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相关概念视频

Overview of Transposition and Recombination02:13

Overview of Transposition and Recombination

Transposons make up a significant part of genomes of various organisms. Therefore, it is believed that transposition played a major evolutionary role in speciation by changing genome sizes and modifying gene expression patterns. For example, in bacteria, transposition can lead to conferring antibiotic resistance. Movement of transposable elements within the genetic pool of pathogenic bacteria can aid in transfer of antibiotic-resistant genetic elements. In eukaryotes, transposons can carry out...
DNA-only Transposons02:57

DNA-only Transposons

DNA-only transposons are called autonomous transposons since they code for the enzyme transposase that is required for the transposition mechanism. Insertion of transposons can alter gene functions in multiple ways. They can mutate the gene, alter gene expression by introducing a novel promoter or insulator sequence, introduce new splice sites, and change the mRNA transcripts produced, or remodel chromatin structure.
The donor site from where the transposon is excised is either degraded or...
Retroviruses02:33

Retroviruses

Retroviruses and retrotransposons both insert copies of their genetic elements into the genome of the host cell. Thus, the viral genes are passed on when the host genome is replicated or translated. A typical retroviral DNA sequence contains 3-4 genes that encode the different proteins required for its structural assembly and function as a molecular parasite. This DNA is transcribed into a single mRNA, which is very similar in structure to conventional mRNAs, i.e., it is capped at the 5’...
LTR Retrotransposons03:08

LTR Retrotransposons

LTR retrotransposons are class I transposable elements with long terminal repeats flanking an internal coding region. These elements are less abundant in mammals compared to other class I transposable elements. About 8 percent of human genomic DNA comprises LTR retrotransposons. Some of the common examples of LTR retrotransposons are Ty elements in yeast and Copia elements in Drosophila.
The internal coding region of LTR retrotransposons and their mechanism of transposition closely resembles a...
Non-LTR Retrotransposons03:18

Non-LTR Retrotransposons

As the name suggests, non-LTR retrotransposons lack the long terminal repeats characteristic of the LTR retrotransposons. Additionally, both LTR and non-LTR retrotransposons use distinct mechanisms of mobilization. Non-LTR retrotransposons are further divided into two classes - Long interspersed nuclear elements (LINEs) and short interspersed nuclear elements (SINEs), both of which occur abundantly in most mammals, including humans. Some of the active non-LTR retrotransposons in humans are L1...
Transposons01:24

Transposons

Transposons, or "jumping genes," are small mobile genetic elements (MGEs) that range from 700 to 40,000 base pairs in length. They are found in all organisms and can move within the same chromosome or transfer to different chromosomes. In some cases, transposons can also jump between different host DNA molecules, such as plasmids or viruses, contributing to genetic variability.Barbara McClintock first discovered these mobile genetic elements in the 1940s while studying maize genetics, and she...

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相关实验视频

Updated: Jul 11, 2026

Analysis of LINE-1 Retrotransposition at the Single Nucleus Level
11:52

Analysis of LINE-1 Retrotransposition at the Single Nucleus Level

Published on: April 23, 2016

具有反转终端重复的真核生物可移植遗传元素.

S Potter, M Truett, M Phillips

    Cell
    |July 1, 1980
    PubMed
    概括

    研究人员在Drosophila中发现了新的可移植的遗传元素. 这些DNA序列,以反向重复为特征,可以在基因组内移动,与以前已知的元素不同.

    科学领域:

    • * 分子生物学 * 分子生物学
    • * 遗传学 遗传学是一门学科
    • * 基因组学 是一个学科.

    背景情况:

    • *可移植遗传元素 (TE) 是可改变基因组结构和功能的移动DNA序列.
    • *以前的研究已经确定了多种TEs在Drosophila,如拷贝,但他们的多样性和机制仍在探索中.

    研究的目的:

    • * 为了研究Drosophila基因组中含有反转重复的DNA序列的转移.
    • * 描述新型可移植的遗传元素,并将其与已知的TEs进行比较.

    主要方法:

    • * 隔离和分析来自D. melanogaster的五个Bam HIDNA段与反向重复.
    • *电子显微镜和限制映射用于结构分析.
    • * 南方斑点实验使用单复制侧面序列来研究相关菌株中的DNA排列.

    主要成果:

    • *三个分离的序列被证实是可移植的遗传元素.
    • *通过净化带有反转重复序列和没有反转重复序列的DNA段来证明移动性.
    • * 这些元素具有反转的终端重复,并且与拷贝相比具有更异质的结构.

    结论:

    更多相关视频

    Determination of the Optimal Chromosomal Location(s) for a DNA Element in Escherichia coli Using a Novel Transposon-mediated Approach
    11:12

    Determination of the Optimal Chromosomal Location(s) for a DNA Element in Escherichia coli Using a Novel Transposon-mediated Approach

    Published on: September 11, 2017

    Real-Time Quantification of the Effects of IS200/IS605 Family-Associated TnpB on Transposon Activity
    04:04

    Real-Time Quantification of the Effects of IS200/IS605 Family-Associated TnpB on Transposon Activity

    Published on: January 20, 2023

    相关实验视频

    Last Updated: Jul 11, 2026

    Analysis of LINE-1 Retrotransposition at the Single Nucleus Level
    11:52

    Analysis of LINE-1 Retrotransposition at the Single Nucleus Level

    Published on: April 23, 2016

    Determination of the Optimal Chromosomal Location(s) for a DNA Element in Escherichia coli Using a Novel Transposon-mediated Approach
    11:12

    Determination of the Optimal Chromosomal Location(s) for a DNA Element in Escherichia coli Using a Novel Transposon-mediated Approach

    Published on: September 11, 2017

    Real-Time Quantification of the Effects of IS200/IS605 Family-Associated TnpB on Transposon Activity
    04:04

    Real-Time Quantification of the Effects of IS200/IS605 Family-Associated TnpB on Transposon Activity

    Published on: January 20, 2023

  • * 该研究确定并证实了Drosophila中新型可移植遗传元素的可移动性.
  • * 这些新发现的元素由于它们的反向终端重复和异质结构,与之前描述的特质元素有所区别.