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相关概念视频

Mutations in Microorganisms01:18

Mutations in Microorganisms

32
Mutations are heritable changes in an organism’s genome involving alterations in the base sequence of DNA or RNA. These changes can influence cellular processes and phenotypic traits, potentially transforming the unaltered wild type into a mutant form. Such changes, termed forward mutations, are pivotal in shaping the genetic diversity of organisms.RNA viruses exhibit the highest mutation rates due to the absence of robust proofreading mechanisms during genome replication. In contrast,...
32
Mutations01:39

Mutations

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Overview
83.5K
In-vitro Mutagenesis01:16

In-vitro Mutagenesis

14.0K
To learn more about the function of a gene, researchers can observe what happens when the gene is inactivated or “knocked out,” by creating genetically engineered knockout animals. Knockout mice have been particularly useful as models for human diseases such as cancer, Parkinson’s disease, and diabetes.
14.0K
Mismatch Repair01:20

Mismatch Repair

4.9K
Organisms are capable of detecting and fixing nucleotide mismatches that occur during DNA replication. This sophisticated process requires identifying the new strand and replacing the erroneous bases with correct nucleotides. Mismatch repair is coordinated by many proteins in both prokaryotes and eukaryotes.
The Mutator Protein Family Plays a Key Role in DNA Mismatch Repair
The human genome has more than 3 billion base pairs of DNA per cell. Prior to cell division, that vast amount of genetic...
4.9K
Genome Copying Errors02:46

Genome Copying Errors

4.3K
DNA replication is a well-evolved process that copies millions of base pairs with high fidelity during each cell division. Occasionally a wrong base or a long stretch of wrong bases may get added to the daughter strands. If the errors are left unchecked, cells might accumulate several mutations that might endanger their  survival. Therefore, the copying errors are checked and repaired at three levels.
4.3K
Spontaneous and Induced Mutations01:30

Spontaneous and Induced Mutations

39
Spontaneous mutations arise infrequently during DNA replication due to errors in the process. A key factor behind these errors is tautomeric shifts in nitrogenous bases, where bases transition from keto to enol forms or amino to imino forms. This shift can alter base-pairing rules, leading to mutations. Additionally, reactive oxygen species (ROS) arising from aerobic metabolism can damage DNA, resulting in depurination (loss of a purine base) or depyrimidination (loss of a pyrimidine base).
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相关实验视频

Updated: Jul 16, 2025

Transgenic Rodent Assay for Quantifying Male Germ Cell Mutant Frequency
14:45

Transgenic Rodent Assay for Quantifying Male Germ Cell Mutant Frequency

Published on: August 6, 2014

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[关于脊椎动物生殖突变的一切]

Bertrand Jordan1

  • 1Biologiste, généticien et immunologiste, Président d'Aprogène (Association pour la promotion de la Génomique), 13007 Marseille, France.

Medecine sciences : M/S
|September 11, 2023
PubMed
概括

生殖系突变是进化的关键. 一项大型研究对68种脊椎动物进行了测序,揭示了关于突变过程及其进化影响的关键细节.

科学领域:

  • 进化生物学是进化的生物学.
  • 遗传学 遗传学 是一个
  • 基因组学就是基因组学.

背景情况:

  • 生殖系突变是进化变化的基本驱动力.
  • 精确量化生殖系突变对于理解进化过程至关重要.
  • 最近DNA测序的进步使得对突变率的大规模研究成为可能.

研究的目的:

  • 量化各种物种的生殖基因突变.
  • 确定脊椎动物突变过程的关键特征和模式.
  • 提供对生殖系突变的进化意义的见解.

主要方法:

  • 利用了父亲/母亲/孩子三人组的全基因组测序.
  • 在68种脊椎动物中进行了大规模的比较研究.
  • 应用先进的生物信息学来分析突变数据.

主要成果:

  • 建立了脊椎动物生殖基因突变的综合数据集.
  • 确定了突变过程的重要特征和特征.
  • 为未来对突变率和进化研究提供了基础.

结论:

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  • 细菌系突变量化在大规模上是可行的和有信息的.
  • 该研究提供了关于脊椎动物进化过程中的突变过程的关键数据.
  • 了解突变模式对于进化和遗传研究至关重要.