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斑点叉尾鮰分泌型细胞外产物作为抗柱状病潜在免疫原性因子的研究

Secreted Extracellular Products of as Potential Immunogenic Factors for Protection against Columnaris Disease in Channel Catfish ().

作者信息

Sayed Mohamed, Narayanan Lakshmi, Essa Manal, Lawrence Mark, Karsi Attila, Abdelhamed Hossam

机构信息

Department of Comparative Biomedical Sciences, College of Veterinary Medicine, Mississippi State University, Mississippi State, MS 39762, USA.

Department of Fish Diseases and Management, Faculty of Veterinary Medicine, Beni-Suef University,Beni-Suef 62511, Egypt.

出版信息

Pathogens. 2023 Jun 7;12(6):808. doi: 10.3390/pathogens12060808.

Abstract

Columnaris disease caused by leads to substantial economic losses in commercially important fish species worldwide. The US channel catfish () industry is particularly vulnerable to this disease. Therefore, there is an urgent need to develop a vaccine to reduce the economic losses caused by this disease. Secreted extracellular products (SEPs) are considered to be essential bacterial virulence factors that often provide immunogenicity and protection. The current study sought to identify the main SEPs of and to evaluate their potential to provide protection in channel catfish against columnaris disease. SDS-PAGE analysis of SEPs revealed five protein bands with molecular weights ranging from 13 to 99 kDa. Mass spectrometry analysis showed that these SEPs were hypothetical protein (AWN65_11950), zinc-dependent metalloprotease (AWN65_10205), DNA/RNA endonuclease G (AWN65_02330), outer membrane protein beta-barrel domain (AWN65_12620), and chondroitin-sulfate-ABC endolyase/exolyase (AWN65_08505). Catfish fingerlings were vaccinated with SEPs, SEPs emulsified with mineral oil adjuvant, or heat-inactivated SEPs, or they were sham-immunized through intraperitoneal (IP) injection. After 21 days, an challenge showed 58.77% and 46.17% survival in the catfish vaccinated with the SEPs and the SEPs emulsified with adjuvant compared to the sham-vaccinated control (100% mortality within 120 h post-infection). However, the heat-inactivated SEPs failed to provide significant protection (23.15% survival). In conclusion, although SEPs contain potentially important immunogenic proteins, further work is needed to optimize their use for long-lasting protection against columnaris disease in fish. These results are significant given the economic impact of columnaris disease on fish farming worldwide.

摘要

由柱状黄杆菌引起的柱状病给全球具有重要商业价值的鱼类品种造成了巨大经济损失。美国的沟鲶养殖业尤其容易受到这种疾病的影响。因此,迫切需要研发一种疫苗来减少这种疾病造成的经济损失。分泌性胞外产物(SEPs)被认为是重要的细菌毒力因子,通常具有免疫原性并能提供保护作用。当前的研究旨在鉴定柱状黄杆菌的主要SEPs,并评估它们在沟鲶中预防柱状病的潜力。对SEPs进行SDS-PAGE分析,发现了五条分子量在13至99 kDa之间的蛋白条带。质谱分析表明,这些SEPs分别是假定蛋白(AWN65_11950)、锌依赖性金属蛋白酶(AWN65_10205)、DNA/RNA内切核酸酶G(AWN65_02330)、外膜蛋白β桶结构域(AWN65_12620)和硫酸软骨素ABC内切酶/外切酶(AWN65_08505)。将沟鲶幼鱼通过腹腔注射接种SEPs、用矿物油佐剂乳化的SEPs、热灭活的SEPs,或进行假免疫。21天后,用柱状黄杆菌进行攻毒试验,结果显示接种SEPs和用佐剂乳化的SEPs的沟鲶存活率分别为58.77%和46.17%,而假接种对照组(感染后120小时内死亡率为100%)。然而,热灭活的SEPs未能提供显著的保护作用(存活率为23.15%)。总之,尽管SEPs含有潜在重要的免疫原性蛋白,但仍需要进一步研究以优化其在鱼类中预防柱状病的长效保护作用。考虑到柱状病对全球养鱼业的经济影响,这些结果具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/097f/10303445/abcf0e8dd8e9/pathogens-12-00808-g001.jpg

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