Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis

The influence of the over-expression of CmbT multidrug resistance transporter on the growth rate of Lactococcus lactis NZ9000 was studied. L. lactis is a lactic acid bacteria (LAB) widely used as a starter culture in dairy industry. Recently characterized CmbT MDR transporter in L. lactis confers...

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Main Authors: Filipić Brankica, Jovčić Branko, Uzelac Gordana, Miljković Marija, Antić-Stanković Jelena, Topisirović Ljubiša, Golić Nataša
Format: Article
Language:English
Published: Serbian Genetics Society 2013-01-01
Series:Genetika
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0534-0012/2013/0534-00121301197F.pdf
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spelling doaj-7f97af5742704a52a2276c21409006212020-11-24T22:25:24ZengSerbian Genetics SocietyGenetika0534-00121820-60692013-01-0145119720610.2298/GENSR1301197FOver-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactisFilipić BrankicaJovčić BrankoUzelac GordanaMiljković MarijaAntić-Stanković JelenaTopisirović LjubišaGolić NatašaThe influence of the over-expression of CmbT multidrug resistance transporter on the growth rate of Lactococcus lactis NZ9000 was studied. L. lactis is a lactic acid bacteria (LAB) widely used as a starter culture in dairy industry. Recently characterized CmbT MDR transporter in L. lactis confers resistance to a wide variety of toxic compounds as well as to some clinically relevant antibiotics. In this study, the cmbT gene was over-expressed in the strain L. lactis NZ9000 in the presence of nisin inducer. Over-expression of the cmbT gene in L. lactis NZ9000 was followed by RT-PCR. The obtained results showed that the cmbT gene was successfully over-expressed by addition of sub-inhibitory amounts of nisin. Growth curves of L. lactis NZ9000/pCT50 over-expressing the cmbT gene and L. lactis NZ9000 control strain were followed in the rich medium as well as in the chemically defined medium in the presence solely of methionine (0.084 mM) or mix of methionine and cysteine (8.4 mM and 8.2 mM, respectively). Resulting doubling times revealed that L. lactis NZ9000/pCT50 had higher growth rate comparing to the control strain. This could be a consequence of the CmbT efflux activity, which improves the fitness of the host bacterium through the elimination of toxic compounds from the cell.http://www.doiserbia.nb.rs/img/doi/0534-0012/2013/0534-00121301197F.pdfLactococcus lactisbacterial fitnessmultidrug resistance Abbrev. MDR - multi drug resistance
collection DOAJ
language English
format Article
sources DOAJ
author Filipić Brankica
Jovčić Branko
Uzelac Gordana
Miljković Marija
Antić-Stanković Jelena
Topisirović Ljubiša
Golić Nataša
spellingShingle Filipić Brankica
Jovčić Branko
Uzelac Gordana
Miljković Marija
Antić-Stanković Jelena
Topisirović Ljubiša
Golić Nataša
Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis
Genetika
Lactococcus lactis
bacterial fitness
multidrug resistance Abbrev. MDR - multi drug resistance
author_facet Filipić Brankica
Jovčić Branko
Uzelac Gordana
Miljković Marija
Antić-Stanković Jelena
Topisirović Ljubiša
Golić Nataša
author_sort Filipić Brankica
title Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis
title_short Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis
title_full Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis
title_fullStr Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis
title_full_unstemmed Over-expressed CmbT multidrug resistance transporter improves the fitness of Lactococcus lactis
title_sort over-expressed cmbt multidrug resistance transporter improves the fitness of lactococcus lactis
publisher Serbian Genetics Society
series Genetika
issn 0534-0012
1820-6069
publishDate 2013-01-01
description The influence of the over-expression of CmbT multidrug resistance transporter on the growth rate of Lactococcus lactis NZ9000 was studied. L. lactis is a lactic acid bacteria (LAB) widely used as a starter culture in dairy industry. Recently characterized CmbT MDR transporter in L. lactis confers resistance to a wide variety of toxic compounds as well as to some clinically relevant antibiotics. In this study, the cmbT gene was over-expressed in the strain L. lactis NZ9000 in the presence of nisin inducer. Over-expression of the cmbT gene in L. lactis NZ9000 was followed by RT-PCR. The obtained results showed that the cmbT gene was successfully over-expressed by addition of sub-inhibitory amounts of nisin. Growth curves of L. lactis NZ9000/pCT50 over-expressing the cmbT gene and L. lactis NZ9000 control strain were followed in the rich medium as well as in the chemically defined medium in the presence solely of methionine (0.084 mM) or mix of methionine and cysteine (8.4 mM and 8.2 mM, respectively). Resulting doubling times revealed that L. lactis NZ9000/pCT50 had higher growth rate comparing to the control strain. This could be a consequence of the CmbT efflux activity, which improves the fitness of the host bacterium through the elimination of toxic compounds from the cell.
topic Lactococcus lactis
bacterial fitness
multidrug resistance Abbrev. MDR - multi drug resistance
url http://www.doiserbia.nb.rs/img/doi/0534-0012/2013/0534-00121301197F.pdf
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