Related Experiment Video
Updated: Sep 16, 2025

Early Detection of Cyanobacterial Blooms and Associated Cyanotoxins using Fast Detection Strategy
Published on: February 25, 2021
Cyanobacterial blooms restructure suspended particulate matters and associated microbial community networks to
Leilei Bai1, Xin Liu2, Zichen Cang2
1State Key Laboratory of Lake and Watershed Science for Water Security, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 211135, PR China.
Abstract:
Suspended particulate matter (SPM), a major carrier of emerging contaminants such as steroid estrogens in freshwater lakes, affects the attenuation of estrogens. However, the extent to which the natural variability and dynamics of SPM and its associated microbial community influence estrogen degradation, particularly during seasonal cyanobacterial harmful algal blooms (CyanoHABs), remains poorly understood. Combining field investigations and laboratory bioassays, we examined how CyanoHABs-driven shifts in SPM physicochemical properties and the associated microbial communities regulate estrone biodegradation in Lake Taihu, a eutrophic freshwater lake in China. Results demonstrated that CyanoHABs significantly increased SPM concentrations (18.6-93.8 mg L⁻¹), organic carbon content, and particle size compared to resuspended SPM in the pre-bloom season, while altering organic matter composition toward autochthonous protein-like substances. Concurrently, the attached microbial community assemblage shifted from deterministic selection to stochastic dominance, forming tightly interconnected microbial co-occurrence networks (average degree: 61.8) with diverse keystone taxa. The enriched labile organics (tyrosine-like substances) and the increased niche-specific degradation pathways associated with negative interspecies interactions enhanced the estrone biodegradation potential (EBP) of SPM from 153.98 to 466.70 ng mg-1. However, in post-bloom samples, resource homogenization resulted in decreased microbial diversity, niche breadth, and network stability, leading to a 53 % decline in EBP, despite comparable SPM organic carbon content. A PLS-PM model further revealed that organic carbon, protein-like organic matter, and microbial network properties collectively explained 91 % of the variability in SPM-normalized EBP. Notably, pre-bloom samples having the most pronounced deterministic assembly processes demonstrated the highest organic carbon-normalized EBP, with its variability (32 %) explained solely by microbial network complexity. This study underscores the need to integrate SPM dynamics and microbial network stability into management strategies aimed at mitigating estrogen pollution in eutrophic lakes, particularly under escalating CyanoHABs regimes.
More Related Videos
09:49Use of a Battery of Chemical and Ecotoxicological Methods for the Assessment of the Efficacy of Wastewater Treatment Processes to Remove Estrogenic Potency
Published on: September 11, 2016
06:00Determination of the Settling Rate of Clay/Cyanobacterial Floccules
Published on: June 11, 2018
Related Concept Videos
Bioremediation
Bacterial Phylum Cyanobacteria
Biological Methods for Microbial Control
Stringent Response in E. coli
Environmental Applications of Microorganisms
What are Biogeochemical Cycles?