Abundance of the dominant genera found in the enteritis and enterocolitis samples. The graph shows the relative abundance of the 2 dominant genera found in enteritis and enterocolitis samples as well as their mean relative abundance in the other diagnosis categories. (DOCX 132 kb
(1) Background: The intestinal microbiota plays an essential role in maintaining the host’s health. ...
All current studies have used Illumina short-read sequencing to characterize the equine intestinal m...
Clostridium difficile has been identified as a significant agent of diarrhoea and enterocolitis in b...
Principal coordinate analysis of the diarrhoeic and non-diarrhoeic horses. The 3 graphs show the sam...
Principal coordinate analysis of C. difficile positive and negative horses. The 3 graphs show the sa...
Quality analysis of the metagenetic libraries created for the horse faecal samples analysed. (DOCX 3...
Bacterial genus whose relative abundance was statistically different between C. difficile positive a...
Microbiota faecal composition at species level (cumulative mean relative abundance >4 %) of C. diffi...
Clinical history comparison between C. difficile colonised and non-colonised horses. aAntimicrobial ...
Background: The equine faecal microbiota is very complex and remains largely unknown, while interspe...
Detailed information on five C. difficile negative horses studied via high-throughput amplicon seque...
The gut microbiome of domestic horses (Equus ferus caballus) can be broken down into two primary div...
The intestinal tract houses one of the richest and most complex microbial populations on the planet,...
The intestinal tract houses one of the richest and most complex microbial populations on the planet,...
The study aimed at investigating temporal stability of faecal microbiota in horses managed non-inten...
(1) Background: The intestinal microbiota plays an essential role in maintaining the host’s health. ...
All current studies have used Illumina short-read sequencing to characterize the equine intestinal m...
Clostridium difficile has been identified as a significant agent of diarrhoea and enterocolitis in b...
Principal coordinate analysis of the diarrhoeic and non-diarrhoeic horses. The 3 graphs show the sam...
Principal coordinate analysis of C. difficile positive and negative horses. The 3 graphs show the sa...
Quality analysis of the metagenetic libraries created for the horse faecal samples analysed. (DOCX 3...
Bacterial genus whose relative abundance was statistically different between C. difficile positive a...
Microbiota faecal composition at species level (cumulative mean relative abundance >4 %) of C. diffi...
Clinical history comparison between C. difficile colonised and non-colonised horses. aAntimicrobial ...
Background: The equine faecal microbiota is very complex and remains largely unknown, while interspe...
Detailed information on five C. difficile negative horses studied via high-throughput amplicon seque...
The gut microbiome of domestic horses (Equus ferus caballus) can be broken down into two primary div...
The intestinal tract houses one of the richest and most complex microbial populations on the planet,...
The intestinal tract houses one of the richest and most complex microbial populations on the planet,...
The study aimed at investigating temporal stability of faecal microbiota in horses managed non-inten...
(1) Background: The intestinal microbiota plays an essential role in maintaining the host’s health. ...
All current studies have used Illumina short-read sequencing to characterize the equine intestinal m...
Clostridium difficile has been identified as a significant agent of diarrhoea and enterocolitis in b...