首页> 外文期刊>Journal of Agricultural and Food Chemistry >High CO2 atmosphere modulating the phenolic response associated with cell adhesion and hardening of Annona cherimola fruit stored at chilling temperature.
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High CO2 atmosphere modulating the phenolic response associated with cell adhesion and hardening of Annona cherimola fruit stored at chilling temperature.

机译:高CO2气氛调节与冷藏条件下储存的Annona cherimola果实的细胞粘附和硬化相关的酚响应。

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摘要

Phenylalanine ammonia-lyase (PAL, EC 4.3.1.5.) activity, tanning ability, and polyphenols levels were measured in cherimoya (Annona cherimola Mill.) fruit treated with 20% CO(2) + 20% O(2) + 60% N(2) for 1, 3, or 6 days during chilling temperature (6 degrees C) storage. The residual effect of CO(2) after transfer to air was also studied. These observations were correlated with texture and cellular characteristics, visualized by cryo-SEM. Tanning ability and the early increase in tannin polyphenols induced by chilling temperature were reduced by CO(2) treatment. Conversely, high CO(2) atmosphere enhanced the nontannin polyphenol fraction as compared with fruit stored in air. Lignin accumulation and PAL activation observed in untreated fruit after prolonged storage at chilling temperature were prevented by high CO(2). Moreover, the restraining effect on lignification was less effective when the CO(2) treatment was prolonged for 6 days. In addition, fruits held at these conditions had greater firmness andthe histological characterization of the separation between cells was similar to that in untreated fruits. We conclude that CO(2) treatment modulates the phenolic response that seems to regulate the strength of cell adhesion and so to prevent hardening caused by chilling temperature storage.
机译:在用20%CO(2)+ 20%O(2)+ 60%处理的毛叶番荔枝(Annona cherimola Mill。)果实中测量了苯丙氨酸解氨酶(PAL,EC 4.3.1.5。)的活性,鞣革能力和多酚水平N(2)在冷藏温度(6摄氏度)下存放1、3或6天。还研究了CO(2)转移至空气后的残留效应。这些观察结果与质地和细胞特征相关联,通过冷冻SEM观察。通过CO(2)处理降低了鞣制能力和由低温引起的单宁多酚的早期增加。相反,与存储在空气中的水果相比,高CO(2)气氛增强了壬宁多酚的含量。高CO(2)可以防止在低温下长时间储存​​后未处理的水果中的木质素积累和PAL活化。此外,当CO(2)处理延长6天时,对木质化的抑制效果不太有效。另外,在这些条件下保存的果实具有更大的硬度,并且细胞之间分离的组织学表征与未处理的果实相似。我们得出的结论是,CO(2)处理可调节酚醛反应,似乎能调节细胞黏附的强度,因此可以防止由低温储存引起的硬化。

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