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  1. 3 de ago. de 2017 · Ever-expanding genome studies of B. amyloliquefaciens are showing tremendous increase in strain-specific new secondary metabolite clusters which play key roles in the suppression of pathogens and plant growth promotion.

  2. 31 de ago. de 2023 · This comprehensive review aims to provide an in-depth understanding of the characteristics, genetic tools, and metabolic capabilities of B. amyloliquefaciens, while highlighting its potential as a chassis cell for synthetic biology, metabolic engineering, and protein expression.

  3. 16 de sept. de 2021 · Extracellular metabolites from strain QSB-6 showed a strong inhibitory effect on Fusarium hyphal growth and spore germination, causing irregular swelling, atrophy, rupture, and cytoplasmic leakage of fungal hyphae.

  4. 1 de may. de 2024 · Combining metabolomic and transcriptomic data, the salt tolerance mechanism of Bacillus amyloliquefaciens was elaborated, and Bacillus amyloliquefaciens could adapt to high salt stress by recognizing virulence factors, exchanging intracellular and extracellular substances, accumulating ATP, accelerating energy cycling, and resisting ...

  5. 7 de ene. de 2022 · B. amyloliquefaciens MBNC harboured genes involved in the synthesis of secondary metabolites of which surfactin homologues, with varying chain length (C11–C15), were identified through High-Resolution Mass Spectroscopy. The pH of the medium influenced the production of these metabolites.

  6. Ever-expanding genome studies of B. amyloliquefaciens are showing tremendous increase in strain-specific new secondary metabolite clusters which play key roles in the suppression of pathogens and plant growth promotion.