He Yiyi, Wei Yangyang, Ruan Shihui, Wu Qiwen, Xiong Yunxia, Wang Li, Jiang Zongyong, Xu E, Yi Hongbo
Key Laboratory of Animal Genetics, Breeding and Reproduction in the Plateau Mountainous Region, Ministry of Education, College of Animal Science, Guizhou University, Guiyang 550025, China.
State Key Laboratory of Swine and Poultry Breeding Industry, Key Laboratory of Animal Nutrition and Feed Science in South China, Guangdong Key Laboratory of Animal Breeding and Nutrition, Ministry of Agriculture and Rural Affairs, Institute of Animal Science, Guangdong Academy of Agricultural Sciences, 1 Dafeng 1st Street, Guangzhou 510640, China.
Animals (Basel). 2025 May 27;15(11):1567. doi: 10.3390/ani15111567.
Weaning stress leads to intestinal dysfunction and impaired growth performance and intestinal development in piglets. This study aims to investigate the effects of LR1 on growth performance and amino acid metabolism in the gut-liver axis of weaned piglets. A total of 48 weaned piglets (, 21 days old) were randomly assigned to the CON group (fed a basal diet) and the LR1 group (fed the basal diet supplemented with 5 × 10 CFU/kg of LR1) with six pens per group and 4 piglets each pen. The results demonstrated that LR1 significantly increased average daily gain (ADG), average daily feed intake (ADFI), and final body weight ( < 0.05). Additionally, LR1 significantly enhanced the villus height of the ileum ( < 0.05) and upregulated the expression of SLC6A19 in the jejunum, as well as SLC6A19, SLC7A1, and SLC38A9 in the ileum ( < 0.05). Amino acid analysis revealed that LR1 elevated the serum concentrations of glycine and hydroxyproline, along with increased taurine in the liver. Masson staining indicated LR1 reduced ileum fiber deposition, with COL3A1 identified as a key component. Furthermore, untargeted metabolomic analysis identified 27 amino acid-related differential metabolites and 11 significantly up-regulated in the plasma of the hepatic portal vein, including L-asparagine, L-citrulline, His-Cys, N-acetyltryptophan, 4-hydroxy-l-isoleucine, Gly-Arg, creatine, ornithine, ectoine, 3-methyl-l-histidine, and stachydrine. Correlation analysis suggested that COL1A2 and COL3A1 were closely associated with these metabolic changes. Overall, these findings suggest that LR1 supplementation promotes growth, improves intestinal morphology, reduces fiber deposition, and enhances amino acid metabolism in the gut-liver axis of weaned piglets.
断奶应激会导致仔猪肠道功能障碍、生长性能受损以及肠道发育受阻。本研究旨在探讨LR1对断奶仔猪肠-肝轴生长性能和氨基酸代谢的影响。选取48头21日龄断奶仔猪,随机分为对照组(饲喂基础日粮)和LR1组(饲喂添加5×10 CFU/kg LR1的基础日粮),每组6个栏,每栏4头仔猪。结果表明,LR1显著提高了平均日增重(ADG)、平均日采食量(ADFI)和末重(P<0.05)。此外,LR1显著提高了回肠绒毛高度(P<0.05),并上调了空肠中SLC6A19以及回肠中SLC6A19、SLC7A1和SLC38A9的表达(P<0.05)。氨基酸分析显示,LR1提高了血清甘氨酸和羟脯氨酸浓度,同时肝脏中牛磺酸含量增加。Masson染色表明LR1减少了回肠纤维沉积,其中COL3A1是关键成分。此外,非靶向代谢组学分析在肝门静脉血浆中鉴定出27种与氨基酸相关的差异代谢物,其中11种显著上调,包括L-天冬酰胺、L-瓜氨酸、His-Cys、N-乙酰色氨酸、4-羟基-L-异亮氨酸、Gly-Arg、肌酸、鸟氨酸、依克多因、3-甲基-L-组氨酸和水苏碱。相关性分析表明,COL1A2和COL3A1与这些代谢变化密切相关。总体而言,这些结果表明,添加LR1可促进断奶仔猪生长,改善肠道形态,减少纤维沉积,并增强肠-肝轴中的氨基酸代谢。