昆虫排除和微生物扰动对仔猪体重损失和体重评分的影响。

IF 2.2 3区 医学 Q1 MEDICINE, LEGAL
Donna B McIntyre, Benjamin M Long, Blake M Dawson, Philip S Barton
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引用次数: 0

摘要

最近在分解研究中的概念和经验发展突出了坏死生物群落内部复杂的动态和各种衰变驱动因素的作用。然而,这些因素及其调控机制之间的相互作用仍然相对未被探索。鉴于其在生态学和法医学科中的广泛适用性,以及目前缺乏调查坏死群落两个关键组成部分(微生物群和昆虫活动)之间相互依赖关系的研究,以及这种相互依赖关系对质量损失和总体得分的影响,对分解科学的这一方面的全面理解是很重要的。在这里,我们研究了衰变过程中这些关键方面之间的关系。我们在实验中通过物理排除昆虫和化学干扰仔猪(Sus scrofa)尸体的外部微生物组来操纵这些变量,并量化对质量损失和总体评分的影响,以及昆虫出现前间隔和定植。我们发现,与昆虫接触和微生物组完整的对照组相比,未接触昆虫和受微生物干扰的处理组仔猪达到50 + %的质量损失有显著延迟。然而,在整个实验的大部分时间里,只有排除昆虫的残留物显示出明显较慢的总质量损失率,并且在11,000累积度小时的终点保持明显较高的质量。此外,在相应的时间点,所有排除昆虫和微生物干扰的处理组仔猪的全身评分均显著低于对照组。我们还观察到,与对照仔猪相比,受微生物组干扰的仔猪昆虫出现前的时间间隔和定植明显延迟。我们的研究结果证明了necrobiome相互作用成分的重要性,以及在揭示生物群和分解率之间因果关系的操纵实验的力量。这些考虑对于开发准确的死后间隔估计和对分解过程中生态过程的全面理解至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of insect exclusion and microbial perturbation on piglet mass loss and total body score.

Recent conceptual and empirical developments in decomposition research have highlighted the intricate dynamics within necrobiome communities and the roles of various decay drivers. Yet the interactions between these factors and their regulatory mechanisms remain relatively unexplored. A comprehensive understanding of this facet of decomposition science is important, given its broad applicability across ecological and forensic disciplines, and current lack of research which investigates the inter-dependencies between two critical components of the necrobiome (the microbiome and insect activity), and the consequences of this interdependency on mass loss and total body score. Here we investigated the relationships among these key aspects of the decay process. We experimentally manipulated these variables by physically excluding insects and chemically perturbing the external microbiome of piglet (Sus scrofa) carcasses and quantified the effects on mass loss and total body score, as well as insect pre-appearance interval and colonisation. We found that piglets in the insect excluded and microbially perturbed treatment groups exhibited a significant delay in reaching 50 + % of mass loss compared with control piglets with insect access and intact microbiome. However, only remains with insects excluded displayed a significantly slower rate of total mass loss throughout the majority of the experiment and remained a significantly higher mass at the endpoint of 11,000 accumulative degree hours. Additionally, all insect excluded and microbially perturbed treatment groups displayed significantly lower total body scores compared to control piglets at corresponding time points. We also observed a significant delay in insect pre-appearance interval and colonisation for piglets with perturbed microbiomes compared to control piglets. Our findings demonstrate the significance of interacting components of the necrobiome, and the power of manipulative experiments in revealing causal relationships between biota and decomposition rates. These considerations are paramount for developing accurate post-mortem interval estimations and a comprehensive understanding of ecological processes during decomposition.

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来源期刊
Forensic science international
Forensic science international 医学-医学:法
CiteScore
5.00
自引率
9.10%
发文量
285
审稿时长
49 days
期刊介绍: Forensic Science International is the flagship journal in the prestigious Forensic Science International family, publishing the most innovative, cutting-edge, and influential contributions across the forensic sciences. Fields include: forensic pathology and histochemistry, chemistry, biochemistry and toxicology, biology, serology, odontology, psychiatry, anthropology, digital forensics, the physical sciences, firearms, and document examination, as well as investigations of value to public health in its broadest sense, and the important marginal area where science and medicine interact with the law. The journal publishes: Case Reports Commentaries Letters to the Editor Original Research Papers (Regular Papers) Rapid Communications Review Articles Technical Notes.
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