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高氧/二氧化碳控制气氛下采后双孢蘑菇衰老过程中呼吸途径和电子传递链的调控

Regulation of Respiratory Pathway and Electron Transport Chain in Relation to Senescence of Postharvest White Mushroom (Agaricus bisporus) under High O/CO Controlled Atmospheres.

作者信息

Li Ling, Kitazawa Hiroaki, Wang Xiangyou, Sun Han

机构信息

School of Agricultural and Food Engineering, Shandong University of Technology , Zibo 255049, People's Republic of China.

Food Research Institute, National Agriculture and Food Research Organization, Tsukuba , Ibaraki 305-8642, Japan.

出版信息

J Agric Food Chem. 2017 Apr 26;65(16):3351-3359. doi: 10.1021/acs.jafc.6b05738. Epub 2017 Apr 11.

Abstract

In order to study the respiration metabolism mechanism based on the generation of adenosine triphosphate (ATP) and reactive oxygen species (ROS) and nitric oxide (NO) by the electron transport chain (ETC) of the white mushroom under high O/CO controlled atmospheres, the treatments of 100% O, 80% O + 20% CO, 60% O + 40% CO, and 40% O + 60% CO at 2 ± 1 °C were employed and natural air was used as the control. ATP and energy charge can maintain the membrane integrity and function, life activities, and physicochemical reactions of higher plants. The results showed that the 80% O + 20% CO treatment inhibited the respiration rate, embden-meyerhof-parnas or glycolysis pathway, and ROS and NO contents. It significantly delayed the reduction of the ATP content and energy charge level, tricarboxyfic-acid-cycle and cytochrome pathway proportion, and their key enzymes activity and gene expression. It also maintained a high phosphopentose pathway and moderate alternative pathway. Results indicated that the 80% O + 20% CO prolonged the storage time of mushrooms to 24 days and retarded the senescence through retaining the higher energy, suppressing the ROS contents, enhancing the endurance capability in adversity, and regulating the respiration pathways and ETC metabolism.

摘要

为了研究在高氧/二氧化碳控制气氛下白蘑菇电子传递链(ETC)产生三磷酸腺苷(ATP)、活性氧(ROS)和一氧化氮(NO)的呼吸代谢机制,采用了在2±1℃下100%氧气、80%氧气+20%二氧化碳、60%氧气+40%二氧化碳和40%氧气+60%二氧化碳的处理方式,并以自然空气作为对照。ATP和能荷可维持高等植物的膜完整性和功能、生命活动以及物理化学反应。结果表明,80%氧气+20%二氧化碳处理抑制了呼吸速率、糖酵解途径以及ROS和NO含量。它显著延缓了ATP含量和能荷水平的降低、三羧酸循环和细胞色素途径比例及其关键酶活性和基因表达的降低。它还维持了较高的磷酸戊糖途径和适度的交替途径。结果表明,80%氧气+20%二氧化碳通过保留较高能量、抑制ROS含量、增强逆境耐受能力以及调节呼吸途径和ETC代谢,将蘑菇的储存时间延长至24天,并延缓了衰老。

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