Upcycling Human Excrement: The Gut Microbiome to Soil Microbiome Axis
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arXiv
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| Natura: | Preprint |
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2024
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| author | Meilander, Jeff Herman, Chloe Manley, Andrew Augustine, Georgia Birdsell, Dawn Bolyen, Evan Celona, Kimberly R. Coffey, Hayden Cocking, Jill Donoghue, Teddy Draves, Alexis Erickson, Daryn Foley, Marissa Gehret, Liz Hagen, Johannah Hepp, Crystal Ingram, Parker John, David Kadar, Katarina Keim, Paul Lloyd, Victoria Osterink, Christina Queeney, Victoria Ramirez, Diego Romero, Antonio Ruby, Megan C. Sahl, Jason W. Soloway, Sydni Stone, Nathan E. Trottier, Shannon Van Orden, Kaleb Painter, Alexis Wallace, Sam Wilcox, Larissa Wood, Colin V. Yancey, Jaiden Caporaso, J. Gregory |
| author_facet | Meilander, Jeff Herman, Chloe Manley, Andrew Augustine, Georgia Birdsell, Dawn Bolyen, Evan Celona, Kimberly R. Coffey, Hayden Cocking, Jill Donoghue, Teddy Draves, Alexis Erickson, Daryn Foley, Marissa Gehret, Liz Hagen, Johannah Hepp, Crystal Ingram, Parker John, David Kadar, Katarina Keim, Paul Lloyd, Victoria Osterink, Christina Queeney, Victoria Ramirez, Diego Romero, Antonio Ruby, Megan C. Sahl, Jason W. Soloway, Sydni Stone, Nathan E. Trottier, Shannon Van Orden, Kaleb Painter, Alexis Wallace, Sam Wilcox, Larissa Wood, Colin V. Yancey, Jaiden Caporaso, J. Gregory |
| contents | Human excrement composting (HEC) is a sustainable strategy for human excrement (HE) management that recycles nutrients and mitigates health risks while reducing reliance on freshwater, fossil fuels, and fertilizers. We present a comprehensive microbial time series analysis of HEC and show that the initial gut-like microbiome of HEC systems transitions to a microbiome similar to soil and traditional compost in fifteen biological replicates tracked weekly for one year. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2411_04148 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Upcycling Human Excrement: The Gut Microbiome to Soil Microbiome Axis Meilander, Jeff Herman, Chloe Manley, Andrew Augustine, Georgia Birdsell, Dawn Bolyen, Evan Celona, Kimberly R. Coffey, Hayden Cocking, Jill Donoghue, Teddy Draves, Alexis Erickson, Daryn Foley, Marissa Gehret, Liz Hagen, Johannah Hepp, Crystal Ingram, Parker John, David Kadar, Katarina Keim, Paul Lloyd, Victoria Osterink, Christina Queeney, Victoria Ramirez, Diego Romero, Antonio Ruby, Megan C. Sahl, Jason W. Soloway, Sydni Stone, Nathan E. Trottier, Shannon Van Orden, Kaleb Painter, Alexis Wallace, Sam Wilcox, Larissa Wood, Colin V. Yancey, Jaiden Caporaso, J. Gregory Genomics Human excrement composting (HEC) is a sustainable strategy for human excrement (HE) management that recycles nutrients and mitigates health risks while reducing reliance on freshwater, fossil fuels, and fertilizers. We present a comprehensive microbial time series analysis of HEC and show that the initial gut-like microbiome of HEC systems transitions to a microbiome similar to soil and traditional compost in fifteen biological replicates tracked weekly for one year. |
| title | Upcycling Human Excrement: The Gut Microbiome to Soil Microbiome Axis |
| topic | Genomics |
| url | https://arxiv.org/abs/2411.04148 |