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在幼体大菱鲆(Psetta maxima)中,膳食精氨酸降解是尿素生成的主要途径。

Dietary arginine degradation is a major pathway in ureagenesis in juvenile turbot (Psetta maxima).

作者信息

Gouillou-Coustans M F, Fournier V, Métailler R, Vachot C, Desbruyères E, Huelvan C, Moriceau J, Le Delliou H, Kaushik S J

机构信息

Laboratoire de Nutrition des Poissons, Unité mixte INRA-IFREMER, IFREMER, Centre de Brest, B.P 70. 29280, Plouzané, France.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2002 Jun;132(2):305-19. doi: 10.1016/s1095-6433(02)00032-6.

Abstract

Recent studies indicate that urea excretion is responsive to protein intake and that turbot, Psetta maxima, appear to differ from other species by their urea excretion pattern and levels. This study was undertaken to evaluate the influence of dietary nitrogen and arginine on ureagenesis and excretion in turbot. Juvenile turbot (29 g) were fed semi-purified diets containing graded levels of nitrogen (0-8% dry matter) and arginine (0-3% dry matter) for 6 weeks. Growth data showed that turbot have high dietary nitrogen (123 mg/kg metabolic body weight/day) and very low dietary arginine (9.3 mg/kg metabolic body weight/day) requirements for maintenance. Requirements for unit body protein accretion were 0.31 g and 0.15 g for nitrogen and arginine respectively. Post-prandial plasma urea levels and urea excretion rates showed that urea production was significantly (P<0.05) influenced by dietary arginine levels. While hepatic arginase (EC 3.5.3.1) activity increased significantly (P<0.05) with increasing dietary arginine levels, activities of other enzymes of the ornithine urea cycle were very low. Our data strongly suggest that the ornithine urea cycle is not active in the turbot liver and that dietary arginine degradation is a major pathway of ureagenesis in turbot.

摘要

近期研究表明,尿素排泄对蛋白质摄入量有反应,而且大菱鲆(Psetta maxima)的尿素排泄模式和水平似乎与其他物种不同。本研究旨在评估日粮氮和精氨酸对大菱鲆尿素生成和排泄的影响。将幼鱼期大菱鲆(29克)投喂含不同水平氮(0 - 8%干物质)和精氨酸(0 - 3%干物质)的半纯化日粮,为期6周。生长数据表明,大菱鲆维持生长所需的日粮氮水平较高(123毫克/千克代谢体重/天),而日粮精氨酸水平非常低(9.3毫克/千克代谢体重/天)。单位体蛋白增加所需的氮和精氨酸分别为0.31克和0.15克。餐后血浆尿素水平和尿素排泄率表明,日粮精氨酸水平对尿素生成有显著影响(P<0.05)。随着日粮精氨酸水平的增加,肝脏精氨酸酶(EC 3.5.3.1)活性显著增加(P<0.05),而鸟氨酸尿素循环的其他酶活性非常低。我们的数据有力地表明,鸟氨酸尿素循环在大菱鲆肝脏中不活跃,日粮精氨酸降解是大菱鲆尿素生成的主要途径。

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