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相关概念视频

Sanger Sequencing01:57

Sanger Sequencing

751.3K
DNA sequencing is a fundamental technique that is routinely used in the biological sciences. This method can be applied to a range of questions at different scales - from the sequencing of a cloned DNA fragment or the study of a mutation in a gene up to whole-genome sequencing. However, despite the widespread use of sequencing today, it was not until 1977 that Fredrick Sanger and his collaborators developed the chain-termination method to decode DNA sequences. It relies on the separation of a...
751.3K
Next-generation Sequencing03:00

Next-generation Sequencing

86.2K
The first human genome sequencing project cost $2.7 billion and was declared complete in 2003, after 15 years of international cooperation and collaboration between several research teams and funding agencies. Today, with the advent of next-generation sequencing technologies, the cost and time of sequencing a human genome have dropped over 100 fold.
Next-Generation Sequencing Methods
Although all next-generation methods use different technologies, they all share a set of standard features....
86.2K
Proofreading01:31

Proofreading

6.1K
Synthesis of new DNA molecules is carried out by the enzyme DNA polymerase, which adds nucleotides on the daughter strand complementary to the template DNA strand. DNA polymerase has a higher affinity to add the correct base and ensures fidelity during DNA replication. Furthermore,  it exhibits proofreading activity during replication, using an exonuclease domain that cuts off incorrect nucleotides from the nascent DNA strand.
Errors During Replication are Corrected by the DNA Polymerase...
6.1K
Maxam-Gilbert Sequencing01:05

Maxam-Gilbert Sequencing

10.5K
In the same year as the discovery of the Sanger sequencing method, another group of scientists, Allan Maxam and Walter Gilbert, demonstrated their chemical-cleavage method for DNA sequencing. The Maxam-Gilbert method relies on using different chemicals that can cleave the DNA sequence at specific sites, the separation of resulting DNA fragments of variable size using electrophoresis, and deciphering the DNA sequence from the resulting gel bands.
Challenges of the Maxam-Gilbert Method
The...
10.5K

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相关实验视频

Updated: May 13, 2025

Author Spotlight: Getting an A with the 3Cs: Chromosome Conformation Capture for Undergraduates
09:13

Author Spotlight: Getting an A with the 3Cs: Chromosome Conformation Capture for Undergraduates

Published on: May 12, 2023

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一个3D打印的桑格测序活动解决了学生的误解.

Phillip E Brown1, Stefanie H Chen1,2

  • 1Biotechnology Program, North Carolina State University, Raleigh, North Carolina, USA.

Journal of microbiology & biology education
|April 16, 2025
PubMed
概括

本研究介绍了一项3D打印模型活动,以教授桑格测序,增强学生对DNA测序过程和dNTP和ddNTP等核酸功能的理解.

科学领域:

  • 分子生物学分子生物学
  • 遗传学教育 遗传学教育

背景情况:

  • 桑格测序对学生来说是一个复杂的话题.
  • 传统的教学方法可能无法完全吸引学习者.
  • 实践活动可以提高对分子生物学技术的理解.

研究的目的:

  • 开发和评估Sanger测序的触觉学习活动.
  • 澄清dNTPs和ddNTPs在DNA测序中的作用.
  • 为了解决关于桑格序列的常见学生误解.

主要方法:

  • 使用3D打印模型开发了一项实践活动.
  • 活动证明了聚合酶链反应 (PCR) 与桑格测序相比.
  • 评估学生在活动后的学习,享受和误解.

主要成果:

  • 学生们报告了高水平的学习和乐趣.
  • 该活动有效地解决了关于dNTP,ddNTP,原料和碎片大小的误解.
  • 学生建议将数字工具纳入进一步增强.

结论:

  • 3D打印的桑格测序活动是一种有效的教育工具.
关键词:
通过3D打印打印3D打印.桑格尔测序是什么意思学习的通用设计为学习学习.这是一次实践式的动作.误解 误解 误解 误解 误解模型模型模型模型模型模型触觉的 触觉的 触觉的 触觉的

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  • 触觉学习可以提高学生对分子生物学的理解和参与.
  • 该活动成功地针对并纠正DNA测序中的常见误解.