Effect of benzoic acid supplementation on growth performance and early development of gastrointestinal tract function and immune system in artificially reared suckling piglets

IF 1.8 3区 农林科学 Q2 AGRICULTURE, DAIRY & ANIMAL SCIENCE
C.M. Crone, A.P. Rasmussen, C. Larsen, A.R. Williams, M.H. Eskildsen, E.M.H. Christensen, L.V. de Knegt, C. Amdi, J.G. Madsen
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Abstract

The practice of weaning at 21 to 28 days of age in conventional pig production poses a challenge to the digestive tract of piglets. Post-weaning challenges like diarrhea, small intestinal villous atrophy, and decreased feed intake (FI) are a consequence of the abrupt change in diet from sow milk to solid feed. The aim of this study was to investigate the effect of benzoic acid (BA) to artificially reared suckling piglets on growth performance, intestinal morphology and change in gene expression in the small intestine (SI). Twenty-seven one-day-old piglets were included in this study, and randomly allocated between three dietary groups. All three groups received milk replacer (MR) throughout the entire experimental period. One group only received MR (CON), one was supplemented with liquid creep feed (LCF) (MRLF) from day 10, and one was supplemented with LCF with 0.5% BA (BEN) from day 10. Piglets were euthanized and post-mortem examinations conducted on days 28 and 29 of the experiment. Small intestinal tissue samples were collected for analysis of morphological parameters and gene expression. Results displayed no effect on growth performance, however, the feed conversion ratio was higher (p < 0.05) for MRLF compared to CON in P2 (days 10-28) and higher (p < 0.05) in MRLF and BEN compared to CON P1+P2 (days 1-28). A tendency (p < 0.10) to an increased villus height in the proximal part of the SI and increased (p < 0.05) villus width in the medial part of the SI were observed for BEN, when compared to CON and MRLF. Furthermore, pathways related to the immune system and metabolism were enriched (Adj. p < 0.05) by BEN in comparison to CON and MRLF. In conclusion, BA did show some potential to enhance the intestinal integrity in the pre-weaning period, and thereby developing a more robust piglet during the peri‑weaning period.
添加苯甲酸对人工饲养哺乳仔猪生长性能及胃肠道功能和免疫系统早期发育的影响
在传统养猪生产中,21 ~ 28日龄断奶对仔猪的消化道构成了挑战。断奶后腹泻、小肠绒毛萎缩和采食量减少(FI)等挑战是日粮从母猪奶突然转变为固体饲料的结果。本试验旨在研究苯甲酸(BA)对人工饲养哺乳仔猪生长性能、肠道形态及小肠基因表达变化的影响。试验选用27头1日龄仔猪,随机分为3个饲粮组。在整个试验期间,三组均给予代乳剂(MR)。1组仅饲喂MR (CON), 1组从第10天开始添加液体蠕变饲料(MRLF), 1组从第10天开始添加0.5% BA (BEN)的LCF。试验第28、29天对仔猪实施安乐死并进行尸检。采集小肠组织标本,进行形态学参数和基因表达分析。结果显示,对生长性能没有影响,但饲料系数较高(p <;与P2(10-28天)的CON相比,MRLF的发生率更高(p <;与CON P1+P2相比(第1-28天),MRLF和BEN的差异为0.05。趋势(p <;0.10)到SI近端绒毛高度增加,并增加(p <;与CON和MRLF相比,BEN在SI内侧观察到绒毛宽度(0.05)。此外,与免疫系统和代谢相关的途径被丰富(Adj. p <;与CON和MRLF相比,BEN的评分为0.05)。综上所述,BA确实显示出一定的增强断奶前肠道完整性的潜力,从而在断奶期培养出更健壮的仔猪。
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来源期刊
Livestock Science
Livestock Science 农林科学-奶制品与动物科学
CiteScore
4.30
自引率
5.60%
发文量
237
审稿时长
3 months
期刊介绍: Livestock Science promotes the sound development of the livestock sector by publishing original, peer-reviewed research and review articles covering all aspects of this broad field. The journal welcomes submissions on the avant-garde areas of animal genetics, breeding, growth, reproduction, nutrition, physiology, and behaviour in addition to genetic resources, welfare, ethics, health, management and production systems. The high-quality content of this journal reflects the truly international nature of this broad area of research.
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