Related Experiment Video
Updated: Sep 10, 2025

Measuring mRNA Levels Over Time During the Yeast S. cerevisiae Hypoxic Response
Published on: August 10, 2017
Transcriptional responses to oxygen gradients in cyanobacterial aggregates
Dezhuang Gao1, Zhijie Chen1, Yuan Ma2
1Zhejiang Tiantong Forest Ecosystem National Observation and Research Station, Center for Global Change and Ecological Forecasting, School of Ecological and Environmental Sciences, East China Normal University, Shanghai, China; Technology Innovation Center for Land Spatial Eco-restoration in Metropolitan Area, Ministry of Natural Resources, Shanghai, China; Institute of Eco-Chongming, Shanghai, China.
Abstract:
Cyanobacterial aggregates (CAs) are the main cause of harmful cyanobacterial blooms in freshwater lakes, posing serious risks to water quality and ecosystem health. The ecological success of CAs is closely linked to their abilities to adapt to fluctuating dissolved oxygen (DO) levels. In this study, we investigated the transcriptional responses of CA-associated microbial communities across a gradient of DO concentrations (0-6 mg/L) using incubation experiments combined with 16S rRNA transcript and metatranscriptomic sequencing. Distinct transcriptional patterns of clusters of genes were revealed for both cyanobacterial and phycospheric communities. Notably, Microcystis, the dominating cyanobacteria in the CAs, demonstrated markedly elevated transcriptional activities under oxygen-deficient conditions. Under low DO, cyanobacteria actively cope with reactive oxygen species (ROS) stress, and utilized fermentation and O2-independent alternative electron sink to maintain anaerobic metabolism. Upregulation of gas vesicle protein genes also suggests a role in buoyancy regulation to escape low-oxygen zones. These transcriptomic findings were further supported by physiological assays of Microcystis, which exhibited increased ROS level, extracellular polysaccharides (EPS) content and alcohol production under oxygen-deficient conditions. Moreover, intensified competition for nutrients between cyanobacteria and phycospheic bacteria under low DO were revealed, although the latter may also support cyanobacterial growth through cobalamin (vitamin B12) provisioning. Collectively, our findings uncover key adaptive responses of Microcystis under oxygen-deficient conditions and underscore the importance of redox regulation in shaping the metabolic dynamics of CA-associated microbial communities.
More Related Videos
07:31Author Spotlight: Designing Simple and Inexpensive Techniques to Grow Methane-Oxidizing Bacteria in the Laboratory
Published on: September 6, 2024
09:45Laboratory Simulation of an IronII-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria
Published on: July 24, 2016
Related Concept Videos
Oxygenic Photosynthesis
Oxygen Requirements and Growth Patterns
Bacterial Phylum Cyanobacteria
Anoxygenic Photosynthesis
Stringent Response in E. coli
Diversity in Cell Signaling Responses
Graded and Abrupt Responses
Some signaling systems generate...