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1.
Nat Commun ; 15(1): 3436, 2024 Apr 23.
Article in English | MEDLINE | ID: mdl-38653767

ABSTRACT

Symbiosis with soil-dwelling bacteria that fix atmospheric nitrogen allows legume plants to grow in nitrogen-depleted soil. Symbiosis impacts the assembly of root microbiota, but it is unknown how the interaction between the legume host and rhizobia impacts the remaining microbiota and whether it depends on nitrogen nutrition. Here, we use plant and bacterial mutants to address the role of Nod factor signaling on Lotus japonicus root microbiota assembly. We find that Nod factors are produced by symbionts to activate Nod factor signaling in the host and that this modulates the root exudate profile and the assembly of a symbiotic root microbiota. Lotus plants with different symbiotic abilities, grown in unfertilized or nitrate-supplemented soils, display three nitrogen-dependent nutritional states: starved, symbiotic, or inorganic. We find that root and rhizosphere microbiomes associated with these states differ in composition and connectivity, demonstrating that symbiosis and inorganic nitrogen impact the legume root microbiota differently. Finally, we demonstrate that selected bacterial genera characterizing state-dependent microbiomes have a high level of accurate prediction.


Subject(s)
Lotus , Microbiota , Nitrogen , Plant Roots , Signal Transduction , Symbiosis , Lotus/microbiology , Lotus/metabolism , Nitrogen/metabolism , Plant Roots/microbiology , Plant Roots/metabolism , Microbiota/physiology , Rhizosphere , Bacterial Proteins/metabolism , Bacterial Proteins/genetics , Soil Microbiology , Nitrogen Fixation , Plant Exudates/metabolism
2.
Microbiol Res ; 251: 126826, 2021 Oct.
Article in English | MEDLINE | ID: mdl-34298216

ABSTRACT

Bipolaris sorokiniana is an important biotic constraint for global wheat production, causing spot blotch disease. In this work, we present a comprehensive characterization of the cell-free culture filtrate (CF) and precipitated fraction (PF) of Bacillus cabrialesii TE3T showing an effective inhibition of spot blotch. Our results indicated that CF produced by B. cabrialesii TE3T inhibits the growth of B. sorokiniana through stable metabolites (after autoclaving and proteinase K treatment). Antifungal metabolites in CF and PF were explored by an integrated genomic-metabolomic approach. Genome-mining revealed that strain TE3T contains the biosynthetic potential to produce wide spectrum antifungal (surfactin, fengycin, and rhizocticin A) and antibacterial metabolites (bacillaene, bacilysin, bacillibactin, and subtilosin A), and through bioactivity-guided LC-ESI-MS/MS approach we determined that a lipopeptide complex of surfactin and fengycin homologs was responsible for antifungal activity exhibited by B. cabrialesii TE3T against the studied phytopathogen. In addition, our results demonstrate that i) a lipopeptide complex inhibits B. sorokiniana by disrupting its cytoplasmatic membrane and ii) reduced spot blotch disease by 93 %. These findings show the potential application of metabolites produced by strain TE3T against B. sorokiniana and provide the first insight into antifungal metabolites produced by the novel Bacillus species, Bacillus cabrialesii.


Subject(s)
Antifungal Agents , Bacillus , Biotechnology , Bipolaris , Triticum , Antifungal Agents/isolation & purification , Antifungal Agents/pharmacology , Bacillus/chemistry , Bacillus/genetics , Biotechnology/methods , Bipolaris/drug effects , Lipopeptides/chemistry , Plant Diseases/microbiology , Tandem Mass Spectrometry , Triticum/microbiology
3.
J Microbiol Methods ; 147: 14-16, 2018 04.
Article in English | MEDLINE | ID: mdl-29474841

ABSTRACT

A suitable technique (lysozyme combined with Trizol reagent) was developed to improve the RNA yield, purity and integrity from Bacillus subtilis, under different bacterial growth stages. The obtained RNA was intact, having the required characteristics for downstream applications.


Subject(s)
Bacillus subtilis/drug effects , Guanidines/pharmacology , Molecular Biology/methods , Muramidase/pharmacology , Phenols/pharmacology , RNA, Bacterial/isolation & purification , Bacillus subtilis/genetics , Bacillus subtilis/growth & development , Drug Combinations , Genetic Techniques
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