Cargando…

Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage

Pectobacterium odoriferum has recently emerged as a widely infective and destructive pathogen causing soft-rot disease in various vegetables. Bacteriophage phiPccP-1 isolated from Pyeongchang, South Korea, showed lytic activity against P. odoriferum Pco14 and two other Pectobacterium species. The tr...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Soohong, Vu, Nguyen-Trung, Oh, Eom-Ji, Rahimi-Midani, Aryan, Thi, Thuong-Nguyen, Song, Yu-Rim, Hwang, In-Sun, Choi, Tae-Jin, Oh, Chang-Sik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068257/
https://www.ncbi.nlm.nih.gov/pubmed/33917817
http://dx.doi.org/10.3390/microorganisms9040779
_version_ 1783682993688150016
author Lee, Soohong
Vu, Nguyen-Trung
Oh, Eom-Ji
Rahimi-Midani, Aryan
Thi, Thuong-Nguyen
Song, Yu-Rim
Hwang, In-Sun
Choi, Tae-Jin
Oh, Chang-Sik
author_facet Lee, Soohong
Vu, Nguyen-Trung
Oh, Eom-Ji
Rahimi-Midani, Aryan
Thi, Thuong-Nguyen
Song, Yu-Rim
Hwang, In-Sun
Choi, Tae-Jin
Oh, Chang-Sik
author_sort Lee, Soohong
collection PubMed
description Pectobacterium odoriferum has recently emerged as a widely infective and destructive pathogen causing soft-rot disease in various vegetables. Bacteriophage phiPccP-1 isolated from Pyeongchang, South Korea, showed lytic activity against P. odoriferum Pco14 and two other Pectobacterium species. The transmission electron microscopy and genome phylograms revealed that phiPccP-1 belongs to the Unyawovirus genus, Studiervirinae subfamily of the Autographivirinae family. Genome comparison showed that its 40,487 bp double-stranded DNA genome shares significant similarity with Pectobacterium phage DU_PP_II with the identity reaching 98% of the genome. The phiPccP-1 application significantly inhibited the development of soft-rot disease in the mature leaves of the harvested Kimchi cabbage up to 48 h after Pco14 inoculation compared to the untreated leaves, suggesting that phiPccP-1 can protect Kimchi cabbage from soft-rot disease after harvest. Remarkably, bioassays with phiPccP-1 in Kimchi cabbage seedlings grown in the growth chamber successfully demonstrated its prophylactic and therapeutic potential in the control of bacterial soft-rot disease in Kimchi cabbage. These results indicate that bacteriophage phiPccP-1 can be used as a potential biological agent for controlling soft rot disease in Kimchi cabbage.
format Online
Article
Text
id pubmed-8068257
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80682572021-04-25 Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage Lee, Soohong Vu, Nguyen-Trung Oh, Eom-Ji Rahimi-Midani, Aryan Thi, Thuong-Nguyen Song, Yu-Rim Hwang, In-Sun Choi, Tae-Jin Oh, Chang-Sik Microorganisms Article Pectobacterium odoriferum has recently emerged as a widely infective and destructive pathogen causing soft-rot disease in various vegetables. Bacteriophage phiPccP-1 isolated from Pyeongchang, South Korea, showed lytic activity against P. odoriferum Pco14 and two other Pectobacterium species. The transmission electron microscopy and genome phylograms revealed that phiPccP-1 belongs to the Unyawovirus genus, Studiervirinae subfamily of the Autographivirinae family. Genome comparison showed that its 40,487 bp double-stranded DNA genome shares significant similarity with Pectobacterium phage DU_PP_II with the identity reaching 98% of the genome. The phiPccP-1 application significantly inhibited the development of soft-rot disease in the mature leaves of the harvested Kimchi cabbage up to 48 h after Pco14 inoculation compared to the untreated leaves, suggesting that phiPccP-1 can protect Kimchi cabbage from soft-rot disease after harvest. Remarkably, bioassays with phiPccP-1 in Kimchi cabbage seedlings grown in the growth chamber successfully demonstrated its prophylactic and therapeutic potential in the control of bacterial soft-rot disease in Kimchi cabbage. These results indicate that bacteriophage phiPccP-1 can be used as a potential biological agent for controlling soft rot disease in Kimchi cabbage. MDPI 2021-04-08 /pmc/articles/PMC8068257/ /pubmed/33917817 http://dx.doi.org/10.3390/microorganisms9040779 Text en © 2021 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
Lee, Soohong
Vu, Nguyen-Trung
Oh, Eom-Ji
Rahimi-Midani, Aryan
Thi, Thuong-Nguyen
Song, Yu-Rim
Hwang, In-Sun
Choi, Tae-Jin
Oh, Chang-Sik
Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage
title Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage
title_full Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage
title_fullStr Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage
title_full_unstemmed Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage
title_short Biocontrol of Soft Rot Caused by Pectobacterium odoriferum with Bacteriophage phiPccP-1 in Kimchi Cabbage
title_sort biocontrol of soft rot caused by pectobacterium odoriferum with bacteriophage phipccp-1 in kimchi cabbage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8068257/
https://www.ncbi.nlm.nih.gov/pubmed/33917817
http://dx.doi.org/10.3390/microorganisms9040779
work_keys_str_mv AT leesoohong biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT vunguyentrung biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT oheomji biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT rahimimidaniaryan biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT thithuongnguyen biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT songyurim biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT hwanginsun biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT choitaejin biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage
AT ohchangsik biocontrolofsoftrotcausedbypectobacteriumodoriferumwithbacteriophagephipccp1inkimchicabbage