College of Life and Environmental Science, Wenzhou University, Wenzhou, China.
Department of Biotechnology and Bioengineering, Chonnam National University, Gwangju, South Korea.
J Sci Food Agric. 2022 Aug 30;102(11):4802-4812. doi: 10.1002/jsfa.11843. Epub 2022 Mar 15.
Prebiotics, such as algal polysaccharides, can be used to manage metabolic diseases by modulating gut microbiota. However, the effect of Pyropia yezoensis porphyran (PYP), a red algal polysaccharide, on gut microbiota has not been reported. Thus, the objective of this study was to determine effects of PYP on metabolic disorders caused by high sucrose (HS) and underlying mechanisms involved in such effects.
Biochemical analysis demonstrated that an HS diet increased triglyceride and circulating sugar contents (metabolic abnormalities) in Drosophila larvae. It also increased the relative abundance of harmful microbiota within the larvae as identified by 16S ribosomal DNA analysis. PYP supplementation at 25 and 50 g kg equivalently reduced metabolic abnormalities in the HS group. Therefore, 25 g kg PYP was selected to investigate its effects on the metabolic pathway and gut microbiota of larvae in the HS group. The activity of PYP in ameliorating metabolic abnormalities by reverse transcription quantitative real-time polymerase chain reaction analysis was consistent with the expression trend of key factors involved in metabolism regulation. PYP reduced the relative abundance of bacteria causing metabolic abnormalities, such as Escherichia-Shigella and Fusobacterium, but increased the relative abundance of beneficial bacteria such as Bacillus and Akkermansia. However, PYP had no effect on triglyceride and circulating sugar contents in HS-fed larvae treated with a mixture of antibiotics designed to remove gut microbiota.
PYP exhibits anti-metabolic disorder activity by modulating gut microbiota, thereby supporting the development of PYP as a functional prebiotic derived from red algae food. Copyright © 2022 John Wiley & Sons, Ltd. © 2022 Society of Chemical Industry.
通过调节肠道微生物群,益生元如海藻多糖可用于治疗代谢疾病。然而,红藻多糖条斑紫菜岩藻聚糖(PYP)对肠道微生物群的影响尚未报道。因此,本研究旨在确定 PYP 对高蔗糖(HS)引起的代谢紊乱的影响及其作用机制。
生化分析表明,HS 饮食增加了果蝇幼虫的甘油三酯和循环糖含量(代谢异常)。16S 核糖体 DNA 分析还表明,HS 组内有害微生物的相对丰度增加。25 和 50 g kg 的 PYP 补充剂等效地降低了 HS 组的代谢异常。因此,选择 25 g kg 的 PYP 来研究其对 HS 组幼虫代谢途径和肠道微生物群的影响。通过逆转录定量实时聚合酶链反应分析,PYP 改善代谢异常的活性与代谢调节相关关键因素的表达趋势一致。PYP 降低了引起代谢异常的细菌的相对丰度,如大肠杆菌-志贺氏菌和梭菌,但增加了有益细菌如芽孢杆菌和阿克曼氏菌的相对丰度。然而,PYP 对 HS 喂养的幼虫中用设计用于去除肠道微生物群的抗生素混合物处理后的甘油三酯和循环糖含量没有影响。
PYP 通过调节肠道微生物群表现出抗代谢紊乱活性,从而支持将 PYP 作为一种功能性藻类食品来源的益生元进行开发。版权所有© 2022 约翰威立父子公司