理的果实的皮肤的丁酯含量分别为1.7〜2.9倍。此外,25μLL-1 NBA处理的水果显示出较高的油腻水平,并且看起来比暴露于NBA治疗或对照的水果浓郁。在NBA处理的果实中更高度表达了几种基因而不是对照。这些包括MDKASIII,MDSAD6,MDWSD1(与蜡生物合成相关)和MDLTPG1(与蜡导出有关)。我们得出结论,NBA对果实成熟或衰老没有显着影响,但促进了皮肤油腻的发展。

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