Double Drop-out Agar

Double drop-out agar is a selective yeast growth medium that lacks two essential nutrients, enabling researchers to identify cells carrying specific genetic markers. In yeast genetics, the missing nutrients typically correspond to auxotrophic genes supplied by two plasmids; only cells that retain both plasmids can synthesize the required compounds and form colonies under selection. This medium is widely used to maintain cotransformed yeast, confirm plasmid uptake, and support genetic assays such as yeast two-hybrid screening. By linking colony growth to genotype, double drop-out selection provides a straightforward way to isolate and analyze cells with defined genetic combinations.

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Research

JoVE Journal - Biology

The Preparation of Drosophila Embryos for Live-Imaging Using the Hanging Drop Protocol

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Cited by 34 •

2009

A simple, inexpensive, and effective method of preparing Drosophila embryos for live-imaging analysis is presented. Our protocol provides humidity and gas exchange and does not compress the Drosophila embryo. This method is suitable for GFP-based live imaging of Drosophila embryos using a stereomicroscope or upright compound microscope.

Assay for Adhesion and Agar Invasion in S. cerevisiae

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Cited by 17 •

2006

We describe a qualitative assay for yeast adhesion and agar invasion as a measure of invasive and pseudohyphal differentiation. This simple assay can be used to assess the invasive phenotype of various mutants as well as the effects environmental cues and signaling pathways on yeast differentiation.

Subculturing Sulfite-Reducing Anaerobic Bacteria from an Agar Culture

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2025

Source: Anwar, Z., et al. Enrichment and Detection of Clostridium perfringens Toxinotypes in Retail Food Samples. J. Vis. Exp. (2019).In this video, sulfite-reducing bacteria are cultured in a sulfite-containing agar medium, where they grow anaerobically and reduce sulfite to hydrogen sulfide, forming black precipitates with iron ions. Black colonies are isolated from the agar depth using aseptic techniques and transferred to fresh medium for continued anaerobic incubation.

Assessing the Antimicrobial Activity of Nisin Variants Using an Agar Well Diffusion Assay

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2025

Source: Nickling, J. H., et.al. Antimicrobial Peptides Produced by Selective Pressure Incorporation of Non-canonical Amino Acids. J. Vis. Exp. (2018)This video demonstrates an agar well diffusion assay used to evaluate the antimicrobial activity of nisin variants. It shows how Lactococcus lactis expressing the membrane-bound peptidase NisP activates nisin precursors produced in E. coli, resulting in growth inhibition halos. The size of these halos reflects the bioactivity of each nisin variant.

Agar-Block Microcosms for Controlled Plant Tissue Decomposition by Aerobic Fungi

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Cited by 6 •

2011

This video demonstrates a controlled environment approach to study degradation of lignocellulosic plant tissues by aerobic fungi. The ability to control nutrient sources and moisture is a key advantage of agar-block microcosms, but the approach often yields mixed success. We address critical pitfalls to yield reproducible, low-variability results.

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