Results 91 to 100 of about 3,920 (166)

The impact of the omics era on the knowledge and use of Lysobacter spp. to control phytopathogenic microorganisms

open access: yes, 2017
Omics technologies have had a tremendous impact on under-investigated genera of plant disease biocontrol agents such as Lysobacter. Strong evidence of the association between Lysobacter spp.
Tomada, Selena   +5 more
core   +1 more source

Effects of Pseudomonas frederiksbergensis FC-17 on potato bacterial wilt and rhizosphere microbial community

open access: yesBiological Control
Pseudomonas frederiksbergensis FC-17 shows prominent biological control for potato wilt disease caused by Ralstonia solanacearum. It remains unknown whether the biocontrol strain can effectively colonize rhizosphere soil and how it affects the bacterial ...
Sheng Li   +8 more
doaj   +1 more source

Bacterial Extracellular Vesicles in Biomedical Research and Clinical Translation

open access: yesMicrobial Biotechnology, Volume 19, Issue 4, April 2026.
Bacterial membrane vesicle biomedical applications. ABSTRACT Bacterial Extracellular Vesicles (bEVs) are lipid (single‐ or double‐bilayer) nanostructures secreted by virtually all bacteria that play fundamental roles in intercellular communication and have emerged as powerful, multifunctional tools in biomedicine. Their intrinsic ability to encapsulate
Alejandro Arce‐Rodríguez   +2 more
wiley   +1 more source

Lysobacter daecheongensis sp nov., Isolated from Sediment of Stream Near the Daechung Dam in South Korea

open access: yes, 2008
A Gram-negative, aerobic, rod shaped, non-spore-forming bacterial strain, designated Dae08(T), was isolated from sediment of the stream near Daechung dam in South Korea, and was characterized in order to determine its taxonomic position, using a ...
Yoo, Soon-Ae   +4 more
core   +1 more source

Reclassification of Pseudomonas sp. PB-6250T as Lysobacter firmicutimachus sp. nov.

open access: yes, 2016
Strain PB-6250(T), isolated from soil in Japan, was first identified in 1992. In contrast to its original taxonomic classification, its 16S rRNA gene sequence showed the highest similarity (99.2 %)To the sequence of Lysobacter enzymogenes DSM 2043(T ...
Cleenwerck, Ilse   +4 more
core   +1 more source

Characterisation of Lysobacter enzymogenes ( Christensen and Cook 1978) strain 3.1 T8, a powerful antagonist of fungal diseases of cucumber [PDF]

open access: yes, 2003
Isolate 3.1T8 of Lysobacter enzymogenes (Christensen and Cook 1978), originating from the rhizosphere of cucumber and shown to have the potential to control Pythium aphanidermatum, is described. The strain produces extracellular proteases and lipases and
Van Veen, J.A., Postma, J., Folman, L.B.
core   +1 more source

Lysobacter enzymogenes: A fully armed biocontrol warrior

open access: yesJournal of Integrative Agriculture
Lysobacter enzymogenes is less-studied, but emerging as a powerful biocontrol bacterium producing multiple antimicrobial weapons including lytic enzymes, toxins, secondary metabolites and protein secretion systems. The loss of surface-attached flagellum,
Long Lin   +14 more
doaj   +1 more source

Draft Genome Sequence of a Chitinase-Producing Biocontrol Bacterium, Lysobacter antibioticus HS124

open access: yesResearch in Plant Disease, 2014
Lysobacter antibiocus HS124 is a chitinase-producing rhizobacterium with proven capacities to suppress plant diseases. Bacterial cultures of L. antibioticus HS124 showed strong biocontrol efficacies against various plant diseases compared to those of ...
Brian B. McSpadden Gardener   +3 more
doaj   +1 more source

Biological Functions of Polycyclic Tetramate Macrolactams from Lysobacter enzymogenes

open access: yes, 2022
Lysobacter species are gliding Gram-negative bacteria and prolific producers of new bioactive natural products which are largely underexplored. So far, several classes of structurally distinct and biologically active natural products have been isolated ...
Yue, Huan
core  

Suppression of Damping-Off Disease in Host Plants by the Rhizoplane Bacterium Lysobacter sp. Strain SB-K88 Is Linked to Plant Colonization and Antibiosis against Soilborne Peronosporomycetes [PDF]

open access: yes, 2005
We previously demonstrated that xanthobaccin A from the rhizoplane bacterium Lysobacter sp. strain SB-K88 suppresses damping-off disease caused by Pythium sp. in sugar beet. In this study we focused on modes of Lysobacter sp.
Hashidoko, Yasuyuki   +4 more
core   +1 more source

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