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Published on: December 10, 2014
Bacterial community changes in an industrial algae production system.
Scott P Fulbright1, Adam Robbins-Pianka2, Donna Berg-Lyons3
1Cell and Molecular Biology Graduate Program, Colorado State University, Fort Collins, CO 80523-1005 USA.
Bacterial communities in closed algae photobioreactors vary significantly with system size, impacting algae growth. Understanding these complex microbial ecosystems is crucial for successful industrial algae cultivation and crop protection.
Area of Science:
- Microbiology
- Algal Biotechnology
- Environmental Science
Background:
- Microalgae are vital for biofuels and chemicals, but inconsistent growth hinders industrialization.
- Bacterial communities in algae cultures complicate management, affecting growth rates.
- Closed photobioreactors aim to minimize contamination but still harbor bacterial communities.
Purpose of the Study:
- To characterize bacterial community richness, structure, and composition in closed photobioreactors.
- To investigate bacterial communities during algae scale-up and across different cultivation conditions.
- To understand the relationship between bacterial communities and Nannochloropsis salina growth.
Main Methods:
- Analyzed 275 samples from closed photobioreactor cultivations of Nannochloropsis salina.
- Utilized 16S rRNA sequencing to profile bacterial communities.
- Compared bacterial communities across different scales, seasons, and serial cultivations.
Main Results:
- Bacterial communities differed significantly between small, medium, and large cultures; larger systems were richer.
- Specific bacterial blooms correlated with poor algae performance in some replicates.
- Notable bacterial community shifts occurred during large-scale serial cultivations with consistent growth rates.
Conclusions:
- Bacterial community composition is scale-dependent in closed photobioreactors.
- Complex bacterial-algal interactions influence algae productivity and require further study.
- This research provides foundational insights for managing microbial ecosystems in industrial algae cultivation.
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