Effect of l -tryptophan and melatonin supplementation on the serotonin gastrointestinal content and digestive enzymatic activity for Salmo salar and Oncorhynchus kisutch

生物 萨尔莫 内科学 内分泌学 血清素 褪黑素 色氨酸 色氨酸羟化酶 胃肠道 钩吻 消化酶 淀粉酶 生物化学 5-羟色胺能 氨基酸 渔业 受体 医学
作者
O. Mardones,E. Devia,B.S. Labbé,R. Oyarzún,Luis Vargas‐Chacoff,J.L.P. Muñoz
出处
期刊:Aquaculture [Elsevier]
卷期号:482: 203-210 被引量:30
标识
DOI:10.1016/j.aquaculture.2017.10.003
摘要

Several studies describe gastrointestinal tract (GIT) melatonin (MEL) synthesis from 5-HT, which itself derives from the essential amino acid l-tryptophan (l-trp) in the intestine. Supplementing l-trp and MEL through diet has shown social-response effects and suppresses neuroendocrine stress in teleosts. In this study, the effects of a MEL and l-trp-supplemented diet on the endocrine intestinal function and enzymatic response activity of two salmonid species were examined. To assess the possible effect of l-trp and MEL on intestinal serotonin content and digestive enzyme activity, three l-trp-supplemented diets and three MEL-supplemented diets were orally administered to a group of Salmo salar and Oncorhynchus kisutch for seven days under normal density conditions. Plasma biochemistry (cortisol, l-trp, MEL) as well as enzyme activity (amylase, lipase, and total protease) and serotonin content were measured in the pyloric caeca, midgut, and hindgut. Plasma l-trp levels were found to be directly related to l-trp supplemented diet levels. Similarly, MEL supplementation increased plasma MEL levels, and the presence of MEL in both salmon species resulted in a significant interaction with cortisol concentrations in plasma, and the highest concentrations of l-trp caused an increased GIT content for 5-HT in S. salar. No differences were seen in the GIT content for 5-HT for the l-trp supplemented diets in O. kisutch. An inhibitory effect was found on digestive enzymes in the supplemented diets of both salmonid species. In general, the presence of MEL in the diet reduced cortisol levels; diets supplemented with l-trp and MEL had either a stimulatory or inhibitory effect on digestive enzyme activity, which seemed to be indirect and tissue dependent.

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