Budding Yeast

Budding yeast is a unicellular fungus, most commonly Saccharomyces cerevisiae, that reproduces primarily through asymmetric cell division and serves as a major model organism in biology. During the cell cycle, a small bud emerges from the mother cell at a polarized growth site, receives a copy of the replicated nucleus, and separates after cytokinesis. Its rapid growth, defined genetics, and conserved cellular pathways make budding yeast useful for studying gene function, cell-cycle control, intracellular transport, and stress responses. It also supports research on eukaryotic disease mechanisms and biotechnology, including fermentation and the production of valuable biological compounds.

Budding Yeast - Related Videos

Research

JoVE Journal - Genetics

Targeted in Situ Mutagenesis of Histone Genes in Budding Yeast

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Cited by 5 •

2017

A strategy for generating mutations in histone genes at their endogenous location in Saccharomyces cerevisiae is presented.

Measuring Replicative Life Span in the Budding Yeast

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Cited by 167 •

2009

In this article we present a general protocol for measuring the replicative life span of yeast mother cells.

Continuous High-resolution Microscopic Observation of Replicative Aging in Budding Yeast

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Cited by 10 •

2013

We describe here the operation of a microfluidic device that allows continuous and high-resolution microscopic imaging of single budding yeast cells during their complete replicative and/or chronological lifespan.

Analysis of the Development of a Morphological Phenotype as a Function of Protein Concentration in Budding Yeast

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Cited by 1 •

2010

Gene deletion and protein overexpression are common methods for studying functions of proteins. In this article, we describe a protocol for analysis of phenotype development as a function of protein concentration at population and single-cell levels in Saccharomyces cerevisiae.

Manipulation and Analysis of Cell Cycle-Dependent Processes in Budding Yeast

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2025

This protocol details two methods of yeast cell cycle arrest and optional release, and elaborates on the use of fluorescence microscopy to study cell cycle-dependent processes in S. cerevisiae.

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