Literature DB >> 29168148

Developing a bacteriophage cocktail for biocontrol of potato bacterial wilt.

Cuihua Wei1,2, Junli Liu3, Alice Nyambura Maina4,5, Francis B Mwaura4, Junping Yu1, Chenghui Yan1,2, Ruofang Zhang6, Hongping Wei7,8.   

Abstract

Bacterial wilt is a devastating disease of potato and can cause an 80% production loss. To control wilt using bacteriophage therapy, we isolated and characterized twelve lytic bacteriophages from different water sources in Kenya and China. Based on the lytic curves of the phages with the pathogen Ralstonia solanacearum, one optimal bacteriophage cocktail, P1, containing six phage isolations was formulated and used for studying wilt prevention and treatment efficiency in potato plants growing in pots. The preliminary tests showed that the phage cocktail was very effective in preventing potato bacterial wilt by injection of the phages into the plants or decontamination of sterilized soil spiked with R. solanacearum. Eighty percent of potato plants could be protected from the bacterial wilt (caused by R. solanacearum reference strain GIM1.74 and field isolates), and the P1 cocktail could kill 98% of live bacteria spiked in the sterilized soil at one week after spraying. However, the treatment efficiencies of P1 depended on the timing of application of the phages, the susceptibility of the plants to the bacterial wilt, as well as the virulence of the bacteria infected, suggesting that it is important to apply the phage therapy as soon as possible once there are early signs of the bacterial wilt. These results provide the basis for the development of bacteriophagebased biocontrol of potato bacterial wilt as an alternative to the use of antibiotics.

Entities:  

Keywords:  Ralstonia solanacearum; bacterial wilt; bacteriophage therapy; potato

Mesh:

Year:  2017        PMID: 29168148      PMCID: PMC6598922          DOI: 10.1007/s12250-017-3987-6

Source DB:  PubMed          Journal:  Virol Sin        ISSN: 1995-820X            Impact factor:   4.327


  15 in total

1.  Biocontrol of Ralstonia solanacearum by treatment with lytic bacteriophages.

Authors:  Akiko Fujiwara; Mariko Fujisawa; Ryosuke Hamasaki; Takeru Kawasaki; Makoto Fujie; Takashi Yamada
Journal:  Appl Environ Microbiol       Date:  2011-04-15       Impact factor: 4.792

2.  Biology and epidemiology of bacterial wilt caused by pseudomonas solanacearum.

Authors:  A C Hayward
Journal:  Annu Rev Phytopathol       Date:  1991       Impact factor: 13.078

3.  Characterization of filamentous bacteriophage PE226 infecting Ralstonia solanacearum strains.

Authors:  S Murugaiyan; J Y Bae; J Wu; S D Lee; H Y Um; H K Choi; E Chung; J-H Lee; S-W Lee
Journal:  J Appl Microbiol       Date:  2010-11-04       Impact factor: 3.772

4.  Isolation and characterization of wide host range lytic bacteriophage AP22 infecting Acinetobacter baumannii.

Authors:  Anastasia V Popova; Evgeny L Zhilenkov; Vera P Myakinina; Valentina M Krasilnikova; Nikolay V Volozhantsev
Journal:  FEMS Microbiol Lett       Date:  2012-05-08       Impact factor: 2.742

5.  Pros and cons of phage therapy.

Authors:  Catherine Loc-Carrillo; Stephen T Abedon
Journal:  Bacteriophage       Date:  2011-03

6.  Utilization of Filamentous Phage ϕRSM3 to Control Bacterial Wilt Caused by Ralstonia solanacearum.

Authors:  Hardian S Addy; Ahmed Askora; Takeru Kawasaki; Makoto Fujie; Takashi Yamada
Journal:  Plant Dis       Date:  2012-08       Impact factor: 4.438

7.  Ralstonia solanacearum strains from Martinique (French West Indies) exhibiting a new pathogenic potential.

Authors:  Emmanuel Wicker; Laurence Grassart; Régine Coranson-Beaudu; Danièle Mian; Caroline Guilbaud; Mark Fegan; Philippe Prior
Journal:  Appl Environ Microbiol       Date:  2007-08-24       Impact factor: 4.792

Review 8.  Applications of biotechnology and genomics in potato improvement.

