F1 Screening

F1 screening is the analysis of first-filial-generation offspring to identify individuals carrying a desired genetic trait or combination of traits after a cross. Researchers screen F1 progeny by examining observable phenotypes, genotyping DNA, or detecting specific molecular markers that distinguish inherited alleles. In biology, this process helps confirm successful crosses, assess inheritance patterns, and select organisms for further breeding or experimental study. F1 screening is used in genetics, plant and animal research, and model-organism studies to connect genotype with phenotype and efficiently advance lines with useful or experimentally relevant characteristics.

F1 Screening - Related Videos

Research

JoVE EoE - Drosophila melanogaster (fruit fly)

Screening for Genomic Modifications: A Method to Identify CRISPR-Generated Mutants in Drosophila

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2023

This video describes a screening method to identify transgenic Drosophila flies, whose genome was modified using CRISPR-Cas9. CRISPR-Cas9 is a powerful genome-editing tool that revolutionized the way scientists can manipulate an organism's genome. In the example protocol, we will see how to identify CRISPR-generated mutants, in which an insertion of a transactivation sequence replaces the first exon of the branchless (bnl) gene, thus creating a bnl gene-specific driver line, bnl-LexA.

High-throughput Screening for Chemical Modulators of Post-transcriptionally Regulated Genes

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2015

Here we describe a cell-based reporter gene assay as a valuable tool to screen chemical libraries for compounds modulating post-transcriptional control mechanisms exerted through 3’ UTR.

Education

JoVE Science Education - Advanced Biology

Genetic Screens

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2023

Genetic screens are critical tools for defining gene function and understanding gene interactions. Screens typically involve mutating genes and then assessing the affected organisms for phenotypes of interest. The process can be “forward”, where mutations are generated randomly to identify unknown genes responsible for the phenotypes, or it can be “reverse”, where specific genes are targeted for mutation to observe what phenotypes are produced.Here, JoVE reviews various types of genetic...

High-throughput Screening for Small-molecule Modulators of Inward Rectifier Potassium Channels

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Cited by 20 •

2013

Methods for developing and validating a quantitative fluorescence assay for measuring the activity of inward rectifier potassium (Kir) channels for high-throughput compound screening is presented.

Multi-enzyme Screening Using a High-throughput Genetic Enzyme Screening System

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Cited by 7 •

2016

This work presents a method of high-throughput screening using a universal genetic enzyme screening system that can be theoretically applied to over 200 enzymes. Here, the single screening system identifies three different enzymes (lipase, cellulase, and alkaline phosphatase) by simply changing the substrate used (p-nitrophenyl acetate, p-nitrophenyl-β-D-cellobioside, and phenyl phosphate).

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