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饲料添加剂对斑点叉尾鮰苗种体表黏膜健康及柱状黄杆菌易感性的影响

Impact of feed additives on surface mucosal health and columnaris susceptibility in channel catfish fingerlings, Ictalurus punctatus.

作者信息

Zhao Honggang, Li Chao, Beck Benjamin H, Zhang Ran, Thongda Wilawan, Davis D Allen, Peatman Eric

机构信息

School of Fisheries, Aquaculture, and Aquatic Sciences, Auburn University, Auburn, AL 36849, USA.

Marine Science and Engineering College, Qingdao Agricultural University, Qingdao 266109, China.

出版信息

Fish Shellfish Immunol. 2015 Oct;46(2):624-37. doi: 10.1016/j.fsi.2015.07.005. Epub 2015 Jul 9.

Abstract

One of the highest priority areas for improvement in aquaculture is the development of dietary additives and formulations which provide for complete mucosal health and protection of fish raised in intensive systems. Far greater attention has been paid to dietary impact on gut health than to protective effects at other mucosal surfaces such as skin and gill. These exterior surfaces, however, are important primary targets for pathogen attachment and invasion. Flavobacterium columnare, the causative agent of columnaris disease, is among the most prevalent of all freshwater disease-causing bacteria, impacting global aquaculture of catfish, salmonids, baitfish and aquaria-trade species among others. This study evaluated whether the feeding of a standard catfish diet supplemented with Alltech dietary additives Actigen(®), a concentrated source of yeast cell wall-derived material and/or Allzyme(®) SSF, a fermented strain of Aspergillus niger, could offer protection against F. columnare mortality. A nine-week feeding trial of channel catfish fingerlings with basal diet (B), B + Allzyme(®) SSF, B + Actigen(®) and B + Actigen(®)+Allzyme(®) SSF revealed good growth in all conditions (FCR < 1.0), but no statistical differences in growth between the treatments were found. At nine weeks, based on pre-challenge trial results, basal, B + Actigen(®), and B + Allzyme(®) SSF groups of fish were selected for further challenges with F. columnare. Replicated challenge with a virulent F. columnare strain, revealed significantly longer median days to death in B + Allzyme(®) SSF and B + Actigen(®) when compared with the basal diet (P < 0.05) and significantly higher survival following the eight day challenge period in B + Actigen(®) when compared with the other two diets (P < 0.05). Given the superior protection provided by the B + Actigen(®) diet, we carried out transcriptomic comparison of gene expression of fish fed that diet and the basal diet before and after columnaris challenge using high-throughput RNA-seq. Pathway and enrichment analyses revealed changes in mannose receptor DEC205 and IL4 signaling at 0 h (prior to challenge) which likely explain a dramatic divergence in expression profiles between the two diets soon after pathogen challenge (8 h). Dietary mannose priming resulted in reduced expression of inflammatory cytokines, shifting response patterns instead to favor resolution and repair. Our results indicate that prebiotic dietary additives may provide protection extending beyond the gut to surface mucosa.

摘要

水产养殖中最优先改进的领域之一是开发膳食添加剂和配方,以确保集约化养殖系统中鱼类的黏膜完全健康并得到保护。人们对膳食对肠道健康的影响给予了更多关注,而对皮肤和鳃等其他黏膜表面的保护作用关注较少。然而,这些体表是病原体附着和入侵的重要主要靶点。柱状黄杆菌是柱状病的病原体,是所有淡水致病细菌中最常见的一种,影响着鲶鱼、鲑科鱼类、饵料鱼和水族贸易品种等的全球水产养殖。本研究评估了在标准鲶鱼饲料中添加奥特奇膳食添加剂Actigen(®)(一种酵母细胞壁衍生物质的浓缩来源)和/或Allzyme(®)SSF(一种黑曲霉发酵菌株)是否能预防柱状黄杆菌导致的死亡。对鲶鱼幼鱼进行为期九周的饲养试验,饲料分别为基础饲料(B)、B + Allzyme(®)SSF、B + Actigen(®)和B + Actigen(®)+Allzyme(®)SSF,结果显示在所有条件下生长良好(饲料转化率<1.0),但各处理组之间的生长无统计学差异。九周时,根据攻毒前试验结果,选择基础饲料组、B + Actigen(®)组和B + Allzyme(®)SSF组的鱼进一步用柱状黄杆菌攻毒。用强毒株柱状黄杆菌进行重复攻毒,结果显示与基础饲料组相比,B + Allzyme(®)SSF组和B + Actigen(®)组的中位死亡天数显著延长(P < 0.05),与其他两种饲料相比,B + Actigen(®)组在八天攻毒期后的存活率显著更高(P < 0.05)。鉴于B + Actigen(®)饲料提供了更好的保护,我们使用高通量RNA测序对攻毒前后喂食该饲料和基础饲料的鱼的基因表达进行了转录组比较。通路和富集分析显示,在0小时(攻毒前)甘露糖受体DEC205和IL4信号发生变化,这可能解释了病原体攻毒后不久(8小时)两种饲料表达谱的巨大差异。膳食甘露糖引发导致炎性细胞因子表达降低,转而有利于炎症消退和修复的反应模式。我们的结果表明,益生元膳食添加剂可能提供超出肠道范围的保护,延伸至体表黏膜。

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