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RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24

INTRODUCTION: Pseudomonas fluorescens 2P24 was isolated from soil of natural decay associated with wheat take-all and it can effectively control soil-borne diseases caused by a variety of plant pathogens. 2,4-diacetylphloroglucinol (2,4-DAPG), is produced by P. fluorescens 2P24 and plays an importan...

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Detalles Bibliográficos
Autores principales: Wei, Yarui, Dong, Baozhu, Wu, Xiaogang, Zhao, Mingmin, Wang, Dong, Li, Na, Zhang, Qian, Zhang, Liqun, Zhou, Hongyou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10213339/
https://www.ncbi.nlm.nih.gov/pubmed/37250031
http://dx.doi.org/10.3389/fmicb.2023.1160913
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author Wei, Yarui
Dong, Baozhu
Wu, Xiaogang
Zhao, Mingmin
Wang, Dong
Li, Na
Zhang, Qian
Zhang, Liqun
Zhou, Hongyou
author_facet Wei, Yarui
Dong, Baozhu
Wu, Xiaogang
Zhao, Mingmin
Wang, Dong
Li, Na
Zhang, Qian
Zhang, Liqun
Zhou, Hongyou
author_sort Wei, Yarui
collection PubMed
description INTRODUCTION: Pseudomonas fluorescens 2P24 was isolated from soil of natural decay associated with wheat take-all and it can effectively control soil-borne diseases caused by a variety of plant pathogens. 2,4-diacetylphloroglucinol (2,4-DAPG), is produced by P. fluorescens 2P24 and plays an important role in the prevention and control of plant diseases. To understand the resistant mechanism, in this study, we conducted experiments to explore the regulation role of rpoZ in the synthesis of the antibiotic 2,4-DAPG and regulation of QS system. METHODS: A random mini-Tn5 mutagenesis procedure was used to screen regulators for phlA transcription in stain PM901, which containing a phlA∷lacZ transcriptional fusion reporter plasmid. We identified 12 insertion mutants could significantly change phlA gene expression. By analyzing the amino acid sequences of the interrupted gene, we obtained a mutant strain Aa4-29 destroyed the rpoZ gene, which encodes the omiga subunit. We constructed the plasmid of rpoZ mutant (pBBR-△rpoZ) transformed into competent cells of P. fluorescens 2P24 by electro-transformation assay. The strains of P. fluorescens 2P24/pBBR, 2P24-△rpoZ/pBBR, 2P24-△rpoZ/pBBR-rpoZ were used to evaluate the regulation role of rpoZ in 2,4-DAPG production and quorum sensing system. RESULTS: According to β-galactosidase activity, we found that rpoZ positively regulated the expression of phlA (a synthesis gene of 2,4-DAPG) and PcoI (a synthesis gene of PcoI/PcoR QS signal system) at the transcriptional level. The production of 2,4-DAPG antibiotic and signal molecule AHL was influenced by rpoZ. Further, rpoZ was involved in regulating rsmA expression. RpoZ also has a certain regulatory effect on rpoS transcription, but no effect on the transcription of phlF, emhABC and emhR. According to the biocontrol assay, P. fluorescens 2P24 strains with rpoZ showed obvious antagonism ability against the Rhizoctonia solani in cotton, while the mutant strain of rpoZ lost the biocontrol effect. RpoZ had a significant effect on the swimming and biofilm formation in P. fluorescens 2P24. CONCLUSION: Our data showed that rpoZ was an important regulator of QS system, 2,4-DAPG in P. fluorescens 2P24. This may imply that P. fluorescens 2P24 has evolved different regulatory features to adapt to different environmental threats.
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spelling pubmed-102133392023-05-27 RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24 Wei, Yarui Dong, Baozhu Wu, Xiaogang Zhao, Mingmin Wang, Dong Li, Na Zhang, Qian Zhang, Liqun Zhou, Hongyou Front Microbiol Microbiology INTRODUCTION: Pseudomonas fluorescens 2P24 was isolated from soil of natural decay associated with wheat take-all and it can effectively control soil-borne diseases caused by a variety of plant pathogens. 2,4-diacetylphloroglucinol (2,4-DAPG), is produced by P. fluorescens 2P24 and plays an important role in the prevention and control of plant diseases. To understand the resistant mechanism, in this study, we conducted experiments to explore the regulation role of rpoZ in the synthesis of the antibiotic 2,4-DAPG and regulation of QS system. METHODS: A random mini-Tn5 mutagenesis procedure was used to screen regulators for phlA transcription in stain PM901, which containing a phlA∷lacZ transcriptional fusion reporter plasmid. We identified 12 insertion mutants could significantly change phlA gene expression. By analyzing the amino acid sequences of the interrupted gene, we obtained a mutant strain Aa4-29 destroyed the rpoZ gene, which encodes the omiga subunit. We constructed the plasmid of rpoZ mutant (pBBR-△rpoZ) transformed into competent cells of P. fluorescens 2P24 by electro-transformation assay. The strains of P. fluorescens 2P24/pBBR, 2P24-△rpoZ/pBBR, 2P24-△rpoZ/pBBR-rpoZ were used to evaluate the regulation role of rpoZ in 2,4-DAPG production and quorum sensing system. RESULTS: According to β-galactosidase activity, we found that rpoZ positively regulated the expression of phlA (a synthesis gene of 2,4-DAPG) and PcoI (a synthesis gene of PcoI/PcoR QS signal system) at the transcriptional level. The production of 2,4-DAPG antibiotic and signal molecule AHL was influenced by rpoZ. Further, rpoZ was involved in regulating rsmA expression. RpoZ also has a certain regulatory effect on rpoS transcription, but no effect on the transcription of phlF, emhABC and emhR. According to the biocontrol assay, P. fluorescens 2P24 strains with rpoZ showed obvious antagonism ability against the Rhizoctonia solani in cotton, while the mutant strain of rpoZ lost the biocontrol effect. RpoZ had a significant effect on the swimming and biofilm formation in P. fluorescens 2P24. CONCLUSION: Our data showed that rpoZ was an important regulator of QS system, 2,4-DAPG in P. fluorescens 2P24. This may imply that P. fluorescens 2P24 has evolved different regulatory features to adapt to different environmental threats. Frontiers Media S.A. 2023-05-12 /pmc/articles/PMC10213339/ /pubmed/37250031 http://dx.doi.org/10.3389/fmicb.2023.1160913 Text en Copyright © 2023 Wei, Dong, Wu, Zhao, Wang, Li, Zhang, Zhang and Zhou. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Wei, Yarui
Dong, Baozhu
Wu, Xiaogang
Zhao, Mingmin
Wang, Dong
Li, Na
Zhang, Qian
Zhang, Liqun
Zhou, Hongyou
RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24
title RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24
title_full RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24
title_fullStr RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24
title_full_unstemmed RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24
title_short RpoZ regulates 2,4-DAPG production and quorum sensing system in Pseudomonas fluorescens 2P24
title_sort rpoz regulates 2,4-dapg production and quorum sensing system in pseudomonas fluorescens 2p24
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10213339/
https://www.ncbi.nlm.nih.gov/pubmed/37250031
http://dx.doi.org/10.3389/fmicb.2023.1160913
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