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Book ChapterDOI

Nutrition and Functions of Amino Acids in Fish.

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TLDR
In this paper, the digestibility and bioavailability of AAs should be carefully evaluated because feed production processes and AA degradation in the gut affect the amounts of dietary AAs that enter the blood circulation.
Abstract
Aquaculture is increasingly important for providing humans with high-quality animal protein to improve growth, development and health. Farm-raised fish and shellfish now exceed captured fisheries for foods. More than 70% of the production cost is dependent on the supply of compound feeds. A public debate or concern over aquaculture is its environmental sustainability as many fish species have high requirements for dietary protein and fishmeal. Protein or amino acids (AAs), which are the major component of tissue growth, are generally the most expensive nutrients in animal production and, therefore, are crucial for aquatic feed development. There is compelling evidence that an adequate supply of both traditionally classified nutritionally essential amino acids (EAAs) and non-essential amino acids (NEAAs) in diets improve the growth, development and production performance of aquatic animals (e.g., larval metamorphosis). The processes for the utilization of dietary AAs or protein utilization by animals include digestion, absorption and metabolism. The digestibility and bioavailability of AAs should be carefully evaluated because feed production processes and AA degradation in the gut affect the amounts of dietary AAs that enter the blood circulation. Absorbed AAs are utilized for the syntheses of protein, peptides, AAs, and other metabolites (including nucleotides); biological oxidation and ATP production; gluconeogenesis and lipogenesis; and the regulation of acid-base balance, anti-oxidative reactions, and immune responses. Fish producers usually focus on the content or digestibility of dietary crude protein without considering the supply of AAs in the diet. In experiments involving dietary supplementation with AAs, inappropriate AAs (e.g., glycine and glutamate) are often used as the isonitrogenous control. At present, limited knowledge is available about either the cell- and tissue-specific metabolism of AAs or the effects of feed processing methods on the digestion and utilization of AAs in different fish species. These issues should be addressed to develop environment-friendly aquafeeds and reduce feed costs to sustain the global aquaculture.

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Journal ArticleDOI

Nutrition and Metabolism: Foundations for Animal Growth, Development, Reproduction, and Health.

TL;DR: In this article, the authors discuss how to mitigate antimicrobial resistance and develop prebiotic and probiotic alternatives to in-feed antibiotics in animal production, while helping reduce greenhouse gas emissions, minimize the urinary and fecal excretion of nitrogenous and other wastes to the environment, and sustain animal agriculture (including aquaculture).
Book ChapterDOI

Nutrition and Functions of Amino Acids in Aquatic Crustaceans.

TL;DR: A review of amino acid metabolism in aquatic crustacean species at different life stages can be found in this article, where the authors highlight recent advances in AA nutrition and metabolism for optimum growth, health and wellbeing of crustaceans.
Book ChapterDOI

Composition of Amino Acids in Foodstuffs for Humans and Animals.

TL;DR: Amino acids (AAs) are the building blocks of proteins that have both structural and metabolic functions in humans and other animals as mentioned in this paper, and proteinogenic AAs are alanine, arginine, asparagine, aspartate, cysteine, glutamate, glutamine, glycine, histidine, isoleucine, leucine and lysine, methionine, phenylalanine.
Journal ArticleDOI

Hydroxyproline in animal metabolism, nutrition, and cell signaling

TL;DR: Trans-4-hydroxy-l-proline is highly abundant in collagen (accounting for about one-third of body proteins in humans and other animals) and has both structural and physiological significance in animals.
Journal ArticleDOI

Protein-Sourced Feedstuffs for Aquatic Animals in Nutrition Research and Aquaculture.

TL;DR: Aquatic animals have particularly high requirements for dietary amino acids (AAs) for health, survival, growth, development, and reproduction, and therefore are the determinants of the growth performance and feed efficiency of farmed fish as mentioned in this paper.
References
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Journal ArticleDOI

Effects of taurine supplementation in live feeds on larval rearing performance of California yellowtail Seriola lalandi and white seabass Atractoscion nobilis

TL;DR: The larval rearing performance of California yellowtail and white seabass was compared and taurine is a limiting nutrient in the larviculture of S. lalandi but may not be for A. nobilis.
Journal ArticleDOI

Bioavailability of lysine in Maillard browned protein as determined by plasma lysine response in rainbow trout (Salmo gairdneri).

TL;DR: The nutritional damage to lysine determined by plasma lysines response was similar to that estimated in vitro by enzymatic hydrolysis and fluorodinitrobenzene reagent, but was underestimated by acid hydroleysis and trinitro Benzene sulfonic acid reagent.
Journal ArticleDOI

Reducing dietary protein in pond production of hybrid striped bass (Morone chrysops × M. saxatilis): Effects on fish performance and water quality dynamics

TL;DR: Results suggest that DP can be lowered from 41% DP to 35% DP by careful diet formulation while supplementing the first three limiting amino acids (Met, Lys Thr) without detrimental changes to body composition or nutrient retentions.
Journal ArticleDOI

Leucine metabolism in trout (Salmo gairdnerii R.). Influence of temperature

TL;DR: Leucine supply by protein breakdown was low (below 45%) compared to dietary supply of leucine, and the relative contribution of liver, digestive tract and muscle to overall amino acid metabolism is discussed.
Journal ArticleDOI

Use of alternative protein sources for fishmeal replacement in the diet of largemouth bass ( Micropterus salmoides ). Part II: effects of supplementation with methionine or taurine on growth, feed utilization, and health

TL;DR: In this article, a new mixture of feedstuffs (45% poultry byproduct meal, 30% soybean meal, 15% blood meal, and 10% krill shrimp meal) was added to low (14.5%) fishmeal diets along with 0.5% taurine alone to the low-fishmeal diet.
Related Papers (5)
Trending Questions (1)
What are the effects of weaning on amino acids metabolites in fish?

The effects of weaning on amino acid metabolites in fish are not mentioned in the provided paper. The paper discusses the importance of amino acids in fish nutrition and the processes involved in their utilization.