首页> 外文期刊>Review in aquaculture >Bile acid metabolism in fish: disturbances caused by fishmeal alternatives and some mitigating effects from dietary bile inclusions
【24h】

Bile acid metabolism in fish: disturbances caused by fishmeal alternatives and some mitigating effects from dietary bile inclusions

机译:鱼类胆汁代谢:鱼粉替代品引起的紊乱以及膳食胆汁夹杂物的一些缓解效果

获取原文
获取原文并翻译 | 示例
           

摘要

Bile is a yellow-green liquid produced in the liver from cholesterol and stored in the gallbladder of vertebrates. Bile improves the efficacy of lipid digestion by acting as an emulsifier and is essential in activating bile salt lipase, an enzyme that has broad substrate specificity. Bile improves the absorption of lipid soluble nutrients while also facilitating the excretion of cholesterol and toxic metabolites, particularly bilirubin. Dietary fishmeal alternatives often disturb bile acid status in fish resulting in either increased excretion/decreased intestinal reabsorption and/or decreased bile acid synthesis. Saponins and high molecular mass proteins are believed to contribute to altered bile acid status, which may reduce fish productivity. This situation can worsen with increased incorporations of plant-based proteins in aquafeeds, but also may be mitigated by processing of fishmeal alternatives as well as the dietary inclusion of some bile acids/salts. This area of research will likely increase due to the roles dietary bile acids/salts can have on protecting digestive organs and improving nutrient utilization. This, however, depends on the bile type, level and fish species. This review discusses these aspects in regard to fish nutrition to help increase the inclusion of dietary fishmeal alternatives and thus enhance aquaculture sustainability.
机译:胆汁是一种在肝脏中产生的黄绿色液体,并储存在脊椎动物的胆囊中。胆汁通过用作乳化剂来改善脂质消化的功效,并且在活化胆汁盐脂肪酶中是必需的,该酶具有具有宽底物特异性的酶。胆汁改善了脂溶性营养物的吸收,同时还促进了胆固醇和毒性代谢物的排泄,特别是胆红素。饮食鱼粉替代品经常干扰鱼类中的胆汁酸地位,导致肠道重吸收和/或胆酸合成减少增加。据信皂苷和高分子质量蛋白有助于改变胆汁酸实,这可能降低鱼类生产率。这种情况可以随着Aquafeeds中的植物蛋白掺入增加而恶化,但也可以通过处理鱼片替代品以及一些胆汁酸/盐的膳食包裹来缓解。由于膳食胆汁酸/盐可以具有保护消化器官和提高营养利用,因此该研究领域可能会增加。然而,这取决于胆汁类型,水平和鱼种。本综述讨论了对鱼类营养的这些方面,以帮助增加饮食炸药替代品,从而提高水产养殖可持续性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号