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长期调节虹鳟鱼()对蔬菜饮食的脂肪感知:重点关注游离脂肪酸受体及其信号转导。

Long-term regulation of fat sensing in rainbow trout () fed a vegetable diet from the first feeding: focus on free fatty acid receptors and their signalling.

机构信息

INRAE, Université de Pau et des Pays de l'Adour, E2S UPPA, UMR1419 Nutrition Metabolism and Aquaculture, Aquapôle, F-64310 Saint-Pée-sur-Nivelle, France.

出版信息

Br J Nutr. 2024 Jan 14;131(1):1-16. doi: 10.1017/S0007114523001599. Epub 2023 Jul 20.

DOI:10.1017/S0007114523001599
PMID:37469170
Abstract

Taste plays a fundamental role in an animal’s ability to detect nutrients and transmits key dietary information to the brain, which is crucial for its growth and survival. Providing alternative terrestrial ingredients early in feeding influences the growth of rainbow trout (RT, ). Thus, the present study aimed to assess the influence, long-term feeding (from the first feeding to 8 months), of alternative plant ingredients (V diet for vegetable diet C diet for a control diet) in RT on the mechanism of fat sensing at the gustatory level. After the feeding trial, we studied the pathways of the fat-sensing mechanism in tongue tissue and the integrated response in the brain. To this end, we analysed the expression pattern of free fatty acid receptors () 1 and 2, markers of calcium-signalling pathways (phospholipase C, Orai, Stim or Serca), the serotonin level (a key neurotransmitter in taste buds) and the expression pattern of appetite-regulating neuropeptides in the hypothalamus (central area of appetite regulation). The results revealed that the V diet modified the expression pattern of and paralogs of genes in tongue tissue, along with differential regulation of calcium-signalling pathways and a defect in serotonin level and brain turnover, without influencing neuropeptide expression. This study is the first to support that changes in feeding behaviour of RT fed a V diet could be due to the difference in nutrient sensing and a decrease in hedonic sensation. We revealed that RT have similar fat-detection mechanisms as mammals.

摘要

味觉在动物检测营养物质的能力中起着至关重要的作用,并将关键的饮食信息传递给大脑,这对其生长和生存至关重要。在早期喂养中提供替代的陆生成分会影响虹鳟鱼的生长(RT,)。因此,本研究旨在评估替代植物成分(V 饮食为蔬菜饮食,C 饮食为对照饮食)在 RT 长期喂养(从第一次喂养到 8 个月)中对味觉层面脂肪感知机制的影响。在喂养试验后,我们研究了舌组织中脂肪感知机制的途径和大脑的综合反应。为此,我们分析了游离脂肪酸受体()1 和 2 的表达模式、钙信号通路的标志物(磷脂酶 C、Orai、Stim 或 Serca)、血清素水平(味蕾中的关键神经递质)和下丘脑食欲调节神经肽的表达模式(食欲调节的中枢区域)。结果表明,V 饮食改变了舌组织中 和基因的同工型的表达模式,同时钙信号通路的差异调节、血清素水平和大脑周转率的缺陷,而不影响神经肽的表达。这项研究首次支持 RT 喂食 V 饮食时的喂养行为变化可能是由于营养感知的差异和快感的下降。我们揭示了 RT 具有与哺乳动物相似的脂肪检测机制。

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