Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets
The jejunum is the primary organ for digestion and nutrient absorption in mammals. The development of the jejunum in suckling piglets directly affects their growth performance post-weaning. The jejunum microbiome plays an important role in proliferation, metabolism, apoptosis, immune, and homeostasi...
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doaj-2b466144dfff44b691189a505f28a4ef2020-11-25T01:36:05ZengMDPI AGAnimals2076-26152019-09-0191071310.3390/ani9100713ani9100713Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling PigletsJipeng Jin0Liping Zhang1Jianlei Jia2Qian Chen3Zan Yuan4Xiaoyan Zhang5Weibo Sun6Cunming Ma7Fafang Xu8Shoujun Zhan9Limin Ma10Guihua Zhou11College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, ChinaKey of Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining 810016, ChinaCollege of Agriculture and Animal Husbandry, Qinghai University, Xining 810016, ChinaCollege of Agriculture and Animal Husbandry, Qinghai University, Xining 810016, ChinaCollege of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, ChinaCollege of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, ChinaQinghai Province Huzhu County Bamei Pig Seed Breeding Farm, Huzhu, Qinghai 810500, ChinaQinghai Province Huzhu County Bamei Pig Seed Breeding Farm, Huzhu, Qinghai 810500, ChinaQinghai Province Huzhu County Bamei Pig Seed Breeding Farm, Huzhu, Qinghai 810500, ChinaQinghai Province Huzhu County Bamei Pig Seed Breeding Farm, Huzhu, Qinghai 810500, ChinaQinghai Province Huzhu County Bamei Pig Seed Breeding Farm, Huzhu, Qinghai 810500, ChinaThe jejunum is the primary organ for digestion and nutrient absorption in mammals. The development of the jejunum in suckling piglets directly affects their growth performance post-weaning. The jejunum microbiome plays an important role in proliferation, metabolism, apoptosis, immune, and homeostasis of the epithelial cells within the organ. The composition and diversity of the gut microbiome is susceptible to the protein composition of the diet. Therefore, the effects of maternal low-protein diets on piglets’ intestinal microbial structure and function have become a hot topic of study. Herein, a maternal low-protein diet was formulated to explore the effects on jejunum microbiome composition and metabolic profiles in Bamei suckling piglets. Using 16S ribosomal RNA (16S rRNA) sequencing in conjunction with bioinformatics analysis, 21 phyla and 297 genera were identified within the gut microflora. The top 10 phyla and 10 genera are within the gut bacteria. Next, KEGG analysis showed that the low-protein diet significantly increased the gut microbial composition, transport and catabolism, immune system, global and overview maps, amino acid metabolism, metabolism of cofactors and vitamins, endocrine system, biosynthesis of other secondary metabolites, signal transduction, environmental adaptation, and cell motility. Taken together, low-protein diets do not appear to affect the reproductive performance of Bamei sows but improved the gut microbiome of the suckling piglets as well as reduced the probability of diarrhea. The data presented here provide new insights on the dietary protein requirements to support the Huzhu Bamei pig industry.https://www.mdpi.com/2076-2615/9/10/713maternal low-protein diet16S rRNAjejunum microbiotasuckling pigletsbioinformatics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jipeng Jin Liping Zhang Jianlei Jia Qian Chen Zan Yuan Xiaoyan Zhang Weibo Sun Cunming Ma Fafang Xu Shoujun Zhan Limin Ma Guihua Zhou |
spellingShingle |
Jipeng Jin Liping Zhang Jianlei Jia Qian Chen Zan Yuan Xiaoyan Zhang Weibo Sun Cunming Ma Fafang Xu Shoujun Zhan Limin Ma Guihua Zhou Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets Animals maternal low-protein diet 16S rRNA jejunum microbiota suckling piglets bioinformatics |
author_facet |
Jipeng Jin Liping Zhang Jianlei Jia Qian Chen Zan Yuan Xiaoyan Zhang Weibo Sun Cunming Ma Fafang Xu Shoujun Zhan Limin Ma Guihua Zhou |
author_sort |
Jipeng Jin |
title |
Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets |
title_short |
Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets |
title_full |
Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets |
title_fullStr |
Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets |
title_full_unstemmed |
Effects of Maternal Low-Protein Diet on Microbiota Structure and Function in the Jejunum of Huzhu Bamei Suckling Piglets |
title_sort |
effects of maternal low-protein diet on microbiota structure and function in the jejunum of huzhu bamei suckling piglets |
publisher |
MDPI AG |
series |
Animals |
issn |
2076-2615 |
publishDate |
2019-09-01 |
description |
The jejunum is the primary organ for digestion and nutrient absorption in mammals. The development of the jejunum in suckling piglets directly affects their growth performance post-weaning. The jejunum microbiome plays an important role in proliferation, metabolism, apoptosis, immune, and homeostasis of the epithelial cells within the organ. The composition and diversity of the gut microbiome is susceptible to the protein composition of the diet. Therefore, the effects of maternal low-protein diets on piglets’ intestinal microbial structure and function have become a hot topic of study. Herein, a maternal low-protein diet was formulated to explore the effects on jejunum microbiome composition and metabolic profiles in Bamei suckling piglets. Using 16S ribosomal RNA (16S rRNA) sequencing in conjunction with bioinformatics analysis, 21 phyla and 297 genera were identified within the gut microflora. The top 10 phyla and 10 genera are within the gut bacteria. Next, KEGG analysis showed that the low-protein diet significantly increased the gut microbial composition, transport and catabolism, immune system, global and overview maps, amino acid metabolism, metabolism of cofactors and vitamins, endocrine system, biosynthesis of other secondary metabolites, signal transduction, environmental adaptation, and cell motility. Taken together, low-protein diets do not appear to affect the reproductive performance of Bamei sows but improved the gut microbiome of the suckling piglets as well as reduced the probability of diarrhea. The data presented here provide new insights on the dietary protein requirements to support the Huzhu Bamei pig industry. |
topic |
maternal low-protein diet 16S rRNA jejunum microbiota suckling piglets bioinformatics |
url |
https://www.mdpi.com/2076-2615/9/10/713 |
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