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相关概念视频

Multi-species Conserved Sequences02:51

Multi-species Conserved Sequences

Next-generation sequencing technologies have created large genomic databases of a variety of animals and plants. Ever since the human genome project was completed, scientists studied the genome of primates, mammals, and other phylogenetically distant living beings. Such large-scale  studies have provided new insights into the evolutionary relationship between organisms.
Although the genome of each species varies greatly from each other, a few sequences are highly conserved. Such conserved DNA...
Types of Selection01:46

Types of Selection

Natural selection influences the frequencies of particular alleles and phenotypes within populations in several different ways. Primarily, natural selection can be directional, stabilizing, or disruptive. Directional selection favors one extreme trait and shifts the population towards that phenotype while selecting against individuals displaying alternate traits. Stabilizing selection favors an intermediate trait with a narrow range of variation. Deviation from the optimal phenotype towards an...
Frequency-dependent Selection01:21

Frequency-dependent Selection

When the fitness of a trait is influenced by how common it is (i.e., its frequency) relative to different traits within a population, this is referred to as frequency-dependent selection. Frequency-dependent selection may occur between species or within a single species. This type of selection can either be positive—with more common phenotypes having higher fitness—or negative, with rarer phenotypes conferring increased fitness.Positive Frequency-Dependent SelectionIn positive...
Synteny and Evolution02:31

Synteny and Evolution

John H. Renwick first coined the term “synteny” in 1971, which refers to the genes present on the same chromosomes, even if they are not genetically linked. The species with common ancestry tend to show conserved syntenic regions. Therefore, the concept of synteny is nowadays used to describe the evolutionary relationship between species.
Around 80 million years ago, the human and mice lineages diverged from the common ancestor. During the course of evolution, the ancestral chromosome underwent...
Gene Evolution - Fast or Slow?02:05

Gene Evolution - Fast or Slow?

The genomes of eukaryotes are punctuated by long stretches of sequence which do not code for proteins or RNAs. Although some of these regions do contain crucial regulatory sequences, the vast majority of this DNA serves no known function. Typically, these regions of the genome are the ones in which the fastest change, in evolutionary terms, is observed, because there is typically little to no selection pressure acting on these regions to preserve their sequences.
In contrast, regions which code...
Gene Evolution - Fast or Slow?02:05

Gene Evolution - Fast or Slow?

The genomes of eukaryotes are punctuated by long stretches of sequence which do not code for proteins or RNAs. Although some of these regions do contain crucial regulatory sequences, the vast majority of this DNA serves no known function. Typically, these regions of the genome are the ones in which the fastest change, in evolutionary terms, is observed, because there is typically little to no selection pressure acting on these regions to preserve their sequences.
In contrast, regions which code...

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相关实验视频

Updated: Jun 4, 2026

In Vitro Directed Evolution of a Restriction Endonuclease with More Stringent Specificity
09:16

In Vitro Directed Evolution of a Restriction Endonuclease with More Stringent Specificity

Published on: March 25, 2020

经典的选择性扫描在最近的人类进化过程中是罕见的.

Ryan D Hernandez1, Joanna L Kelley, Eyal Elyashiv

  • 1Department of Human Genetics, University of Chicago, Chicago, IL 60637, USA.

Science (New York, N.Y.)
|February 19, 2011
PubMed
概括

经典的选择性扫描,进化的一个关键机制,在人类历史上似乎不常见. 对179个人类基因组的分析表明,这种自然选择模式在过去25万年中并没有占主导地位.

科学领域:

  • 人类进化人类进化
  • 人口遗传学 人口遗传学
  • 基因组学就是基因组学.

背景情况:

  • 识别人类的遗传适应通常依赖于检测"经典的选择性扫描".
  • 经典的选择性扫除发生在一个有益的突变在一个人群中迅速固定时.
  • 这种自然选择机制在人类进化中的流行程度仍然不清楚.

研究的目的:

  • 调查人类进化中经典选择性扫描的证据.
  • 确定古典扫描是否是过去25万年中塑造人类适应的一个主要力量.

主要方法:

  • 分析了179个人类基因组的重新测序数据.
  • 检查与基因特征相关的多样性水平,如表子和保存的非编码区域.
  • 围绕人类特异性氨基酸替代与同义替代的多样性低谷的比较.

主要成果:

  • 多样性水平在外显子和保存非编码区域附近下降,正如循环扫描模型所预测的那样.
  • 围绕人类特异性氨基酸替代物的多样性减少不大于围绕同义替代物的多样性减少.
  • 氨基酸和假定调节位点的等位基因没有显著丰富,无法在种群之间产生高差异化.

结论:

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

Following the Dynamics of Structural Variants in Experimentally Evolved Populations

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A Deep-sequencing-assisted, Spontaneous Suppressor Screen in the Fission Yeast Schizosaccharomyces pombe
07:55

A Deep-sequencing-assisted, Spontaneous Suppressor Screen in the Fission Yeast Schizosaccharomyces pombe

Published on: March 7, 2019

相关实验视频

Last Updated: Jun 4, 2026

In Vitro Directed Evolution of a Restriction Endonuclease with More Stringent Specificity
09:16

In Vitro Directed Evolution of a Restriction Endonuclease with More Stringent Specificity

Published on: March 25, 2020

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

A Deep-sequencing-assisted, Spontaneous Suppressor Screen in the Fission Yeast Schizosaccharomyces pombe
07:55

A Deep-sequencing-assisted, Spontaneous Suppressor Screen in the Fission Yeast Schizosaccharomyces pombe

Published on: March 7, 2019

  • 经典的选择性扫描并不是过去25万年人类适应的主要驱动力.
  • 这些发现挑战了古典扫描是人类进化适应的主要模式的假设.