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海洋鱼类幼鱼营养的新方法。

Novel methodologies in marine fish larval nutrition.

机构信息

CCMAR-Centro de Ciências do Mar, Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.

出版信息

Fish Physiol Biochem. 2010 Mar;36(1):1-16. doi: 10.1007/s10695-009-9373-z. Epub 2009 Dec 25.

Abstract

Major gaps in knowledge on fish larval nutritional requirements still remain. Small larval size, and difficulties in acceptance of inert microdiets, makes progress slow and cumbersome. This lack of knowledge in fish larval nutritional requirements is one of the causes of high mortalities and quality problems commonly observed in marine larviculture. In recent years, several novel methodologies have contributed to significant progress in fish larval nutrition. Others are emerging and are likely to bring further insight into larval nutritional physiology and requirements. This paper reviews a range of new tools and some examples of their present use, as well as potential future applications in the study of fish larvae nutrition. Tube-feeding and incorporation into Artemia of (14)C-amino acids and lipids allowed studying Artemia intake, digestion and absorption and utilisation of these nutrients. Diet selection by fish larvae has been studied with diets containing different natural stable isotope signatures or diets where different rare metal oxides were added. Mechanistic modelling has been used as a tool to integrate existing knowledge and reveal gaps, and also to better understand results obtained in tracer studies. Population genomics may assist in assessing genotype effects on nutritional requirements, by using progeny testing in fish reared in the same tanks, and also in identifying QTLs for larval stages. Functional genomics and proteomics enable the study of gene and protein expression under various dietary conditions, and thereby identify the metabolic pathways which are affected by a given nutrient. Promising results were obtained using the metabolic programming concept in early life to facilitate utilisation of certain nutrients at later stages. All together, these methodologies have made decisive contributions, and are expected to do even more in the near future, to build a knowledge basis for development of optimised diets and feeding regimes for different species of larval fish.

摘要

鱼类幼鱼营养需求方面仍存在很大的知识空白。幼鱼体型小,且难以接受惰性微饲料,这使得研究进展缓慢而繁琐。鱼类幼鱼营养需求方面的知识缺乏是海洋幼鱼养殖中常见高死亡率和质量问题的原因之一。近年来,一些新的方法学为鱼类幼鱼营养研究带来了显著的进展。其他方法也在不断涌现,很可能会进一步深入了解幼鱼营养生理学和需求。本文综述了一系列新工具及其目前应用的一些例子,以及它们在鱼类幼鱼营养研究中的潜在未来应用。管饲法和在丰年虫中掺入(14)C-氨基酸和脂质,可用于研究丰年虫的摄食、消化和吸收以及这些营养素的利用。利用含有不同天然稳定同位素特征的饲料或添加不同稀有金属氧化物的饲料,研究了鱼类幼鱼的饲料选择。机制建模已被用作一种工具,以整合现有知识和揭示空白,并更好地理解示踪研究中获得的结果。群体基因组学可通过在相同的养殖池中饲养的鱼苗进行后代测试,来评估基因型对营养需求的影响,还可以识别幼鱼阶段的 QTL。功能基因组学和蛋白质组学可用于研究各种饮食条件下的基因和蛋白质表达,从而确定受特定营养素影响的代谢途径。在早期生活中使用代谢编程概念来促进某些营养素在后期的利用,这一方法取得了很有前景的结果。所有这些方法都做出了决定性的贡献,并有望在不久的将来做出更多贡献,为开发不同种类的幼鱼优化饲料和饲养方案奠定知识基础。

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