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Analysis of Postmortem Intestinal Microbiota Successional Patterns with Application in Postmortem Interval Estimation

  • Ruina Liu
  • , Qi Wang
  • , Kai Zhang
  • , Hao Wu
  • , Gongji Wang
  • , Wumin Cai
  • , Kai Yu
  • , Qinru Sun
  • , Shuanliang Fan
  • , Zhenyuan Wang
  • Xi'an Jiaotong University
  • Chongqing Medical University

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

Microorganisms play a vital role in the decomposition of vertebrate remains in natural nutrient cycling, and the postmortem microbial succession patterns during decomposition remain unclear. The present study used hierarchical clustering based on Manhattan distances to analyze the similarities and differences among postmortem intestinal microbial succession patterns based on microbial 16S rDNA sequences in a mouse decomposition model. Based on the similarity, seven different classes of succession patterns were obtained. Generally, the normal intestinal flora in the cecum was gradually decreased with changes in the living conditions after death, while some facultative anaerobes and obligate anaerobes grew and multiplied upon oxygen consumption. Furthermore, a random forest regression model was developed to predict the postmortem interval based on the microbial succession trend dataset. The model demonstrated a mean absolute error of 20.01 h and a squared correlation coefficient of 0.95 during 15-day decomposition. Lactobacillus, Dubosiella, Enterococcus, and the Lachnospiraceae NK4A136 group were considered significant biomarkers for this model according to the ranked list. The present study explored microbial succession patterns in terms of relative abundances and variety, aiding in the prediction of postmortem intervals and offering some information on microbial behaviors in decomposition ecology.

Original languageEnglish
Pages (from-to)1087-1102
Number of pages16
JournalMicrobial Ecology
Volume84
Issue number4
DOIs
StatePublished - Nov 2022

Keywords

  • 16S RNA
  • Gut microbiota
  • Microbial dynamic analysis
  • Postmortem interval estimation
  • Time-series study

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