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251 Oxidation of energy substrates in tissues of Largemouth bass (Micropterus salmoides)

机译:251大汤鲈鱼组织中能量底物的氧化(MicroPterus Salmoides)

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摘要

Because of growing interest in producing Largemouth bass (HMB) as a source of high-quality protein for human consumption worldwide, it is imperative to understand the metabolism of nutrients (including amino acids and carbohydrate) in this aquatic animal. The present study tested the hypothesis that amino acids are oxidized at a higher rate than carbohydrates (e.g., glucose) and fatty acids (e.g., palmitate) to provide ATP for tissues of LMB fed a 45%-crude protein diet. The liver, intestine, kidney, and skeletal muscle were isolated from juvenile LMB and incubated at 26 °C (the body temperature of LMB) for 2 h in 1 ml of oxygenated Krebs–Henseleit bicarbonate buffer (pH 7.4) containing a mixture of nutrients (2 mM glutamate, 2 mM glutamine, 2 mM aspartate, 2 mM alanine, 2 mM leucine, 5 mM glucose, and 2 mM palmitate). The rate of oxidation of each energy substrate was determined by using [U-14C]-labeled glutamate, glutamine, aspartate, alanine, leucine, glucose, or palmitate and collecting 14CO2 from each tracer. Results indicated that aspartate, glutamate and glutamine were extensively oxidized in all the four tissues and contributed to 67% of total ATP production. Glutamate contributed to more ATP than glutamine in the intestine, whereas similar amounts of ATP were produced from glutamate and glutamine in the liver, kidneys and skeletal muscle. In all the four tissues, rates of oxidation of alanine, leucine, palmitate and glucose were low and each of those nutrients contributed to < 10% of total ATP production. Together, the oxidation of aspartate, glutamate, glutamine, alanine plus leucine provided 82–85% of total ATP for the liver, intestine, kidney, and skeletal muscle. We conclude that amino acids, rather than glucose and long-chain fatty acids, are the primary energy substrates in the major tissues of Largemouth bass.
机译:由于在全世界生产巨大的鲈鱼(HMB)作为人类消费的高质量蛋白质来源的兴趣日益增长,因此必须了解该水生动物中营养素(包括氨基酸和碳水化合物)的新陈代谢。本研究检测了假设,即氨基酸以比碳水化合物(例如葡萄糖)和脂肪酸(例如,棕榈酸酯)更高的速率氧化,以提供15%蛋白饮食的LMB组织的ATP。肝脏,肠,肾和骨骼肌从幼年LMB分离,并在26℃(LMB的体温为1mb的体温)中孵育2小时,含有营养混合物的1ml含氧krebs-henseleit碳酸氢盐缓冲液(pH7.4) (2毫米谷氨酸,2mM谷氨酰胺,2mM天冬氨酸,2mM丙氨酸,2mM亮氨酸,5mm葡萄糖和2mm棕榈酸甘氨酸)。每个能量衬底的氧化速度通过使用[U-14C] - 标记的谷氨酸,谷氨酰胺,天门冬氨酸,丙氨酸,亮氨酸,葡萄糖,或棕榈酸,并且从每个采集示踪测定14CO2。结果表明,在所有四种组织中,天冬氨酸,谷氨酸和谷氨酰胺在所有四种组织中被广泛氧化,并导致占ATP总产量的67%。谷氨酸在肠道中的谷氨酰胺有助于更多的ATP,而在肝脏,肾脏和骨骼肌中由谷氨酸和谷氨酰胺产生类似的ATP。在所有四种组织中,丙氨酸氧化率,亮氨酸,棕榈酸盐和葡萄糖的速率低,并且这些营养素中的每一种都有助于总ATP生产的10%。共同,天冬氨酸,谷氨酸,谷氨酰胺,丙氨酸的氧化氧化,肝脏,肠道,肾脏和骨骼肌的82-85%提供82-85%。我们得出结论,氨基酸,而不是葡萄糖和长链脂肪酸,是大型鲈鱼主要组织中的主要能量底物。

著录项

  • 期刊名称 Journal of Animal Science
  • 作者

    Xinyu Li; Guoyao Wu;

  • 作者单位
  • 年(卷),期 2019(97),Suppl 3
  • 年度 2019
  • 页码 68–69
  • 总页数 2
  • 原文格式 PDF
  • 正文语种
  • 中图分类 动物学;
  • 关键词

    机译:氨基酸;能量代谢;肠道;

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