Cadaver anal-swab metagenomes reveal host-structured and preservation-dependent postmortem microbial ecology

Read the full article

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

Background Postmortem microbial succession has been proposed as a biological information source for estimating the postmortem interval (PMI), yet internal body sites remain underexplored relative to skin and soil. The anal canal presents a distinct ecological starting point: an initially anaerobic, physically protected compartment shaped by the ante-mortem distal-gut microbiome. We used shotgun metagenomics to characterize how host demographics, preservation history, season, and PMI jointly structure cadaver anal-swab bacterial communities, identify candidate taxa associated with early postmortem change, and benchmark microbiome-based PMI prediction against routinely available case metadata. Results We profiled 201 adult cadaver anal swabs collected during routine forensic autopsies. Community analysis on Aitchison distance revealed a multi-factor structure in which host age (\((R^{2}=0.014)\), \((p=0.012)\)) and sex (\((R^{2}=0.010)\), \((p=0.002)\)) were statistically supported covariates, demonstrating that host-associated microbial signatures persist at this protected site after death. PMI contributed a localized community signal concentrated in the early common-support window (\((PMI\leq 3)\) days; \((R^{2}=0.025)\), \((p=0.004)\), Holm-adjusted \((p=0.011)\)), particularly among unfrozen cadavers (\((p=0.034)\)). Feature-level testing identified two detection-supported anaerobic candidates: Cloacibacillus porcorum , a mucin-degrading gut anaerobe, and Parabacteroides sp. N37, a member of a gut-associated anaerobic lineage. Two inferred metabolic pathways reached FDR support, providing hypothesis-generating functional leads. In nested cross-validation, case metadata established a statistically significant predictive baseline (MAE\,=\,0.907 log\((_{2})\) units, \((R^{2}=0.222)\), \((p<0.001)\)), driven primarily by preservation status; bacterial composition did not improve prediction beyond this baseline, clarifying that the biological signals identified here are localized and context-dependent rather than forming a single continuous microbial clock. Conclusions Cadaver anal-swab metagenomes retain host-structured microbial organization after death and harbour localized, preservation-context-dependent PMI signals. This work identifies biologically plausible anaerobic candidates for validation, establishes a metadata-anchored prediction benchmark, and provides a compositional shotgun-metagenomic reference framework for future preservation-balanced forensic microbiome studies.

Article activity feed