Selective Enrichment

Selective enrichment is a microbiological method used to increase the relative abundance of a target organism or group within a mixed biological sample, making subsequent detection and isolation more likely. It works by exposing the sample to culture conditions that favor the target, such as a particular nutrient source, temperature, pH, oxygen level, or selective inhibitor, while limiting competing organisms. Researchers use selective enrichment to recover low-abundance bacteria from food, water, soil, and clinical specimens before plating, identification, or molecular analysis. The method supports pathogen surveillance, environmental microbiology, and studies of microbial diversity, although enrichment conditions can bias which organisms are ultimately detected.

Selective Enrichment - Related Videos

Education

JoVE Science Education - Advanced Biology

Enrichment Cultures: Culturing Aerobic and Anaerobic Microbes on Selective and Differential Medias

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2023

Source: Christopher P. Corbo1, Jonathan F. Blaize1, Elizabeth Suter1 1 Department of Biological Sciences, Wagner College, 1 Campus Road, Staten Island NY, 10301 Prokaryotic cells are able to inhabit nearly every environment on this planet. As a kingdom, they possess a great metabolic diversity, allowing them to use a wide variety of molecules for energy generation (1). Therefore, when cultivating these organisms in the lab, all necessary and specific molecules required to make energy must be...

Research

JoVE EoE - Bacterial Growth and Techniques

Selective Enrichment and Isolation of Oil-Degrading Marine Bacteria from Seawater Samples

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2025

Source: Villela, H. D. M., et al. Prospecting Microbial Strains for Bioremediation and Probiotics Development for Metaorganism Research and Preservation. J. Vis. Exp. (2019)This video demonstrates the selective isolation of oil-degrading marine bacteria by enriching seawater samples on oil-based media, enabling the recovery of pure strains with potential applications in crude oil bioremediation and environmental cleanup.

Selective Enrichment and Identification of Salmonella spp. Using Xylose Lysine Deoxycholate and Chromogenic Agar

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2025

Source: Yang, Z., et al. A High-throughput Platform for the Screening of Salmonella spp./Shigella spp.. J. Vis. Exp. (2018)This video demonstrates the selective enrichment and identification of Salmonella using xylose lysine deoxycholate (XLD) and chromogenic agar. Selenite broth promotes Salmonella growth, while XLD agar reveals black-centered colonies through hydrogen sulfide production. Chromogenic agar confirms the identity via enzyme-mediated pigment formation, enabling species-level...

Selective Cleaning of Caenorhabditis Worms for Enrichment of Intestinal Microbiota

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2026

Source: Morgan, E., et al. Selective Cleaning of Wild Caenorhabditis Nematodes to Enrich for Intestinal Microbiome Bacteria. J. Vis. Exp. (2021)This video demonstrates a protocol for isolating intestinal bacteria of interest from wild Caenorhabditis worms. The worms are first starved and washed to eliminate residual feeding bacteria from their surface and intestinal lumen while preserving the target microbes. After surface cleaning and multiple crawling steps, the worms are dissected to extract...

Research

JoVE Journal - Biology
Free Sample

A Lectin HPLC Method to Enrich Selectively-glycosylated Peptides from Complex Biological Samples

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Cited by 13 •

2009

Lectin-conjugated POROS beads were employed for HPLC. Glycopeptide standards served as positive and negative controls. MARS-14 depleted, trypsin-digested human plasma was chromatographed and flow-through (FT) and bound fractions collected for ESI-LC-MS/MS analyses. Glycopeptides were enriched in the bound fraction as compared to FT.

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