<i>Bacillus</i>-derived lipopeptides inhibit and eradicate <i>Candida tropicalis</i> Biofilms: An in vitro exploration. [PDF]
Madduri M, Rudramurthy SM, Roy U.
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Differential membrane lipid disruption by lipopeptide antibiotics, colistin and turnercyclamycins. [PDF]
Lim AL +5 more
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Warfare among rice sheath pathogens: <i>Rhizoctonia solani</i> AG 1-IA neutralizes <i>Pseudomonas fuscovaginae</i> cyclic lipopeptides. [PDF]
De Rop J +6 more
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Broad antibiosis activity of <i>Bacillus velezensis</i> and <i>Bacillus subtilis</i> is accounted for by a conserved capacity for lipopeptide biosynthesis. [PDF]
Alam J +5 more
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Growth promotion of milk-associated Candida zeylanoides by a cyclic lipopeptide produced by Pseudomonas. [PDF]
Wasmuth I +8 more
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A three-plasmid-containing CRISPR-Cas9 platform to engineer <i>Bacillus velezensis</i> 916 as an efficient biocontrol agent. [PDF]
Li L +9 more
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Exploring the Multifunctional Role of <i>Paenibacillus</i> Metabolites in Various Fields. [PDF]
Yuan P, Song Z, Zhang L, Pan Z, Chen X.
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Review on Current Research on Biosynthesis of Biosurfactants and the Regulation Influenced by Metal Ions. [PDF]
Wang Y, Qiao S, Niu Y.
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Metabolomic Insights into Cross-Feeding Interactions Between Priestia megaterium PM and Pseudomonas fluorescens NO4: Unveiling Microbial Communication in Plant Growth-Promoting Rhizobacteria. [PDF]
Sibanyoni NR +4 more
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Synthesis of Lipopeptides Using Vegetable Oils by Newly Isolated Strain of <i>Serratia marcescens</i> G8-1: Genomic Characterization and Process Performance. [PDF]
Ciesielski S +3 more
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