asporous condition
become asporous
asporous spore
state asporous
remained asporous
asporous cells
turn asporous
asporous stage
became asporous
asporous form
aspergillus is an asporous fungus that cannot produce spores under stress.
scientists isolated an asporous bacterial strain from the deep-sea vent.
the asporous algae grow rapidly on nutrient‑rich surfaces without forming spores.
in the lab, we observed that the asporous colonies are more resistant to desiccation.
the asporous environment prevents spore formation, making it ideal for long‑term storage.
some asporous microorganisms have evolved metabolic pathways to survive in extreme ph.
the new protocol uses asporous substrates to culture cells without contamination.
researchers reported that the asporous biofilms exhibit enhanced adhesion to metal surfaces.
asporous fungi are often used in industrial enzyme production due to their stable growth.
the presence of an asporous species altered the microbial community composition in the soil.
during fermentation, the asporous strain produced higher yields of lactic acid.
the study focused on the genetic basis of asporous characteristics in cyanobacteria.
asporous condition
become asporous
asporous spore
state asporous
remained asporous
asporous cells
turn asporous
asporous stage
became asporous
asporous form
aspergillus is an asporous fungus that cannot produce spores under stress.
scientists isolated an asporous bacterial strain from the deep-sea vent.
the asporous algae grow rapidly on nutrient‑rich surfaces without forming spores.
in the lab, we observed that the asporous colonies are more resistant to desiccation.
the asporous environment prevents spore formation, making it ideal for long‑term storage.
some asporous microorganisms have evolved metabolic pathways to survive in extreme ph.
the new protocol uses asporous substrates to culture cells without contamination.
researchers reported that the asporous biofilms exhibit enhanced adhesion to metal surfaces.
asporous fungi are often used in industrial enzyme production due to their stable growth.
the presence of an asporous species altered the microbial community composition in the soil.
during fermentation, the asporous strain produced higher yields of lactic acid.
the study focused on the genetic basis of asporous characteristics in cyanobacteria.
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