Authors:  Philippa J Barrell; Sathiyamoorthy Meiyalaghan; Jeanne M E Jacobs; Anthony J Conner
Journal:  Plant Biotechnol J       Date:  2013-08-07       Impact factor: 9.803

9.  Cloning of the egl gene of Pseudomonas solanacearum and analysis of its role in phytopathogenicity.

Authors:  D P Roberts; T P Denny; M A Schell
Journal:  J Bacteriol       Date:  1988-04       Impact factor: 3.490

10.  Considerations for using bacteriophages for plant disease control.

Authors:  Jeffrey B Jones; Gary E Vallad; Fanny B Iriarte; Aleksa Obradović; Mine H Wernsing; Lee E Jackson; Botond Balogh; Jason C Hong; M Timur Momol
Journal:  Bacteriophage       Date:  2012-10-01
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  15 in total

1.  Bacteriophages Isolated in China for the Control of Pectobacterium carotovorum Causing Potato Soft Rot in Kenya.

Authors:  Peter Muturi; Junping Yu; Alice Nyambura Maina; Samuel Kariuki; Francis B Mwaura; Hongping Wei
Journal:  Virol Sin       Date:  2019-03-13       Impact factor: 4.327

2.  Biocontrol of bacterial wilt in tomato with a cocktail of lytic bacteriophages.

Authors:  Roniya Thapa Magar; Seung Yeup Lee; Hyo Jeong Kim; Seon-Woo Lee
Journal:  Appl Microbiol Biotechnol       Date:  2022-05-14       Impact factor: 4.813

3.  Phage combination therapies for bacterial wilt disease in tomato.

Authors:  Xiaofang Wang; Zhong Wei; Keming Yang; Jianing Wang; Alexandre Jousset; Yangchun Xu; Qirong Shen; Ville-Petri Friman
Journal:  Nat Biotechnol       Date:  2019-12-02       Impact factor: 54.908

4.  Isolation and characterization of vB_XciM_LucasX, a new jumbo phage that infects Xanthomonas citri and Xanthomonas fuscans.

Authors:  Vinícius Marquioni; Fernando Pacheco Nobre Rossi; Deborah Cezar Mendonça; Layla Farage Martins; Franklin Behlau; João Carlos Setubal; Aline Maria da Silva; Maria Teresa Marques Novo-Mansur
Journal:  PLoS One       Date:  2022-04-14       Impact factor: 3.752

5.  Colanic Acid Is a Novel Phage Receptor of Pectobacterium carotovorum subsp. carotovorum Phage POP72.

Authors:  Hyeongsoon Kim; Minsik Kim; Jaewoo Bai; Jeong-A Lim; Sunggi Heu; Sangryeol Ryu
Journal:  Front Microbiol       Date:  2019-02-19       Impact factor: 5.640

Review 6.  Bacteriophages Against Pathogenic Bacteria and Possibilities for Future Application in Africa.

Authors:  Tesfaye Kassa
Journal:  Infect Drug Resist       Date:  2021-01-06       Impact factor: 4.003

Review 7.  Bacteriophage Usage for Bacterial Disease Management and Diagnosis in Plants.

Authors:  Nguyen Trung Vu; Chang-Sik Oh
Journal:  Plant Pathol J       Date:  2020-06-01       Impact factor: 1.795

8.  Application of Adaptive Evolution to Improve the Stability of Bacteriophages during Storage.

Authors:  Kelvin K Kering; Xiaoxu Zhang; Raphael Nyaruaba; Junping Yu; Hongping Wei
Journal:  Viruses       Date:  2020-04-09       Impact factor: 5.048

9.  Biocontrol of the Major Plant Pathogen Ralstonia solanacearum in Irrigation Water and Host Plants by Novel Waterborne Lytic Bacteriophages.

Authors:  Belén Álvarez; María M López; Elena G Biosca
Journal:  Front Microbiol       Date:  2019-12-06       Impact factor: 5.640

Review 10.  Phages in Food Industry Biocontrol and Bioremediation.

Authors:  Pablo Cristobal-Cueto; Alberto García-Quintanilla; Jaime Esteban; Meritxell García-Quintanilla
Journal:  Antibiotics (Basel)       Date:  2021-06-28
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