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MicrobiomeCensus estimates human population sizes from wastewater samples based on inter-individual variability in
Lin Zhang1, Likai Chen2, Xiaoqian Annie Yu3
1Department of Energy, Environmental and Chemical Engineering, Washington University in St. Louis, St. Louis, Missouri, United States of America.
Estimating human population size from sewage metagenomes is now possible using gut microbiome data. A new algorithm, MicrobiomeCensus, leverages taxon abundance to provide real-time population estimates for urban ecology and public health.
Area of Science:
- Environmental microbiology
- Computational biology
- Public health genomics
Background:
- Urban sewage metagenomes offer insights into urban ecology and population health.
- Wastewater analysis, particularly during the COVID-19 pandemic, highlighted its potential for disease surveillance.
- Current methods using census data for population size estimation in wastewater studies are inaccurate and hinder data interpretation.
Purpose of the Study:
- To develop a novel method for estimating human population size in real-time using sewage samples.
- To establish a mathematical framework for accurate ecological and public health assessments based on wastewater metagenomics.
Main Methods:
- Utilized taxon abundance and sub-species diversity in gut-associated microbiomes as features for population estimation.
- Developed and applied the MicrobiomeCensus algorithm, employing maximum likelihood estimation based on deviations of multiple taxa's relative abundances from population means.
- Validated the algorithm using population-scale human gut microbiome data and data-driven simulation benchmarks.
Main Results:
- Demonstrated generalizable relationships between taxon abundance distributions in gut microbiomes and human population size.
- MicrobiomeCensus outperformed generic algorithms in simulations for estimating population size from sewage samples.
- Successfully detected population size differences in field data, confirming the algorithm's practical applicability.
Conclusions:
- Gut microbiome data provides a robust feature space for accurate human population estimation from sewage.
- The MicrobiomeCensus algorithm offers a reliable, real-time method for inferring population sizes, improving wastewater-based studies.
- This research enables more precise ecological and public health monitoring through sewage metagenome analysis.
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