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家禽饲料添加剂理想微生物植酸酶综述:其来源、生产、酶活性评估、市场规模及监管

Review on Desirable Microbial Phytases as a Poultry Feed Additive: Their Sources, Production, Enzymatic Evaluation, Market Size, and Regulation.

作者信息

Urgessa Olyad Erba, Koyamo Rufael, Dinka Hunduma, Tefese Ketema, Gemeda Mesfin Tafesse

机构信息

School of Biological Sciences and Biotechnology, College of Natural and Computational Sciences, Haramaya University, Dire Dawa, Ethiopia.

Department of Applied Biology, School of Applied Natural Science, Adama Science and Technology University, Adama, Ethiopia.

出版信息

Int J Microbiol. 2024 Jun 7;2024:9400374. doi: 10.1155/2024/9400374. eCollection 2024.

Abstract

Poultry's digestive tract lacks hydrolytic phytase enzymes, which results in chelation of dietary minerals, vital amino acids, proteins, and carbohydrates, phytate-phosphate unavailability, and contamination of the environment due to phosphorus. Therefore, it is necessary to use exogenous microbial phytases as feed additive to chicken feed to catalyze the hydrolysis of dietary phytate. Potential sources of microbial isolates that produce desired phytases for chicken feed supplementation have been isolated from agricultural croplands. It is achievable to isolate phytase-producing bacteria isolates using both broth and agar phytase screening media. Potential substrates for submerged fermentation (SmF) for bacterial phytase production and solid-state fermentation (SSF) for fungal phytase production include rice and wheat bran. Following fermentation, saturated ammonium sulphate precipitation is typically used to partially purify microbial culture filtrate. The precipitate is then desalted. Measurements of the pH optimum and stability, temperature optimum and stability, metal ions stability, specificity and affinity to target substrate, proteolysis resistance, storage stability, and in vitro feed dephosphorylation are used to perform an enzymatic evaluation of phytase as an additive for poultry feed. The growth of the feed phytase market is primarily due to the expansion of chicken farms to meet the demand for meat and eggs from humans. The Food and Drug Administration in the USA and the European Food and Safety Authority are primarily in charge of putting rules pertaining to feed phytase use in chicken feed into effect. Conclusively, important components of the production of phytase additives for poultry feed include identifying a reliable source for potential microbe isolation, selecting an economical method of phytase production, thoroughly characterizing the biochemical properties of phytase, and comprehending the size and regulation of the current feed phytase market.

摘要

家禽的消化道缺乏水解植酸酶,这会导致日粮矿物质、必需氨基酸、蛋白质和碳水化合物的螯合,植酸磷无法利用,以及因磷导致的环境污染。因此,有必要在家禽饲料中使用外源微生物植酸酶作为饲料添加剂,以催化日粮植酸的水解。已从农田中分离出可产生用于补充鸡饲料的所需植酸酶的微生物分离株的潜在来源。使用肉汤和琼脂植酸酶筛选培养基均可分离出产植酸酶的细菌分离株。用于细菌植酸酶生产的深层发酵(SmF)和用于真菌植酸酶生产的固态发酵(SSF)的潜在底物包括米糠和麦麸。发酵后,通常使用饱和硫酸铵沉淀法对微生物培养滤液进行部分纯化。然后将沉淀物脱盐。通过测量最适pH值和稳定性、最适温度和稳定性、金属离子稳定性、对目标底物的特异性和亲和力、抗蛋白水解性、储存稳定性以及体外饲料脱磷酸作用,对作为家禽饲料添加剂的植酸酶进行酶学评估。饲料植酸酶市场的增长主要归因于养鸡场的扩张,以满足人类对肉和蛋的需求。美国食品药品监督管理局和欧洲食品安全局主要负责实施与鸡饲料中使用饲料植酸酶相关的规定。总之,家禽饲料植酸酶添加剂生产的重要组成部分包括确定潜在微生物分离的可靠来源、选择经济的植酸酶生产方法、全面表征植酸酶的生化特性,以及了解当前饲料植酸酶市场的规模和监管情况。

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