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棘腹龙虾能量代谢包括蛋白质合成中饲料蛋白的作用。

Effect of dietary protein on energy metabolism including protein synthesis in the spiny lobster Sagmariasus verreauxi.

机构信息

Institute for Marine and Antarctic Studies (IMAS), University of Tasmania, Private Bag 49, Hobart, TAS, 7001, Australia.

出版信息

Sci Rep. 2021 Jun 3;11(1):11814. doi: 10.1038/s41598-021-91304-1.

Abstract

This is the first study in an aquatic ectotherm to combine a stoichiometric bioenergetic approach with an endpoint stochastic model to explore dietary macronutrient content. The combination of measuring respiratory gas (O and CO) exchange, nitrogenous (ammonia and urea) excretion, specific dynamic action (SDA), metabolic energy substrate use, and whole-body protein synthesis in spiny lobster, Sagmariasus verreauxi, was examined in relation to dietary protein. Three isoenergetic feeds were formulated with varying crude protein: 40%, 50% and 60%, corresponding to CP, CP and CP treatments, respectively. Total CO and ammonia excretion, SDA magnitude and coefficient, and protein synthesis in the CP treatment were higher compared to the CP treatment. These differences demonstrate dietary protein influences post-prandial energy metabolism. Metabolic use of each major energy substrate varied at different post-prandial times, indicating suitable amounts of high-quality protein with major non-protein energy-yielding nutrients, lipid and carbohydrate, are critical for lobsters. The average contribution of protein oxidation was lowest in the CP treatment, suggesting mechanisms underlying the most efficient retention of dietary protein and suitable dietary inclusion. This study advances understanding of how deficient and surplus dietary protein affects energy metabolism and provides approaches for fine-scale feed evaluation to support sustainable aquaculture.

摘要

这是首次在水生变温动物中结合化学计量生物能量方法和终点随机模型来探索饮食宏量营养素含量的研究。在刺龙虾(Sagmariasus verreauxi)中,我们检查了与饮食蛋白质有关的呼吸气体(O 和 CO)交换、含氮(氨和尿素)排泄、特定动力作用(SDA)、代谢能量底物利用和全身蛋白质合成的测量。用三种等能量饲料配制,粗蛋白分别为 40%、50%和 60%,分别对应 CP、CP 和 CP 处理。与 CP 处理相比,CP 处理的总 CO 和氨排泄、SDA 幅度和系数以及蛋白质合成更高。这些差异表明饮食蛋白质影响餐后能量代谢。在不同的餐后时间,每种主要能量底物的代谢利用情况不同,这表明适量的高质量蛋白质与主要的非蛋白质能量产生营养素、脂肪和碳水化合物对于龙虾至关重要。CP 处理中蛋白质氧化的平均贡献最低,这表明了最有效地保留饮食蛋白质和适当饮食包含的机制。本研究增进了对饮食中缺乏和过剩蛋白质如何影响能量代谢的理解,并为支持可持续水产养殖的精细饲料评估提供了方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d96d/8175413/96c7768aa794/41598_2021_91304_Fig1_HTML.jpg

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