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Genomic and Transcriptomic Analysis of Escherichia coli Strains Associated with Persistent and Transient Bovine Mastitis and the Role of Colanic Acid
Author(s) -
John D. Lippolis,
Devin B. Holman,
Brian W. Brunelle,
Tyler C. Thacker,
Bradley L. Bearson,
Timothy A. Reinhardt,
Randy E. Sacco,
Thomas A. Casey
Publication year - 2017
Publication title -
infection and immunity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.508
H-Index - 220
eISSN - 1070-6313
pISSN - 0019-9567
DOI - 10.1128/iai.00566-17
Subject(s) - biology , transcriptome , escherichia coli , mastitis , microbiology and biotechnology , genetics , transient (computer programming) , enterobacteriaceae , computational biology , gene , gene expression , operating system , computer science
Escherichia coli is a leading cause of bacterial mastitis in dairy cattle. It is most often transient in nature, causing an infection that lasts 2 to 3 days. However,E. coli has been shown to cause a persistent infection in a minority of cases. Mechanisms that allow for a persistentE. coli infection are not fully understood. The goal of this work was to determine differences betweenE. coli strains originally isolated from dairy cattle with transient and persistent mastitis. Using RNA sequencing, we show gene expression differences in nearly 200 genes when bacteria from the two clinical phenotypes are compared. We sequenced the genomes of theE. coli strains and report genes unique to the two phenotypes. Differences in thewca operon, which encodes colanic acid, were identified by DNA as well as RNA sequencing and differentiated the two phenotypes. Previous work demonstrated thatE. coli strains that cause persistent infections were more motile than those that cause transient infections. Deletion of genes in thewca operon from a persistent-infection strain resulted in a reduction of motility as measured in swimming and swarming assays. Furthermore, colanic acid has been shown to protect bacteria from complement-mediated killing. We show that transient-infectionE. coli strains were more sensitive to complement-mediated killing. The deletion of genes from thewca operon caused a persistent-infectionE. coli strain to become sensitive to complement-mediated killing. This work identifies important differences betweenE. coli strains that cause persistent and transient mammary infections in dairy cattle.

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