Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis
Listeria monocytogenes, which causes serious foodborne infections and public health problems worldwide, is one of the most important foodborne pathogens. Linalool has been identified as an antimicrobial agent against some microorganism, but its mechanism of action is currently unclear. Here, we inve...
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doaj-04e3baffcac94e29b752e5e1be3eb2752020-11-24T21:27:19ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2019-12-011010.3389/fmicb.2019.02947496012Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome AnalysisZhipeng Gao0Joy D. Van Nostrand1Jizhong Zhou2Weiming Zhong3Kangyong Chen4Jiajing Guo5Hunan Engineering Technology Research Center of Featured Aquatic Resources Utilization, College of Animal Science and Technology, Hunan Agricultural University, Changsha, ChinaInstitute for Environmental Genomics, University of Oklahoma, Norman, OK, United StatesInstitute for Environmental Genomics, University of Oklahoma, Norman, OK, United StatesHunan Engineering Technology Research Center of Featured Aquatic Resources Utilization, College of Animal Science and Technology, Hunan Agricultural University, Changsha, ChinaHunan Engineering Technology Research Center of Featured Aquatic Resources Utilization, College of Animal Science and Technology, Hunan Agricultural University, Changsha, ChinaInternational Joint Lab on Fruits and Vegetables Processing, Quality and Safety, Hunan Key Lab of Fruits and Vegetables Storage, Processing, Quality and Safety, Hunan Agriculture Product Processing Institute, Hunan Academy of Agricultural Sciences, Changsha, ChinaListeria monocytogenes, which causes serious foodborne infections and public health problems worldwide, is one of the most important foodborne pathogens. Linalool has been identified as an antimicrobial agent against some microorganism, but its mechanism of action is currently unclear. Here, we investigated the efficacy of linalool against L. monocytogenes while planktonic and as a biofilm and explored potential mechanisms of action. Linalool exhibited strong anti-listeria activity in the planktonic stage. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) observations revealed seven stages were classified of cells at microscopic level. Mesosome-like structures were observed for the first time in L. monocytogenes after linalool treatment. Linalool also showed significant anti-biofilm activity through both dispersal and killing of cells in the biofilm based on confocal scanning laser microscopy (CLSM) and SEM imaging, crystal violet staining, XTT and COMSTAT assays. Moreover, comparative transcriptome analysis demonstrated many potential mechanisms of action for linalool and some important pathways were screened out through the analysis of GO enrichment and KEGG. Our study provides evidence that linalool exhibits a strong antimicrobial activity against both the planktonic and biofilm forms of L. monocytogenes and gives insight into its mechanism of action.https://www.frontiersin.org/article/10.3389/fmicb.2019.02947/fulllinaloolListeria monocytogenesantimicrobialanti-biofilmtranscriptome |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhipeng Gao Joy D. Van Nostrand Jizhong Zhou Weiming Zhong Kangyong Chen Jiajing Guo |
spellingShingle |
Zhipeng Gao Joy D. Van Nostrand Jizhong Zhou Weiming Zhong Kangyong Chen Jiajing Guo Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis Frontiers in Microbiology linalool Listeria monocytogenes antimicrobial anti-biofilm transcriptome |
author_facet |
Zhipeng Gao Joy D. Van Nostrand Jizhong Zhou Weiming Zhong Kangyong Chen Jiajing Guo |
author_sort |
Zhipeng Gao |
title |
Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis |
title_short |
Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis |
title_full |
Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis |
title_fullStr |
Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis |
title_full_unstemmed |
Anti-listeria Activities of Linalool and Its Mechanism Revealed by Comparative Transcriptome Analysis |
title_sort |
anti-listeria activities of linalool and its mechanism revealed by comparative transcriptome analysis |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Microbiology |
issn |
1664-302X |
publishDate |
2019-12-01 |
description |
Listeria monocytogenes, which causes serious foodborne infections and public health problems worldwide, is one of the most important foodborne pathogens. Linalool has been identified as an antimicrobial agent against some microorganism, but its mechanism of action is currently unclear. Here, we investigated the efficacy of linalool against L. monocytogenes while planktonic and as a biofilm and explored potential mechanisms of action. Linalool exhibited strong anti-listeria activity in the planktonic stage. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) observations revealed seven stages were classified of cells at microscopic level. Mesosome-like structures were observed for the first time in L. monocytogenes after linalool treatment. Linalool also showed significant anti-biofilm activity through both dispersal and killing of cells in the biofilm based on confocal scanning laser microscopy (CLSM) and SEM imaging, crystal violet staining, XTT and COMSTAT assays. Moreover, comparative transcriptome analysis demonstrated many potential mechanisms of action for linalool and some important pathways were screened out through the analysis of GO enrichment and KEGG. Our study provides evidence that linalool exhibits a strong antimicrobial activity against both the planktonic and biofilm forms of L. monocytogenes and gives insight into its mechanism of action. |
topic |
linalool Listeria monocytogenes antimicrobial anti-biofilm transcriptome |
url |
https://www.frontiersin.org/article/10.3389/fmicb.2019.02947/full |
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