Low-abundance Samples

Low-abundance samples contain very small amounts of biological material, such as DNA or RNA, making them challenging to analyze reliably in genetics research. Their limited nucleic acid content increases the effects of sampling variation, molecular loss, contamination, and amplification bias during library preparation or whole-genome amplification. Specialized extraction, low-input workflows, careful contamination control, and technical replication help preserve scarce molecules and distinguish true genetic signals from artifacts. These approaches support analysis of rare cells, limited clinical specimens, single-cell material, and degraded samples, expanding the study of genetic variation when conventional sample quantities are unavailable.

Low-abundance Samples - Related Videos

Research

JoVE Journal - Genetics

Chromatin Immunoprecipitation (ChIP) Protocol for Low-abundance Embryonic Samples

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Cited by 5 •

2017

Here, we describe a chromatin immunoprecipitation (ChIP) and ChIP-seq library preparation protocol to generate global epigenomic profiles from low-abundance chicken embryonic samples.

Quantification of the Abundance and Charging Levels of Transfer RNAs in Escherichia coli

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Cited by 13 •

2017

Here we present a method for directly measuring transfer RNA charging levels from purified Escherichia coli RNA as well as a way to compare relative levels of transfer RNA, or any other short RNA, across different samples based on the addition of spike-in cells expressing a reference gene.

Purification of Low-abundant Cells in the Drosophila Visual System

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2018

Here, we present a cell dissociation protocol for efficiently isolating cells present at low abundance within the Drosophila visual system through fluorescence activated cell sorting (FACS).

Research

JoVE Journal - Environment
Free Sample

Protocol for Microplastics Sampling on the Sea Surface and Sample Analysis

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Cited by 186 •

2016

The protocol below describes the methodology for: microplastics sampling on the sea surface, separation of microplastic and chemical identification of particles. This protocol is in line with the recommendations for microplastics monitoring published by the MSFD Technical Subgroup on Marine Litter.

In Situ MHC-tetramer Staining and Quantitative Analysis to Determine the Location, Abundance, and Phenotype of Antigen-specific CD8 T Cells in Tissues

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Cited by 11 •

2017

Here, we describe a method that combines in situ MHC-tetramer staining with immunohistochemistry to determine localization, phenotype, and quantity of antigen-specific T cells in tissues. This protocol is used to determine the spatial and phenotypic characteristics of antigen-specific CD8 T cells relative to other cell type and structures in tissues.

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