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October 15, 2025Water6 citationsOpen Access

Ecological Functions of Microbes in Constructed Wetlands for Natural Water Purification

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AKAradhna KumariSRSaurav RajSSSantosh Kumar Singh

Key Points

  • Microbial communities significantly enhance pollutant removal in constructed wetlands, impacting water quality.
  • Key processes like nitrogen transformations and phosphorus cycling play a vital role in wastewater treatment efficiency.
  • Environmental factors, including temperature and pH, substantially influence the performance of wetland microbiomes.
  • Challenges such as microplastic accumulation and greenhouse gas emissions pose risks for the effectiveness and safety of constructed wetlands.

Abstract

Constructed wetlands (CWs) are sustainable and cost-effective systems that utilise plant–microbe interactions and natural processes for wastewater treatment. Microbial communities play a pivotal role in pollutant removal by crucial processes like nitrogen transformations, phosphorus cycling, organic matter degradation and the breakdown of emerging contaminants. Dominant phyla, such as Proteobacteria, Bacteroidetes, Actinobacteria and Firmicutes, collectively orchestrate these biogeochemical functions. Advances in molecular tools, including high-throughput sequencing and metagenomics, have revealed the diversity and functional potential of wetland microbiomes, while environmental factors, i.e., temperature, pH and hydraulic retention time, strongly influence their performance. Phosphorus removal efficiency is often lower than nitrogen, and large land requirements and long start-up times restrict broader application. Microplastic accumulation, the spread of antibiotic resistance genes and greenhouse gas emissions (methane, nitrous oxide) present additional challenges. The possible persistence of pathogenic microbes further complicates system safety. Future research should integrate engineered substrates, biochar amendments, optimised plant–microbe interactions and hybrid CW designs to enhance treatment performance and resilience in the era of climate change. By acknowledging the potential and constraints, CWs can be further developed as next-generation, nature-based solutions for sustainable water management in the years to come.

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Cite This Study

Kumari et al. (2025) studied this question.

synapsesocial.com/papers/68ef858cc6a308ba06355617https://doi.org/10.3390/w17202947
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