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Overview of nutritional strategies affecting health of marine fish

机译:影响海洋鱼类健康的营养策略概述

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A review. Proper nutrition plays a critical role in maintaining normal growth and health of cultured fish. A variety of nutritional strategies may influence fish health, including adjustment of specific nutrient levels in the diet, manipulation of nutritional condition through feeding regimens, and administration of non-nutrient immunostimulants in the diet. Research on several fishes, including some marine and diadromous species such as salmonids, has established that immunocompetence and diseaseresistance can be compromised by deficiencies of various nutrients, especially certain vitamins and minerals. Thus, adequate levels of these micronutrients must be supplied in prepared diets to support optimal growth and production efficiency of fish inaquaculture. In addition, dietary supplementation of some of these micronutrients in excess of minimum requirement levels has been shown to significantly enhance immune responses and disease resistance of various animals. Overfortification of such nutrients as vitamin C, vitamin E, and selenium have shown positive influences on immunity and disease resistance in some studies but no effects in other studies. Management practices that affect the nutritional condition of fish also may influence their health and ability to resist disease. Recent research on freshwater fish indicates certain feeding regimens, including moderate feed deprivation, alter a fish's resistance to disease. Such feeding regimens potentially may be applied to reduce losses of marinefish in aquaculture. Dietary supplementation of non-nutrient immunostimulatory compounds also has attracted considerable interest due to positive responses of several fish species in terms of non-specific immunity and disease resistance. Compounds suchas beta-1,3-glucans which are derived from yeasts and fungi have been shown to change the activation level of different parts of the non-specific immune system, resulting in significantly reduced mortality after challenge with various pathogens. Some ofthese compounds have become commercially available in recent years, but their efficacy has been variable when administered in the diet. Specific examples concerning application of these various nutritional strategies in aquaculture are presented. Furtheradvancements in these areas may allow nutritional modulation of the immune response to be used as an effective and relatively inexpensive alternative to chemical therapy in combating diseases of fish in aquaculture.
机译:回顾。适当的营养在维持养殖鱼的正常生长和健康中起着至关重要的作用。多种营养策略可能会影响鱼类健康,包括调整饮食中特定营养水平,通过进食方案控制营养状况以及在饮食中施用非营养免疫刺激剂。对几种鱼类(包括某些海洋和双翅类鱼类,如鲑鱼)的研究已经确定,各种营养素(尤其是某些维生素和矿物质)的缺乏会损害免疫能力和疾病抵抗力。因此,必须在准备好的日粮中提供足够水平的这些微量营养素,以支持鱼类水产养殖的最佳生长和生产效率。此外,已经显示,某些微量营养素的膳食补充超过最低需求水平会显着增强各种动物的免疫应答和疾病抵抗力。在某些研究中,维生素C,维生素E和硒等营养素的过度强化已显示出对免疫力和抗病性的积极影响,而在其他研究中则没有影响。影响鱼类营养状况的管理措施也可能影响鱼类的健康和抵抗疾病的能力。最近对淡水鱼的研究表明,某些进食方式(包括适度的饲料剥夺)会改变鱼对疾病的抵抗力。这种喂食方案可能可用于减少水产养殖中海水鱼的损失。由于几种鱼类在非特异性免疫和抗病性方面的积极反应,非营养性免疫刺激性化合物的膳食补充也引起了人们的极大兴趣。已显示衍生自酵母和真菌的化合物(例如β-1,3-葡聚糖)会改变非特异性免疫系统不同部分的激活水平,从而在攻击各种病原体后导致死亡率显着降低。这些化合物中的一些已在近年商业化,但在饮食中施用时其功效却有所不同。介绍了有关在水产养殖中应用这些各种营养策略的具体例子。这些领域的进一步发展可以使免疫应答的营养调节在防治水产养殖鱼类疾病中用作化学疗法的有效且相对廉价的替代品。

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