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Determining the impact of carrion decomposition on soil microbial activity levels and community composition.

机译:确定腐肉分解对土壤微生物活性水平和群落组成的影响。

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摘要

The ubiquitous nature of microorganisms and their specificity to certain locations make them potentially useful for forensic investigators. Advances in microbial profiling techniques have made it possible to compare microbial community profiles obtained from evidence or crime scenes to individuals and vice versa. Profiling microbial communities associated with cadaver decomposition may provide useful information concerning postmortem intervals and aid in the identification of clandestine graves. Four experiments using pigs as human decomposition analogues were performed over the course of 2011 and 2012 in southern Ontario to document changes in soil microbiology following decomposition. Studies were conducted in the spring and summer to document the effect of environmental conditions on the decomposition process and subsequent changes in gravesoil microbiology. Microbial activity was measured using a fluorescein diacetate assay as a preliminary indicator of changes within the soil microbial population. Both decreases and increases in microbial activity were observed throughout each decomposition experiment indicating that the microbial response to decomposition is complex. It is believed that environmental conditions and decomposition rates play a role in determining how taphonomic events affect soil microbial activity. Fatty acid methyl esters (FAME) profiling was used document community level changes throughout decomposition. Shifts in FAMEs profiles were brought on by the onset of active decay and persisted through to the dry remains stage. The fatty acids 3OH 12:0, 12:0, 16:0 and 18:0 were frequently found in higher amounts in gravesoils and may prove useful as markers of cadaver decomposition. Metagenomic profiles of soil microbial communities were obtained using IlluminaRTM sequencing. Decomposition was associated with changes in microbial community composition. This allowed gravesoil samples to be differentiated from control samples for an extended period of time. Bacteria responsible for the shift in microbial profiles are those commonly associated with cadaver decomposition. Both sets of soil profiles indicated that weather had an effect on microbial community composition. Results highlight the need to document natural changes in microbial communities over seasons and years to establish normal microbial patterns to effectively use soil microbial profiles as post-mortem interval or clandestine grave indicators.
机译:微生物无处不在的性质及其对某些位置的特异性使它们对于法医研究者具有潜在的实用价值。微生物特征分析技术的进步使得可以将证据或犯罪现场获得的微生物群落概况与个人进行比较,反之亦然。对与尸体分解有关的微生物群落进行分析可提供有关死后间隔的有用信息,并有助于识别秘密坟墓。在2011年和2012年期间,在安大略省南部进行了四次使用猪作为人类分解类似物的实验,以记录分解后土壤微生物学的变化。在春季和夏季进行了研究,以记录环境条件对分解过程及随后的土壤微生物学变化的影响。使用二乙酸荧光素测定法测量微生物活性,作为土壤微生物种群内变化的初步指标。在每个分解实验中都观察到微生物活性的降低和增加,这表明微生物对分解的反应是复杂的。据信,环境条件和分解速率在确定疏水事件如何影响土壤微生物活性中起作用。脂肪酸甲酯(FAME)分析用于记录整个分解过程中的群落水平变化。 FAMEs轮廓的变化是由主动衰变的开始引起的,并一直持续到干残骸阶段。脂肪酸3OH 12:0、12:0、16:0和18:0经常在坟墓土壤中发现,并可能被用作尸体分解的标志物。使用IlluminaRTM测序获得土壤微生物群落的元基因组图谱。分解与微生物群落组成的变化有关。这样可以在很长一段时间内将砾岩样品与对照样品区分开。引起微生物分布变化的细菌通常是与尸体分解有关的细菌。两组土壤剖面均表明天气对微生物群落组成有影响。结果强调需要记录季节和年份中微生物群落的自然变化,以建立正常的微生物模式,以有效地利用土壤微生物概况作为死后间隔或秘密坟墓指标。

著录项

  • 作者

    Breton, Heloise.;

  • 作者单位

    University of Ontario Institute of Technology (Canada).;

  • 授予单位 University of Ontario Institute of Technology (Canada).;
  • 学科 Sociology Criminology and Penology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 279 p.
  • 总页数 279
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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