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21 Profiling sow vaginal and fecal and piglet gastrointestinal microbiome and the passage of sow microbiome to their progeny from birth to weaning

机译:21分析母猪阴道和粪便和仔猪胃肠道微生物组和母猪微生物组的通过从出生到断奶后的后代

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摘要

The objectives of this study were 1) to profile the sow vaginal and fecal microbiome and the corresponding piglet gastrointestinal microbiome from birth to weaning, and 2) to identify the core microbiome shared between sows and piglets. A total of 226 samples collected from sows (vaginal swabs pre-farrow; fecal samples at farrow, d 3, 7, 10, 17 post-farrow) and their progenies (stomach, ileum, and colon digesta at birth, d 2, and 14 after birth) were used for the analyses of microbial community structure using 16S rRNA V4 amplicon sequencing with Illumina MiSeq. Our data indicated that the piglet and sow microbiome were quite distinct. Piglets had lower bacterial alpha diversity (chao1, richness, Shannon, Simpson indices; P < 0.01) than sows across all timepoints. Beta diversity of piglets by sample types was significantly different (P < 0.001) than sows by sample types when averaged across all timepoints or separation by timepoints. Feature selection by the Linear discriminant analysis effect size (LEfSe) indicated that the genera associated with piglets included those classified as Lactobacillus, unclassified Micrococcaceae, and Rothia when averaged across sampling points and sample types. Genera associated with sows included those classified as Treponema, YRC22, Unclassified RF39, Unclassified Christensenellaceae, Turicibacter, Unclassified RFP12, Unclassified F16, Collinsella, Coprococcus, Unclassified Coriobacteriaceae, and Unclassified Mogibacteriaceae. The genera shared between sow vaginal samples and piglets included those classified as Bacteroides, Fusobacterium, Haemophilus, Prevotella, Veillonella, and unclassified Clostridiadiaceae. The genera shared between sow fecal and piglet samples included those classified as Bacteroides, Lactobacillus, unclassified Clostridiadiaceae, unclassified Ruminococceae, and Prevotella. Overall, there are evidences that bacterial genera were passed from sows to piglets and influenced the microbial communities of piglets later in life.
机译:本研究的目的是1)来分析母猪阴道和粪便微生物和相应的仔猪胃肠微生物从出生到断奶,和2)以识别母猪和仔猪之间共享的核心微生物。从母猪收集总共226个样本(阴道拭子预产仔猪;在产仔粪便样品,d 3,7,10,17后产仔猪)和它们的后代(胃,回肠,并在出生结肠食糜,d 2,和出生后14)用于使用的16S rRNA扩增子V4与测序Illumina公司MiSeq微生物群落结构的分析。我们的数据表明,仔猪和母猪微生物是截然不同的。仔猪具有较低的细菌α-多样性(超1,丰富度,香农,辛普森指数; P <0.01)比在所有时间点的母猪。通过样品类型仔猪beta多样性是不是由时间点在所有的时间点或分离时的平均样品类型母猪显著不同(P <0.001)。通过线性判别分析效果大小(LEfSe)特征选择表示与仔猪相关联的属包括那些归类为乳杆菌属,微球菌非保密和Rothia当跨越的采样点和样品类型平均。与母猪相关属包括那些归类为梅毒螺旋,YRC22,未分类RF39,未分类Christensenellaceae,Turicibacter,未分类RFP12,未分类F16,柯林斯,Coprococcus,未分类红蝽菌科,和未分类Mogibacteriaceae。母猪阴道样本和仔猪之间共享的属包括的那些归类为杆菌,梭杆菌,嗜血杆菌属,普雷沃氏,小韦荣,和未分类Clostridiadiaceae。母猪粪便和仔猪样品之间共享的属包括那些归类为类杆菌,乳杆菌,非保密Clostridiadiaceae,未分类Ruminococceae,和普氏菌。总体来说,有证据表明细菌属从母猪传给小猪并影响以后的生活仔猪的微生物群落。

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