Cargando…

Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR

Pectobacterium brasiliense (Pbr) has caused significant economic losses in major vegetable production areas in Northern China by causing bacterial soft rot in cash crops such as potatoes and cucumbers. This study aimed to establish a PMA-qPCR detection method for Pbr by screening specific and sensit...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Junhui, Chen, Ruxing, Yang, Ruwei, Wei, Xinchen, Xie, Hua, Shi, Yanxia, Xie, Xuewen, Chai, Ali, Fan, Tengfei, Li, Baoju, Li, Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10673545/
https://www.ncbi.nlm.nih.gov/pubmed/38004819
http://dx.doi.org/10.3390/microorganisms11112808
_version_ 1785149618076516352
author Li, Junhui
Chen, Ruxing
Yang, Ruwei
Wei, Xinchen
Xie, Hua
Shi, Yanxia
Xie, Xuewen
Chai, Ali
Fan, Tengfei
Li, Baoju
Li, Lei
author_facet Li, Junhui
Chen, Ruxing
Yang, Ruwei
Wei, Xinchen
Xie, Hua
Shi, Yanxia
Xie, Xuewen
Chai, Ali
Fan, Tengfei
Li, Baoju
Li, Lei
author_sort Li, Junhui
collection PubMed
description Pectobacterium brasiliense (Pbr) has caused significant economic losses in major vegetable production areas in Northern China by causing bacterial soft rot in cash crops such as potatoes and cucumbers. This study aimed to establish a PMA-qPCR detection method for Pbr by screening specific and sensitive primers based on the glu gene and the conserved region of the 23S rRNA gene. Based on the optimized PMA pretreatment conditions, a standard curve was designed and constructed for PMA-qPCR detection (y = −3.391x + 36.28; R(2) = 0.99). The amplification efficiency reached 97%, and the lowest detection limit of viable cells was approximately 2 × 10(2) CFU·mL(−1). The feasibility of the PMA-qPCR method was confirmed through a manually simulated viable/dead cell assay under various concentrations. The analysis of potato tubers and cucumber seeds revealed that nine naturally collected seed samples contained a range from 10(2) to 10(4) CFU·g(−1) viable Pbr bacteria. Furthermore, the system effectively identified changes in the number of pathogenic bacteria in cucumber and potato leaves affected by soft rot throughout the disease period. Overall, the detection and prevention of bacterial soft rot caused by Pbr is crucial.
format Online
Article
Text
id pubmed-10673545
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106735452023-11-19 Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR Li, Junhui Chen, Ruxing Yang, Ruwei Wei, Xinchen Xie, Hua Shi, Yanxia Xie, Xuewen Chai, Ali Fan, Tengfei Li, Baoju Li, Lei Microorganisms Article Pectobacterium brasiliense (Pbr) has caused significant economic losses in major vegetable production areas in Northern China by causing bacterial soft rot in cash crops such as potatoes and cucumbers. This study aimed to establish a PMA-qPCR detection method for Pbr by screening specific and sensitive primers based on the glu gene and the conserved region of the 23S rRNA gene. Based on the optimized PMA pretreatment conditions, a standard curve was designed and constructed for PMA-qPCR detection (y = −3.391x + 36.28; R(2) = 0.99). The amplification efficiency reached 97%, and the lowest detection limit of viable cells was approximately 2 × 10(2) CFU·mL(−1). The feasibility of the PMA-qPCR method was confirmed through a manually simulated viable/dead cell assay under various concentrations. The analysis of potato tubers and cucumber seeds revealed that nine naturally collected seed samples contained a range from 10(2) to 10(4) CFU·g(−1) viable Pbr bacteria. Furthermore, the system effectively identified changes in the number of pathogenic bacteria in cucumber and potato leaves affected by soft rot throughout the disease period. Overall, the detection and prevention of bacterial soft rot caused by Pbr is crucial. MDPI 2023-11-19 /pmc/articles/PMC10673545/ /pubmed/38004819 http://dx.doi.org/10.3390/microorganisms11112808 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Junhui
Chen, Ruxing
Yang, Ruwei
Wei, Xinchen
Xie, Hua
Shi, Yanxia
Xie, Xuewen
Chai, Ali
Fan, Tengfei
Li, Baoju
Li, Lei
Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR
title Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR
title_full Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR
title_fullStr Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR
title_full_unstemmed Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR
title_short Rapid Detection and Quantification of Viable Cells of Pectobacterium brasiliense Using Propidium Monoazide Combined with Real-Time PCR
title_sort rapid detection and quantification of viable cells of pectobacterium brasiliense using propidium monoazide combined with real-time pcr
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10673545/
https://www.ncbi.nlm.nih.gov/pubmed/38004819
http://dx.doi.org/10.3390/microorganisms11112808
work_keys_str_mv AT lijunhui rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT chenruxing rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT yangruwei rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT weixinchen rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT xiehua rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT shiyanxia rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT xiexuewen rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT chaiali rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT fantengfei rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT libaoju rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr
AT lilei rapiddetectionandquantificationofviablecellsofpectobacteriumbrasilienseusingpropidiummonoazidecombinedwithrealtimepcr