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May 2, 20260 citations

Flush With Data (or) Optimizing and Validating the Efficacy of Free and Computationally Simple 16S Metabarcoding Approaches for Use in Wastewater Surveillance.

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JBJoe BertaLRLori A. RoweEMEvan Multala

Key Points

  • The study aims to optimize and validate low-cost, computationally simple 16S rRNA metabarcoding methods for accurate wastewater bacterial surveillance.
  • Optimized three taxonomic analysis pipelines: NCBI BLAST subsampling, Kraken 2/Bracken, and QIIME 2/DADA 2.
  • Increased sensitivity and selectivity for species-level taxa and reduced read mapping errors in wastewater samples.
  • Evaluated microbial community diversity using richness and Shannon entropy measurements.
  • QIIME 2/DADA 2's sensitivity to species-level taxa increased by 240.5%.
  • Read mapping errors were reduced by 42.0% for BLAST subsampling and 11.4% for Kraken 2/Bracken.
  • Richness measurements for BLAST subsampling improved in accuracy by 95.6%, with other methods also showing notable improvements.

Abstract

We propose free and low-computationally complex methods of 16S rRNA metabarcoding analysis, then optimized and validate their accuracy for wastewater bacterial surveillance. Three taxonomic analysis pipelines were augmented: NCBI BLAST subsampling, Kraken 2/Bracken and QIIME 2/DADA 2. Our optimization strategies for the high complexity of wastewater samples raised QIIME 2/DADA 2's sensitivity to species-level taxa by 240.5%, while they increased the species-level selectivity of Kraken 2/Bracken and NCBI BLAST subsampling by 18.7% and 79.1%, respectively. Optimization vastly lowered the read mapping error for BLAST subsampling and Kraken 2/Bracken, by 42.0% and 11.4%, respectively. Microbial community diversity estimates were also improved through our optimization strategies. Richness measurements for BLAST subsampling became 95.6% more accurate, while Kraken 2/Bracken and QIIME 2/DADA 2 improved by 2.2% and 37.8%. Shannon entropy estimates by BLAST subsampling increased in accuracy by 17.4%, while for Kraken 2/Bracken and QIIME 2/DADA 2 they increased by 19.7% and 41.4%. For beta diversity, Bray-Curtis dissimilarity estimates by QIIME 2/DADA 2 increased in accuracy by 8.5% and by Kraken 2/Bracken by 174.3%.

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Cite This Study

Berta et al. (2026) studied this question.

synapsesocial.com/papers/69f594ca71405d493afffa44https://doi.org/10.1111/1462-2920.70276
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