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関連する概念動画

Viral Recombination00:57

Viral Recombination

Cells are sometimes infected by more than one virus at once. When two viruses disassemble to expose their genomes for replication in the same cell, similar regions of their genomes can pair together and exchange sequences in a process called recombination. Alternatively, viruses with segmented genomes can swap segments in a process called reassortment.
Viral Mutations00:36

Viral Mutations

A mutation is a change in the sequence of bases of DNA or RNA in a genome. Some mutations occur during replication of the genome due to errors made by the polymerase enzymes that replicate DNA or RNA. Unlike DNA polymerase, RNA polymerase is prone to errors because it is not capable of “proofreading” its work. Viruses with RNA-based genomes, like HIV, therefore accrue mutations faster than viruses with DNA-based genomes. Because mutation and recombination provide the raw material for adaptive...
Tumor Progression02:07

Tumor Progression

Tumor progression is a phenomenon where the pre-formed tumor acquires successive mutations to become clinically more aggressive and malignant. In the 1950s, Foulds first described the stepwise progression of cancer cells through successive stages.
Colon cancer is one of the best-documented examples of tumor progression. Early mutation in the APC gene in colon cells causes a small growth on the colon wall called a polyp. With time, this polyp grows into a benign, pre-cancerous tumor. Further...
Infection01:20

Infection

When a pathogen enters the body and reproduces, it can cause an infection, damage body cells, and cause illness symptoms that eventually lead to disease. Therefore, its prevention requires breaking the chain of infection.
The chain begins with pathogens: bacteria, viruses, fungi, prions, or parasites such as protozoa helminths. These can be present on the skin as transient or resident flora, or they can be acquired from the environment. Identifying and treating the type of infection and...
Stages of Infection01:26

Stages of Infection

Stages of infection describe what happens to a susceptible host once a pathogen invades the human body. The stages of infection are incubation, prodromal, illness, stage of decline, and convalescence. The incubation stage is the period from exposure to a pathogen until symptoms start. The infected person is unaware of impending illness as the pathogens grow and multiply within the body. The duration may vary depending on the type of infection. The incubation period of measles averages ten to...
Transduction01:16

Transduction

Among the three main modes of HGT—transformation, conjugation, and transduction—transduction is unique in that it is mediated by bacteriophages, or bacterial viruses.Transduction occurs in two ways. Generalized transduction occurs during the lytic cycle of a bacteriophage infection. In this process, bacteriophages infect bacterial cells, replicate within them, and ultimately cause cell lysis, releasing newly assembled virions. Occasionally, random fragments of the bacterial genome are...

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関連する実験動画

Updated: Jul 17, 2026

Isolation of Fidelity Variants of RNA Viruses and Characterization of Virus Mutation Frequency
18:10

Isolation of Fidelity Variants of RNA Viruses and Characterization of Virus Mutation Frequency

Published on: June 16, 2011

ウイルスの適応過程における並列進化の異なる軌跡

H A Wichman1, M R Badgett, L A Scott

  • 1Department of Biological Sciences, University of Idaho, Moscow, ID 83844, USA. hwichman@uidaho.edu

Science (New York, N.Y.)
|July 20, 1999
PubMed
まとめ

実験的な進化は,バクテリオファージの適応の間に多くの遺伝的変化を明らかにしました. 多くの変化が有益で,一部は系統間で共有されているが,その順序は様々であり,多様な進化の経路を示している.

科学分野:

  • 進化生物学の進化生物学について
  • 分子進化は分子進化である.
  • 遺伝学 遺伝学とは

背景:

  • 適応の分子基盤を理解することは,進化生物学において極めて重要です.
  • 適応のダイナミックなプロセスは,限られた詳細で研究されています.

研究 の 目的:

  • バクテリオファージの実験的進化の過程におけるゲノム変化と適応軌道を調査する.
  • 平行進化の範囲を決定し,有益な突然変異を特定する.

主な方法:

  • 強い選択の下で2つの細菌菌株の実験的進化.
  • ヌクレオチドの変化を特定するための全ゲノム配列解析.
  • 適応的有意性のためのアミノ酸置換の分析.

主要な成果:

  • ゲノム全体にわたる数十以上のニュクレオチド変化が,バクテリオファージの複製体ごとに発生しました.
  • アミノ酸置換の約96%が適応的であった.
  • 観察された遺伝子の変化の半分は,進化した2つの系統間で共有されました.
  • 遺伝子の変化の順序は,複製体間で著しく異なっていた.
  • 並列置換は,一貫して最大の有益な効果や共通の適応経路と相関していない.

さらに関連する動画

A Mouse Model for the Transition of Streptococcus pneumoniae from Colonizer to Pathogen upon Viral Co-Infection Recapitulates Age-Exacerbated Illness
12:21

A Mouse Model for the Transition of Streptococcus pneumoniae from Colonizer to Pathogen upon Viral Co-Infection Recapitulates Age-Exacerbated Illness

Published on: September 28, 2022

Following the Dynamics of Structural Variants in Experimentally Evolved Populations
04:52

Following the Dynamics of Structural Variants in Experimentally Evolved Populations

Published on: February 3, 2023

関連する実験動画

Last Updated: Jul 17, 2026

Isolation of Fidelity Variants of RNA Viruses and Characterization of Virus Mutation Frequency
18:10

Isolation of Fidelity Variants of RNA Viruses and Characterization of Virus Mutation Frequency

Published on: June 16, 2011

A Mouse Model for the Transition of Streptococcus pneumoniae from Colonizer to Pathogen upon Viral Co-Infection Recapitulates Age-Exacerbated Illness
12:21

A Mouse Model for the Transition of Streptococcus pneumoniae from Colonizer to Pathogen upon Viral Co-Infection Recapitulates Age-Exacerbated Illness

Published on: September 28, 2022

Following the Dynamics of Structural Variants in Experimentally Evolved Populations
04:52

Following the Dynamics of Structural Variants in Experimentally Evolved Populations

Published on: February 3, 2023

結論:

  • 実験的な進化は,適応の複雑な分子機構の洞察を提供します.
  • バクテリオファージの適応には,多数の遺伝的変化が伴うが,その多くは適応性である.
  • 共通の変異にもかかわらず,適応軌道は異なる可能性があり,進化のストキャスティックな性質を強調しています.