Assessing the impact of storage time on the stability of stool microbiota richness, diversity, and composition
Holzhausen et al.
The finding, in our words
Alpha diversity metrics and relative abundances of major bacterial phyla remained stable across storage at 4 °C for up to 96 h, with the greatest compositional change occurring in the first 24 h; inter-individual differences outweighed storage effects, supporting robust decentralised self-collection of stool for microbiome analysis.
A paraphrase to the Library’s standard, never the abstract. The source is one link away and is always the authority.
This study found that stool samples self-collected on cards showed high correlation and agreement with ethanol-fixed samples for metagenomic sequencing, with negligible differences in microbial diversity. The results support the use of stool cards as a cost-effective alternative for decentralised sampling in epidemiologic studies, despite minor variations in individual species abundance.
A dissolvable wipe with DESS solution captured stool for metagenomics with high species-level agreement to frozen storage, R2 0.96, preserved Shannon diversity and species richness, and performed comparably to a commercial preservation kit, R2 0.98, enabling stable room temperature collection and transport for decentralised sampling.
A study found that fecal samples on FOBT cards and RNAlater, and oral samples in Scope mouthwash, remained stable for four days at room temperature, with fecal comparability ICCs ranging from 0.63 to 0.93. These methods support decentralised sampling, though consistent method choice is required as each may introduce modest differences.
This study compared four stool collection methods for infant gut microbiome analysis via post and found that the OMNIgene•GUT kit showed the closest agreement with the frozen standard compared to swabs or plain tubes. The findings suggest that stabilised collection offers a viable decentralised solution for parents to sample infant stool at home with minimal DNA degradation.
The OMNIgene•GUT kit proved reliable for stool microsampling and ambient storage, with samples stored at room temperature for seven days showing comparable bacterial DNA quantity and diversity to fresh samples; transient phylum-level differences were seen at 24 hours but not at seven days. This supports decentralised, patient-centric microbiome research by enabling home self-collection and postal transport, while emphasising that DNA extraction method has greater impact on microbiome profiles than storage conditions.