Artificial Genome

An artificial genome is a laboratory-designed or chemically assembled DNA sequence that contains genetic information organized to support a defined biological function. Researchers create it by designing genome sequences computationally, synthesizing DNA fragments, and joining them into larger chromosomes that can be introduced into a suitable cell, where cellular machinery reads the genes and produces their encoded products. In biology, artificial genomes help test gene function, investigate how genomes support cell survival, and build organisms with selected traits or metabolic capabilities. This work advances synthetic biology, genome engineering, biotechnology, and the study of life’s fundamental organization.

Artificial Genome - Related Videos

Research

JoVE Journal - Immunology and Infection
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Bacterial Artificial Chromosomes: A Functional Genomics Tool for the Study of Positive-strand RNA Viruses

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Cited by 5 •

2015

Here, a protocol is presented for creating an infectious bacterial artificial chromosome containing a full-length cDNA of the positive-strand genomic RNA of Japanese encephalitis virus. This protocol can be used to construct a functional cDNA of other positive-strand RNA viruses, making it a powerful genomic tool for studying virus biology.

Research

JoVE Journal - Immunology and Infection

Isolation and Genome Analysis of Single Virions using 'Single Virus Genomics'

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Cited by 2 •

2013

Single Virus Genomics (SVG) is a method to isolate and amplify the genomes of single virons. Viral suspensions of a mixed assemblage are sorted using flow cytometry onto a microscope slide with discrete wells containing agarose, thereby capturing the virion and reducing genome shearing during downstream processing. Whole genome amplification is achieved using multiple displacement amplification (MDA) resulting in genomic material that is suitable for sequencing.

Education

JoVE Lab Manual - Biology

Artificial Selection - Concepts

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2019

Natural Selection and Adaptive Evolution In natural settings, adaptive evolution takes place by natural selection, a process in which differences in traits lead to differences in survival and reproductive success between individuals. This happens because individuals with certain phenotypes have a higher probability of survival and/or produce more surviving offspring than individuals with other phenotypes. A classic example of this was demonstrated by Rosemary and Peter Grant studying the...

Artificial Selection - Student Protocol

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2019

Observing Artificial Selection in Plants ExpandTo begin the experiment, collect five two-week old grown plants from the generation one population that appear healthy. Note: Plants should appear green, not wilted, and not have damaged leaves. Experimental Hypothesis: The experimental hypothesis for this lab might be that the number of lead trichomes varies naturally, but the average number will increase over generations if only plants with the highest number of trichomes are interbred or...

Genome Editing

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2023

A well-established technique for modifying specific sequences in the genome is gene targeting by homologous recombination, but this method can be laborious and only works in certain organisms. Recent advances have led to the development of “genome editing”, which works by inducing double-strand breaks in DNA using engineered nuclease enzymes guided to target genomic sites by either proteins or RNAs that recognize specific sequences. When a cell attempts to repair this damage, mutations can be...

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