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植物性水产饲料中色氨酸水平如何影响鱼类的生理学、新陈代谢和蛋白质组。

How tryptophan levels in plant-based aquafeeds affect fish physiology, metabolism and proteome.

机构信息

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

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

出版信息

J Proteomics. 2020 Jun 15;221:103782. doi: 10.1016/j.jprot.2020.103782. Epub 2020 Apr 15.

Abstract

Fish meal replacement by plant-protein sources is a priority in aquaculture feeds. Within this framework, dietary supplementation with essential amino acids (EAA), as tryptophan (TRP), is strategic to ensure that the individual nutritional needs are met, besides promoting enhanced immunological status. The purpose of this study was to examine the beneficial effects of TRP incorporation in plant-protein source diets on fish growth performance and nutritional status. We tested diets with 20% lower (LTRP) and 27% higher (HTRP) of the putative requirements of TRP for seabream (Sparus aurata) and assessed its impact on fish physiology and liver metabolism and proteome. After 12 weeks, growth performance, body proximate, hepatic composition and liver metabolic profiling were similar between diets. Nevertheless, liver proteome analysis indicated a higher accumulation of proteins involved in acute-phase responses, typically triggered by infection, inflammation or trauma, in fish fed with HTRP diet as compared with those fed with LTRP. The overall results obtained suggest a potential beneficial effect of TRP supplementation in terms of immune stimulation, without compromising growth or feed intake. Moreover, proteomics and metabolic profiling demonstrate to be valuable tools in this endeavour. SIGNIFICANCE: Nutritional needs are hard to assess in aquaculture fisheries, and many times controversial depending on the methodology employed. The estimated amino acid requirements depend on both fish species and stage development, making it extremely hard to standardise. On the other hand, the substitution of fish-based to plant-based protein sources diets towards a sustainable aquaculture, may imbalance these requirements, being necessary further studies to assess the impact on fish growth and development. Finally, the incorporation of crystalized amino acids such as TRP into diets aims global better performance both at fish health/immune condition and growth development. This work focused on the potential beneficial effects of TRP supplementation into diets with a plant-based protein source, addressing the effects on the liver metabolism and proteome, and on growth performance of Gilthead seabream juveniles, a species with special relevance and economical importance in the Mediterranean region. The present study by employing proteomics together with metabolic profiling shows that TRP supplementation at the tested doses, does not compromise growth performance, and seems to stimulate the immune system. Our findings can contribute to the development of new feed formulations for Gilthead seabream species, therefore, reinforcing the resilience and competitiveness of the on-growing aquaculture industry and impact directly the sustainability of living resources with the decrease of the fisheries needs to fulfil the human search for quality proteins consume.

摘要

用植物蛋白源替代鱼粉是水产养殖饲料的首要任务。在此框架内,通过补充必需氨基酸(EAA),如色氨酸(TRP),来满足个体的营养需求,同时促进增强免疫状态,这是具有战略意义的。本研究的目的是研究在植物蛋白源饲料中添加 TRP 对鱼类生长性能和营养状况的有益影响。我们测试了两种饲料,一种含 20%较低(LTRP)和 27%较高(HTRP)色氨酸需求量的饲料,并评估了其对海鲈(Sparus aurata)生理和肝脏代谢及蛋白质组的影响。12 周后,两种饲料的生长性能、体成分、肝组成和肝代谢谱无显著差异。然而,肝脏蛋白质组分析表明,与 LTRP 组相比,HTRP 组鱼肝脏中参与急性期反应的蛋白质积累更高,急性期反应通常由感染、炎症或创伤引发。总的来说,这些结果表明,TRP 补充在刺激免疫方面可能具有潜在的有益效果,而不会影响生长或饲料摄入。此外,蛋白质组学和代谢组学分析证明是这项研究的有用工具。意义:水产养殖中的营养需求很难评估,而且由于所采用的方法不同,往往存在争议。氨基酸需求量的估计取决于鱼类物种和发育阶段,因此极难标准化。另一方面,用植物蛋白源替代基于鱼类的饲料可能会使这些需求失去平衡,因此需要进一步的研究来评估其对鱼类生长和发育的影响。最后,将结晶氨基酸如 TRP 掺入饲料中,旨在提高鱼类的整体性能,无论是在鱼类的健康/免疫状况还是生长发育方面。本工作重点研究了在植物蛋白源饲料中添加 TRP 的潜在有益效果,研究了其对肝脏代谢和蛋白质组以及金头鲷幼鱼生长性能的影响,金头鲷是地中海地区具有特殊意义和经济重要性的物种。本研究通过采用蛋白质组学和代谢组学相结合的方法,表明在测试剂量下补充 TRP 不会影响生长性能,并且似乎可以刺激免疫系统。我们的研究结果可以为金头鲷的新型饲料配方的开发提供参考,从而增强养殖水产养殖业的弹性和竞争力,并通过减少满足人类对优质蛋白质需求的渔业捕捞,直接影响到生物资源的可持续性。

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