Maternal galactooligosaccharides supplementation programmed immune defense, microbial colonization and intestinal development in piglets

垃圾箱 后代 生物 粘蛋白2 粪便 妊娠期 封堵器 免疫系统 初乳 微生物学 粘蛋白 免疫学 怀孕 生理学 抗体 生物化学 紧密连接 基因表达 基因 农学 遗传学
作者
Yujun Wu,Xiangyu Zhang,Yu Pi,Dandan Han,Cuiping Feng,Junying Zhao,Lijun Chen,Dongsheng Che,Hongxing Bao,Zhengjun Xie,Junjun Wang
出处
期刊:Food & Function [Royal Society of Chemistry]
卷期号:12 (16): 7260-7270 被引量:22
标识
DOI:10.1039/d1fo00084e
摘要

The benefits of galactooligosaccharides (GOS) in neonates have been confirmed. However, the effects of nutritional programming by maternal GOS intervention on microbial colonization and intestinal development in the offspring remain unclear. In the present study, late gestational sows were fed with GOS (10 g d-1 added into the diet) or not until parturition, and the performances, immune status, microbiota composition and intestinal barriers in their piglets on day 21 were compared. GOS supplementation in pregnant sows improved their litter characteristics and the growth performance of their piglets during the neonatal stage (day 21), and elevated the plasma IgA levels in both sows and their piglets (P < 0.05). GOS intervention enriched fecal Alloprevotella and Ruminoclostridium_1 in gestational sows and vertically increased fecal Alloprevotella and Ruminococcaceae in their piglets (P < 0.05). Moreover, maternal GOS intervention increased fecal acetate (P < 0.05) and improved the intestinal barriers of their piglets by upregulating intestinal tight junctions (Occludin, Claudin-1, ZO-1), the goblet cell number and Mucin-2 (P < 0.05), which correlated positively with the colonized microbiota (P < 0.05). In summary, GOS supplementation for sows during late gestation nutritionally programmed maternal specific microbes and IgA of their offspring. This neonatal programming showed positive potential in promoting the intestinal barriers, immune defense, and growth performance of the piglets. Our findings provide evidence for maternal nutritional programming in neonates and insights for future application of GOS in maternal-neonatal nutrition.
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