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枯草芽孢杆菌(LCBS1)后生元(细胞壁成分)衍生物缓解了大豆蛋白诱导的牛蛙(美洲牛蛙)肠炎。

Derivatives of postbiotics (cell wall constituents) from Bacillus subtilis (LCBS1) relieve soybean meal-induced enteritis in bullfrog (Aquarana catesbeianus).

机构信息

Xiamen Key Laboratory for Feed Quality Testing and Safety Evaluation, Fisheries College, Jimei University, Xiamen 361021, China.

North American Renderers Association, Alexandria, VA, USA.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 4):135359. doi: 10.1016/j.ijbiomac.2024.135359. Epub 2024 Sep 5.

Abstract

Soybean meal (SM) serves as a primary alternative to fish meal in aquafeeds. However, a high-SM diet may result in intestinal injury. Our previous study demonstrated the probiotic effects of heat-inactivated Bacillus subtilis (LCBS1) on bullfrogs (Aquarana catesbeianus) fed a high-SM diet, probably attributed to the bioactive constituent of cell wall. Therefore, in this study, the main constituents of cell wall from LCBS1, including peptidoglycan (PGN), lipoteichoic acid (LTA), cell wall protein (CWP), and whole cell wall (WCW), were extracted and added to a high-SM (~55 %) diet to investigate their probiotic effects on bullfrogs and reveal the possible mechanisms. The results indicated that bullfrogs fed the LTA of LCBS1 showed the highest weight gain, feed efficiency, and protein efficiency ratio. Additionally, the LTA of LCBS1 could activate the humoral immunity and modulate intestinal microbiota. It might activate JAK2-STAT3 and MAPK-ERK pathways, as well as up-regulate tlr5 gene to promote intestinal cell proliferation, thereby alleviating jejunal injury. The WCW of LCBS1 effectively increased the growth performance of bullfrogs by improving the humoral immunity, enhancing intestinal barrier function, and alleviating intestinal inflammatory response. The PGN and CWP of LCBS1 could stimulate the humoral immunity and enhance intestinal barrier function, but had no significant effect on the growth performance of bullfrogs. In conclusion, the LTA might be the primary bioactive constituent of heat-inactivated LCBS1, with the beneficial effects of promoting intestinal cell proliferation and enhancing intestinal barrier function, therefore alleviating the intestinal injury induced by SM on bullfrogs. This study establishes a theoretical basis for the efficient utilization of plant proteins by the application of postbiotics additive in aquafeed, which further saves the feed costs and promotes development of economically sustainable aquaculture.

摘要

豆粕是水产饲料中替代鱼粉的主要原料。然而,高豆粕日粮可能导致肠道损伤。我们之前的研究表明,热灭活枯草芽孢杆菌(LCBS1)对摄食高豆粕日粮的牛蛙(Aquarana catesbeianus)具有益生菌作用,这可能归因于细胞壁的生物活性成分。因此,在本研究中,从 LCBS1 中提取细胞壁的主要成分,包括肽聚糖(PGN)、脂磷壁酸(LTA)、细胞壁蛋白(CWP)和全细胞壁(WCW),并将其添加到高豆粕(~55%)日粮中,以研究它们对牛蛙的益生菌作用,并揭示可能的机制。结果表明,摄食 LCBS1 的 LTA 的牛蛙表现出最高的体重增加、饲料效率和蛋白质效率比。此外,LCBS1 的 LTA 可以激活体液免疫并调节肠道微生物群。它可能通过激活 JAK2-STAT3 和 MAPK-ERK 通路以及上调 tlr5 基因来促进肠道细胞增殖,从而缓解空肠损伤。LCBS1 的 WCW 通过改善体液免疫、增强肠道屏障功能和缓解肠道炎症反应,有效提高牛蛙的生长性能。LCBS1 的 PGN 和 CWP 可以刺激体液免疫和增强肠道屏障功能,但对牛蛙的生长性能没有显著影响。总之,LTA 可能是热灭活 LCBS1 的主要生物活性成分,具有促进肠道细胞增殖和增强肠道屏障功能的有益作用,从而缓解豆粕对牛蛙引起的肠道损伤。本研究为应用后生元添加剂在水产饲料中有效利用植物蛋白奠定了理论基础,进一步节省了饲料成本,促进了经济可持续水产养殖的发展。

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