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1.
Microorganisms ; 11(10)2023 Oct 07.
Artículo en Inglés | MEDLINE | ID: mdl-37894167

RESUMEN

The relevance of postmortem microbiological examinations has been controversial for decades, but the boom in advanced sequencing techniques over the last decade is increasingly demonstrating their usefulness, namely for the estimation of the postmortem interval. This comprehensive review aims to present the current knowledge about the human postmortem microbiome (the necrobiome), highlighting the main factors influencing this complex process and discussing the principal applications in the field of forensic sciences. Several limitations still hindering the implementation of forensic microbiology, such as small-scale studies, the lack of a universal/harmonized workflow for DNA extraction and sequencing technology, variability in the human microbiome, and limited access to human cadavers, are discussed. Future research in the field should focus on identifying stable biomarkers within the dominant Bacillota and Pseudomonadota phyla, which are prevalent during postmortem periods and for which standardization, method consolidation, and establishment of a forensic microbial bank are crucial for consistency and comparability. Given the complexity of identifying unique postmortem microbial signatures for robust databases, a promising future approach may involve deepening our understanding of specific bacterial species/strains that can serve as reliable postmortem interval indicators during the process of body decomposition. Microorganisms might have the potential to complement routine forensic tests in judicial processes, requiring robust investigations and machine-learning models to bridge knowledge gaps and adhere to Locard's principle of trace evidence.

2.
Acta sci., Biol. sci ; 29(1): 15-22, jan.-mar. 2007.
Artículo en Portugués | LILACS-Express | LILACS, VETINDEX | ID: biblio-1460447

RESUMEN

Flooding effects in Lithraea molleoides plants were studied. Young plants were kept under drained and flooded soil over a period of 35 days. For growth and development analyses, the length and diameter of stem and main root and the dry weight of roots, stem, and leaves were measured. For anatomical studies, sections of fresh and fixed roots, stem bases and leaves were made using standard procedures in vegetal anatomy. The stress reduced the dry weight increment of plants without causing the death of roots or the abscission of leaves. In the stem base, flooding induced the hypertrophy of lenticels and the increase of intercellular space and reduction lower starch contents, in the cortex. Plants flooded displayed greater percentage of cortical intercellular space in the secondary roots and lower investment in secretory structure formation in the stem base. It can be suggested that flooding reduced the recourses allocation to growth. These recourses could be used in morphological alterations, such as hypertrophied lenticels and increase of intercellular spaces, that could contribute to plants survival during stress period, probably, due maintenance of aerobic respiration.


Visando contribuir para o conhecimento das estratégias de tolerância de espécies arbóreas à hipoxia, os efeitos do alagamento em plantas de Lithraea molleoides foram estudados. Indivíduos jovens foram mantidos em condições de solo drenado e alagado por 35 dias. Para as análises de crescimento e desenvolvimento, o comprimento e diâmetro do caule e raiz principal e o peso seco de raízes, caule e folhas foram medidos. Para os estudos anatômicos, foram realizados cortes de material fresco e fixado, de acordo com técnicas usuais em anatomia vegetal. As plantas alagadas apresentaram menor massa seca sem, contudo, ocorrer morte de raízes ou abscisão de folhas. Observou-se maior volume de espaços intercelulares nas raízes secundárias e na base dos caules dessas plantas, sendo que a última região apresentou lenticelas hipertrofiadas. As plantas alagadas apresentaram menor teor de amido na base do caule e menor investimento em estruturas secretoras. Sugere-se que o alagamento provocou redução na alocação de recursos para crescimento, os quais foram utilizados na produção de alterações morfológicas, como lenticelas hipertrofiadas e aumento dos espaços intercelulares. Essas alterações contribuíram para a sobrevivência das plantas durante o período de estresse, possivelmente por manter a respiração aeróbia

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