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鱼类饲料中的可溶性非淀粉多糖:对鱼类代谢的影响。

Soluble non-starch polysaccharides in fish feed: implications for fish metabolism.

机构信息

Joint Laboratory of Guangdong Province and Hong Kong Region On Marine Bioresource Conservation and Exploitation, College of Marine Sciences, South China Agricultural University, Guangzhou, 510642, China.

Guangdong Laboratory for Lingnan Modern Agriculture, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Fish Physiol Biochem. 2024 Feb;50(1):1-22. doi: 10.1007/s10695-022-01131-y. Epub 2022 Oct 11.

Abstract

Because of their unique glycosidic bond structure, non-starch polysaccharides (NSP) are difficult for the stomach to break down. NSP can be classified as insoluble NSP (iNSP, fiber, lignin, etc.) and soluble NSP (sNSP, oligosaccharides, β-glucan, pectin, fermentable fiber, inulin, plant-derived polysaccharides, etc.). sNSP is viscous, fermentable, and soluble. Gut microbiota may catabolize sNSP, which can then control fish lipid, glucose, and protein metabolism and impact development rates. This review examined the most recent studies on the impacts of various forms of sNSP on the nutritional metabolism of various fish in order to comprehend the effects of sNSP on fish. According to certain investigations, sNSP can enhance fish development, boost the activity of digestive enzymes, reduce blood sugar and cholesterol, enhance the colonization of good gut flora, and modify fish nutrition metabolism. In-depth research on the mechanism of action is also lacking in most studies on the effects of sNSP on fish metabolism. It is necessary to have a deeper comprehension of the underlying processes by which sNSP induce host metabolism. This is crucial to address the main issue of the sensible use of carbohydrates in fish feed.

摘要

由于其独特的糖苷键结构,非淀粉多糖(NSP)很难被胃分解。NSP 可分为不溶性 NSP(iNSP,纤维、木质素等)和可溶性 NSP(sNSP,寡糖、β-葡聚糖、果胶、可发酵纤维、菊粉、植物来源多糖等)。sNSP 具有粘性、可发酵和可溶性。肠道微生物群可能会分解 sNSP,从而控制鱼类的脂质、葡萄糖和蛋白质代谢,并影响生长速度。本综述考察了最近关于各种形式的 sNSP 对各种鱼类营养代谢影响的研究,以了解 sNSP 对鱼类的影响。根据某些调查,sNSP 可以促进鱼类生长,提高消化酶活性,降低血糖和胆固醇,增强有益肠道菌群的定植,并改变鱼类营养代谢。但大多数关于 sNSP 对鱼类代谢影响的研究都缺乏对其作用机制的深入研究。需要更深入地了解 sNSP 诱导宿主代谢的基本过程。这对于解决鱼类饲料中碳水化合物的合理使用这一主要问题至关重要。

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