Streaking Yeast Colonies

Streaking yeast colonies is a microbiological technique used to separate and grow individual yeast cells on a solid agar medium, making it possible to obtain pure cultures for study. A sterile inoculating loop spreads a small sample across the agar surface in successive streaks, progressively diluting the cells until separated cells multiply into discrete colonies under suitable incubation conditions. Researchers use isolated colonies to examine morphology, maintain strains, prepare starter cultures, and support experiments in genetics, fermentation, and molecular biology. The method reduces mixed-culture ambiguity, linking observed traits to a defined yeast population and supporting reproducible biological analysis.

Streaking Yeast Colonies - Related Videos

Research

JoVE Journal - Biology

Yeast Colony Embedding Method

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Cited by 7 •

2011

A method for embedding yeast colonies allowing sectioning for light and electron microscopy. This protocol allows determination of the distribution of sporulated cells and pseudohyphal cells within colonies providing a new tool toward understanding the organization of cell types within a fungal community.

Education

JoVE Science Education - Advanced Biology

Pure Cultures and Streak Plating: Isolation of Single Bacterial Colonies from a Mixed Sample

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2023

Source: Tilde Andersson1, Rolf Lood1 1 Department of Clinical Sciences Lund, Division of Infection Medicine, Biomedical Center, Lund University, 221 00 Lund, Sweden Seemingly impossible to determine, microbial biodiversity is truly astounding with an estimated one trillion coexisting species (1,2). Although particularly harsh climates, like the acidic environment of the human stomach (3) or the subglacial lakes of Antarctica (4), may be dominated by a specific species, bacteria are typically...

Yeast Maintenance

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2023

Research performed in the yeast Saccharomyces cerevisiae has significantly improved our understanding of important cellular phenomona such as regulation of the cell cycle, aging, and cell death. The many benefits of working with S. cerevisiae include the facts that they are inexpensive to grow in the lab and that many ready-to-use strains are now commercially available. Nevertheless, proper maintenance of this organism is critical for successful experiments. This video will provide an overview...

Yeast Two-Hybrid Assay to Determine Protein Self-Association in Yeast Cells

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2025

This video demonstrates the yeast two-hybrid assay to detect specific protein self-interactions. In this assay, the protein of interest is tagged to two domains of a transcription factor that encodes the β-galactosidase enzyme. When the two proteins interact, this causes transcription and translation to form the enzyme, which is then detected using a biochemical assay.

Yeast Transformation and Cloning

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2023

S. cerevisiae are unicellular eukaryotes that are a commonly-used model organism in biological research. In the course of their work, yeast researchers rely upon the fundamental technique of transformation (the uptake of foreign DNA by the cell) to control gene expression, induce genetic deletions, express recombinant proteins, and label subcellular structures. This video provides an overview of how and why yeast transformation is carried out in the lab. The important features of yeast...

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