Literature DB >> 1541602

Properties of ionophore-resistant Bacteroides ruminicola enriched by cultivation in the presence of tetronasin.

C J Newbold1, R J Wallace, N D Watt.   

Abstract

Bacteroides ruminicola M384 was grown in the presence of increasing concentrations of tetronasin, an ionophore that has been developed as a feed additive for ruminants. The resulting culture, B. ruminicola M384/TnR, was then maintained in medium containing 0.1 microgram tetronasin/ml. Growth of the parent strain was eliminated by the addition of 0.1 micrograms tetronasin/ml, but the growth rate of B. ruminicola M384/TnR, which grew more slowly than the parent strain, was unaffected by adding tetronasin. Bacteroides ruminicola M384/TnR retained its resistance to tetronasin even after repeated subculture in the absence of the ionophore, suggesting that a mutation had occurred. The absence of plasmids in individual colonies of B. ruminicola M384/TnR implied that the mutation was chromosomal. Bacteroides ruminicola M384/TnR was also more resistant to the ionophores monensin and lasalocid and, to a lesser degree, to the antibiotic avoparcin than B. ruminicola M384. Binding of [14C]tetronasin to B. ruminicola M384/TnR was lower than binding of the ionophore to the parent stain, and this difference was eliminated by washing cells with EDTA. The peptidolytic activity of B. ruminicola M384 towards triphenylalanine (Mr = 460) was unaffected in B. ruminicola M384/TnR, but the rate of breakdown tetraphenylalanine (Mr = 607) was decreased. This difference was also abolished by EDTA. It was concluded that growth of B. ruminicola in the presence of tetronasin resulted in a mutation affecting the permeability of the cell envelope, such that permeation of tetronasin and molecules of a similar size (Mr = 628) was decreased.

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Year:  1992        PMID: 1541602     DOI: 10.1111/j.1365-2672.1992.tb04883.x

Source DB:  PubMed          Journal:  J Appl Bacteriol        ISSN: 0021-8847


  6 in total

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3.  Monensin has no effect on growth and metabolism of Megasphaera elsdenii.

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4.  Biochemical and mutational analysis of a gingipain-like peptidase activity from Prevotella ruminicola B(1)4 and its role in ammonia production by ruminal bacteria.

Authors:  H M Madeira; L Peng; M Morrison
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5.  Ammonia production by ruminal microorganisms and enumeration, isolation, and characterization of bacteria capable of growth on peptides and amino acids from the sheep rumen.

Authors:  S C P Eschenlauer; N McKain; N D Walker; N R McEwan; C J Newbold; R J Wallace
Journal:  Appl Environ Microbiol       Date:  2002-10       Impact factor: 4.792

6.  Unknown Risk on the Farm: Does Agricultural Use of Ionophores Contribute to the Burden of Antimicrobial Resistance?

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Journal:  mSphere       Date:  2019-09-25       Impact factor: 4.389

  6 in total

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