نتایج جستجو برای: ralstonia sp sm8

تعداد نتایج: 122311  

Journal: :Molecular plant-microbe interactions : MPMI 1997
C F Gonzalez E A Pettit V A Valadez E M Provin

Phytopathogenic strains of Burkholderia cepacia (synonym Pseudomonas cepacia) produce endopolygalacturonase, whereas strains of clinical and soil origin do not. Growth of a phytopathogenic strain (ATCC25416) at elevated temperatures resulted in nonpectolytic derivatives that were either cured of a resident plasmid or contained a plasmid of reduced mass. The resident 200-kb plasmid (pPEC320) in ...

Journal: :Journal of microbiology and biotechnology 2014
Jae Won Kwon Shin Duk Kim

Bacillus subtilis JW-1 was isolated from rhizosphere soil as a potential biocontrol agent of bacterial wilt caused by Ralstonia solanacearum. Seed treatment followed by a soil drench application with this strain resulted in >80% reduction in bacterial wilt disease compared with that in the untreated control under greenhouse conditions. The antibacterial compound produced by strain JW-1 was puri...

2017
Liliam Gutarra Juan Herrera Elizabeth Fernandez Jan Kreuze Hannele Lindqvist-Kreuze

The current bacterial wilt infestation level in the potato fields in the Peruvian Andes was investigated by collecting stem samples from wilted plants and detecting Ralstonia solanacearum. In total 39 farmers' fields located in the central and northern Peru between the altitudes 2111 and 3742 m above sea level were sampled. R. solanacearum was detected in 19 fields, and in 153 out of the 358 sa...

Journal: :Applied and environmental microbiology 2002
Andrew C Hawkins Caroline S Harwood

Ralstonia eutropha JMP134(pJP4) and several other species of motile bacteria can degrade the herbicide 2,4-dichlorophenoxyacetate (2,4-D), but it was not known if bacteria could sense and swim towards 2,4-D by the process of chemotaxis. Wild-type R. eutropha cells were chemotactically attracted to 2,4-D in swarm plate assays and qualitative capillary assays. The chemotactic response was induced...

Journal: :Journal of bacteriology 1998
M R Chapman C C Kao

Ralstonia solanacearum is the causal agent of bacterial wilt of many agriculturally important crops. Exopolysaccharide synthesized by products of the epsI operon is the major virulence factor for R. solanacearum. Expression of epsI has been demonstrated to be under the control of several proteins, including several two-component regulators. Overexpression of EpsR was found previously to reduce ...

Journal: :Journal of bacteriology 2001
T Buhrke B Bleijlevens S P Albracht B Friedrich

The biosynthesis of [NiFe] hydrogenases is a complex process that requires the function of the Hyp proteins HypA, HypB, HypC, HypD, HypE, HypF, and HypX for assembly of the H(2)-activating [NiFe] site. In this study we examined the maturation of the regulatory hydrogenase (RH) of Ralstonia eutropha. The RH is a H(2)-sensing [NiFe] hydrogenase and is required as a constituent of a signal transdu...

Journal: :Virology 2016
Takeru Kawasaki Erlia Narulita Minaho Matsunami Hiroki Ishikawa Mio Shimizu Makoto Fujie Anjana Bhunchoth Namthip Phironrit Orawan Chatchawankanphanich Takashi Yamada

The genome organization, gene structure, and host range of five podoviruses that infect Ralstonia solanacearum, the causative agent of bacterial wilt disease were characterized. The phages fell into two distinctive groups based on the genome position of the RNA polymerase gene (i.e., T7-type and ϕKMV-type). One-step growth experiments revealed that ϕRSB2 (a T7-like phage) lysed host cells more ...

2017
Yuanman Tang Qiuping Liu Ying Liu Linli Zhang Wei Ding

Various classes of plant pathogenesis-related proteins have been identified in the past several decades. PR-Q, a member of the PR3 family encoding chitinases, has played an important role in regulating plant resistance and preventing pathogen infection. In this paper, we functionally characterized NtPR-Q in tobacco plants and found that the overexpression of NtPR-Q in tobacco Yunyan87 resulted ...

Journal: :Open journal of plant science 2021

Tomato is one of the most remunerable and widely grown vegetables in world. The objective this study was to evaluate tomato varieties for nematode Ralstonia diseases resistance productivity.

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