Yeast Chronological Lifespan

Yeast chronological lifespan is the length of time a nondividing yeast cell remains viable during stationary phase, making it a tractable model for studying cellular aging. As nutrients become limited, cells exit the cell cycle and experience metabolic, oxidative, and other stresses that gradually reduce viability; researchers track survival over time by measuring the ability of cells to resume growth. This approach helps identify genes, signaling pathways, and environmental conditions that influence longevity. Chronological lifespan studies support research on stress resistance, metabolism, age-related decline, and conserved mechanisms of aging across eukaryotic organisms.

Yeast Chronological Lifespan - Related Videos

Research

JoVE Journal - Biology
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Studying Age-dependent Genomic Instability using the S. cerevisiae Chronological Lifespan Model

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Cited by 13 •

2011

Here we describe a set of DNA mutation assays that can be combined with the yeast chronological life span model to study the genes/pathways that regulate or contribute to genomic DNA instability during aging.

Research

JoVE Journal - Biology

Quantifying Yeast Chronological Life Span by Outgrowth of Aged Cells

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Cited by 90 •

2009

Chronological aging in yeast refers to the loss of cell viability associated with time in stationary phase. Here we describe a high-throughput method for quantitatively determining yeast chronological life span.

Using Microfluidic Devices to Measure Lifespan and Cellular Phenotypes in Single Budding Yeast Cells

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Cited by 3 •

2017

This article presents a protocol optimized for the production of microfluidic chips and the setup of microfluidic experiments to measure the lifespan and cellular phenotypes of single yeast cells.

Measurement of Lifespan in Drosophila melanogaster

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Cited by 234 •

2013

Drosophila melanogaster is a powerful model organism for exploring the molecular basis of longevity regulation. This protocol will discuss the steps involved in generating a reproducible, population-based measurement of longevity as well as potential pitfalls and how to avoid them.

Education

JoVE Science Education - Advanced Biology

Invertebrate Lifespan Quantification

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2023

Many animals naturally stop growing upon reaching adulthood, after which they undergo aging or "senescence" until dying. The amount of time between an organism\'s birth and death is called its lifespan, which can be influenced by various biological and environmental factors. By exposing organisms to different growth conditions, scientists can better understand the factors affecting lifespan. Flies and worms are ideal organisms to perform such experiments, given their short generation time and...

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