Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.

Salmonella enterica serovar typhimurium is one of the important worldwide health issues. The hilA gene encodes a transcriptional activator that regulates expression of the majority of the genes responsible for the Salmonella invasive phenotype. In the present study, PCR was performed using our desig...

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Main Authors: Maryam Safarpour-Dehkordi, Abbas Doosti, Mohammad-Saeid Jami, Abolfazl Gholipour
Format: Article
Language:English
Published: Plovdiv University Press 2018-09-01
Series:Journal of BioScience and Biotechnology
Subjects:
Online Access:https://editorial.uni-plovdiv.bg/index.php/JBB/article/view/206
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spelling doaj-677d827225604881958f27b021d330b22020-11-25T01:17:01ZengPlovdiv University Press Journal of BioScience and Biotechnology1314-62381314-62462018-09-0172-37378Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp. Maryam Safarpour-Dehkordi0Abbas Doosti1Mohammad-Saeid Jami2Abolfazl Gholipour3Department of Biology, Faculty of Basic Science, Shahrekord Branch, Islamic Azad University, Shahrekord, Iran.Department of Biology, Faculty of Basic Science, Shahrekord Branch, Islamic Azad University, Shahrekord, Iran.Department of Neurology, David Geffen School of Medicine, University of California Los Angeles (UCLA).Department of Microbiology and Immunology, Cellular and Molecular Research Center, Shahrekord University of Medical Sciences, Shahrekord, Iran.Salmonella enterica serovar typhimurium is one of the important worldwide health issues. The hilA gene encodes a transcriptional activator that regulates expression of the majority of the genes responsible for the Salmonella invasive phenotype. In the present study, PCR was performed using our designed primers for amplification of upstream and downstream regions of Salmonella typhimurium hilA gene. Each DNA fragment was T/A-cloned into pGEM-T easy vector and then sub-cloned into pET32 expression vector together with Kanamycin resistance gene. The recombinant plasmid was transformed into bacteria (Salmonella typhimurium) using electroporation. The hilA-Knockout mutant was characterized to evaluate the predicted role of the hilA gene in virulence. Quantitative RT-PCR was carried out to study the impact of hilA knock out on the expression of downstream genes including invF and invA. We confirmed the successful preparation of hilA gene construct (pET32-up-kan-down) followed by the efficient electroporation of the construct to bacterial cells. The homologous recombination resulted in the hilA confirmed by PCR. We demonstrated that hilA knockout leads to attenuation of invA and invF genes expression. The hilA knockout strain may be useful for the development of efficient vaccines against the Salmonella typhimurium.https://editorial.uni-plovdiv.bg/index.php/JBB/article/view/206Salmonella typhimuriumhilA genecloningElectroporationQuantitative RT-PCR
collection DOAJ
language English
format Article
sources DOAJ
author Maryam Safarpour-Dehkordi
Abbas Doosti
Mohammad-Saeid Jami
Abolfazl Gholipour
spellingShingle Maryam Safarpour-Dehkordi
Abbas Doosti
Mohammad-Saeid Jami
Abolfazl Gholipour
Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.
Journal of BioScience and Biotechnology
Salmonella typhimurium
hilA gene
cloning
Electroporation
Quantitative RT-PCR
author_facet Maryam Safarpour-Dehkordi
Abbas Doosti
Mohammad-Saeid Jami
Abolfazl Gholipour
author_sort Maryam Safarpour-Dehkordi
title Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.
title_short Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.
title_full Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.
title_fullStr Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.
title_full_unstemmed Quantitative Real Time PCR study on the effects of hilA gene deletion on the expression of pathogenicity genes in Salmonella enterica ssp.
title_sort quantitative real time pcr study on the effects of hila gene deletion on the expression of pathogenicity genes in salmonella enterica ssp.
publisher Plovdiv University Press
series Journal of BioScience and Biotechnology
issn 1314-6238
1314-6246
publishDate 2018-09-01
description Salmonella enterica serovar typhimurium is one of the important worldwide health issues. The hilA gene encodes a transcriptional activator that regulates expression of the majority of the genes responsible for the Salmonella invasive phenotype. In the present study, PCR was performed using our designed primers for amplification of upstream and downstream regions of Salmonella typhimurium hilA gene. Each DNA fragment was T/A-cloned into pGEM-T easy vector and then sub-cloned into pET32 expression vector together with Kanamycin resistance gene. The recombinant plasmid was transformed into bacteria (Salmonella typhimurium) using electroporation. The hilA-Knockout mutant was characterized to evaluate the predicted role of the hilA gene in virulence. Quantitative RT-PCR was carried out to study the impact of hilA knock out on the expression of downstream genes including invF and invA. We confirmed the successful preparation of hilA gene construct (pET32-up-kan-down) followed by the efficient electroporation of the construct to bacterial cells. The homologous recombination resulted in the hilA confirmed by PCR. We demonstrated that hilA knockout leads to attenuation of invA and invF genes expression. The hilA knockout strain may be useful for the development of efficient vaccines against the Salmonella typhimurium.
topic Salmonella typhimurium
hilA gene
cloning
Electroporation
Quantitative RT-PCR
url https://editorial.uni-plovdiv.bg/index.php/JBB/article/view/206
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