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抗坏血酸对皱纹盘鲍免疫力、抗氧化能力及细胞凋亡的调节作用

Ascorbic Acid Regulates the Immunity, Anti-Oxidation and Apoptosis in Abalone Ino.

作者信息

Luo Kai, Li Xinxin, Wang Liu, Rao Wanxiu, Wu Yang, Liu Yue, Pan Mingzhu, Huang Dong, Zhang Wenbing, Mai Kangsen

机构信息

The Key Laboratory of Aquaculture Nutrition and Feeds, Ministry of Agriculture and Rural Affairs, The Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao 266003, China.

出版信息

Antioxidants (Basel). 2021 Sep 13;10(9):1449. doi: 10.3390/antiox10091449.

Abstract

The present study was conducted to investigate the roles of ascorbic acid (AA) in immune response, anti-oxidation and apoptosis in abalone ( Ino). Seven semi-purified diets with graded levels of AA (0, 50, 100, 200, 500, 1000 and 5000 mg/kg) were fed to abalone (initial weight: 12.01 ± 0.001 g, initial shell length: 48.44 ± 0.069 mm) for 100 days. The survival, weight gain rate and daily increment in shell length were not affected by dietary AA. The AA content in the gill, muscle and digestive glands of abalone was significantly increased by dietary AA. In terms of immunity, dietary AA significantly improved the total hemocyte count, respiratory burst and phagocytic activity in hemolymph, and lysozyme activity in cell-free hemolymph (CFH). In the digestive gland, the TLR-MyD88-dependent and TLR-MyD88-independent signaling pathways were suppressed by dietary AA supplementation. The mRNA levels of and in the digestive gland were significantly increased by dietary AA. In the gill, only the TLR-MyD88-dependent signaling pathway was depressed by dietary AA to reduce inflammation in abalone. The level of in the gill was significantly upregulated by dietary AA. After infection, the TLR signaling pathway in the digestive gland was suppressed by dietary AA, which reduced inflammation in the abalone. In terms of anti-oxidation, superoxide dismutase, glutathione peroxidase and catalase activities, as well as total anti-oxidative capacity and reduced glutathione content in CFH, were all significantly upregulated. The malondialdehyde content was significantly downregulated by dietary AA. The anti-oxidative capacity was improved by triggering the Keap1-Nrf2 pathway in abalone. In terms of apoptosis, dietary AA could enhance the anti-apoptosis ability via the JNK-Bcl-2/Bax signaling cascade in abalone. To conclude, dietary AA was involved in regulating immunity, anti-oxidation and apoptosis in abalone.

摘要

本研究旨在探讨抗坏血酸(AA)在鲍鱼(皱纹盘鲍)免疫反应、抗氧化和细胞凋亡中的作用。将七种不同AA水平(0、50、100、200、500、1000和5000mg/kg)的半纯化饲料投喂给鲍鱼(初始体重:12.01±0.001g,初始壳长:48.44±0.069mm),为期100天。饲料中的AA对鲍鱼的存活率、增重率和壳长日增长量没有影响。饲料中的AA显著提高了鲍鱼鳃、肌肉和消化腺中的AA含量。在免疫方面,饲料中的AA显著提高了血淋巴细胞总数、呼吸爆发和血淋巴中的吞噬活性,以及无细胞血淋巴(CFH)中的溶菌酶活性。在消化腺中,饲料添加AA抑制了TLR-MyD88依赖性和TLR-MyD88非依赖性信号通路。饲料中的AA显著提高了消化腺中 和 的mRNA水平。在鳃中,饲料中的AA仅抑制了TLR-MyD88依赖性信号通路,以减轻鲍鱼的炎症。饲料中的AA显著上调了鳃中的 水平。感染 后,饲料中的AA抑制了消化腺中的TLR信号通路,从而减轻了鲍鱼的炎症。在抗氧化方面,超氧化物歧化酶、谷胱甘肽过氧化物酶和过氧化氢酶活性,以及CFH中的总抗氧化能力和还原型谷胱甘肽含量均显著上调。饲料中的AA显著下调了丙二醛含量。通过激活鲍鱼中的Keap1-Nrf2途径提高了抗氧化能力。在细胞凋亡方面,饲料中的AA可通过JNK-Bcl-2/Bax信号级联增强鲍鱼的抗凋亡能力。总之,饲料中的AA参与调节鲍鱼的免疫、抗氧化和细胞凋亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03f0/8465606/41ba11c776ee/antioxidants-10-01449-g001.jpg

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