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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...
Transgenic Plants02:50

Transgenic Plants

Recombinant DNA technology called transgenesis is often used to add a foreign gene or remove a detrimental gene from an organism. Such genetically modified organisms are called transgenic organisms.
The first-ever transgenic plant was a tobacco plant developed in 1983 that showed resistance against the tobacco mosaic virus. Since then, many transgenic plants have been developed and commercialized for improving the agricultural, ornamental, and horticultural value of a crop plant. Transgenic...
Repressible Operon: trp Operon01:21

Repressible Operon: trp Operon

The trp operon in Escherichia coli exemplifies a repressible operon. It regulates the synthesis of tryptophan through repressor-mediated transcriptional control and attenuation. This dual regulatory mechanism ensures tryptophan biosynthesis occurs only when needed, conserving cellular resources.Structure of the trp OperonThe trp operon consists of five structural genes (trpE, trpD, trpC, trpB, and trpA) that encode enzymes for tryptophan biosynthesis. These genes are transcribed as a single...
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...
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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相关实验视频

Updated: Jul 27, 2026

Creation of a Dense Transposon Insertion Library Using Bacterial Conjugation in Enterobacterial Strains Such As Escherichia Coli or Shigella flexneri
11:36

Creation of a Dense Transposon Insertion Library Using Bacterial Conjugation in Enterobacterial Strains Such As Escherichia Coli or Shigella flexneri

Published on: September 23, 2017

一个转体子,Tn732,编码为抗 gentamicin/tobramycin 的耐药性.

M E Nugent, D H Bone, N Datta

    Nature
    |November 22, 1979
    PubMed
    概括

    研究人员发现了一个转子子,一个"跳跃基因",对抗生素 gentamicin 和 tobramycin 具有耐药性. 这种编码ANT(2") 酶的基因在IncFII等离子体上被发现,为抗生素耐药性机制提供了新的见解.

    科学领域:

    • 微生物学 微生物学
    • 分子生物学分子生物学
    • 遗传学 是一个遗传学.

    背景情况:

    • 亨塔米辛和托布拉米辛是治疗医院感染的关键抗生素.
    • 越来越多的抗生素使用导致了细菌耐药性的出现,这种耐药性往往是由等离子体介导的.
    • 现有的抗药性机制涉及酶,使这些抗生素失活.

    研究的目的:

    • 为了研究 gentamicin 和 tobramycin 耐药性的遗传基础.
    • 识别与抗生素耐药性相关的新型移动遗传元素.
    • 描述特定的抗性基因及其遗传背景.

    主要方法:

    • 质粒DNA分析分析
    • 基因测序是指基因的测序.
    • 移动遗传元素 (转子) 的识别.

    主要成果:

    • 识别编码ANTT的转子 ((2") 基化酶的转子.
    • 转体子位于属于不兼容性组FII (IncFII) 的等离子体上.
    • 这一发现表明,一种特定的等离子体组的基因获取是一个罕见的事件.

    结论:

    更多相关视频

    Generating Transposon Insertion Libraries in Gram-Negative Bacteria for High-Throughput Sequencing
    08:19

    Generating Transposon Insertion Libraries in Gram-Negative Bacteria for High-Throughput Sequencing

    Published on: July 7, 2020

    Characterizing Multidrug Efflux Systems in Acinetobacter baumannii Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System
    05:06

    Characterizing Multidrug Efflux Systems in Acinetobacter baumannii Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System

    Published on: January 5, 2024

    相关实验视频

    Last Updated: Jul 27, 2026

    Creation of a Dense Transposon Insertion Library Using Bacterial Conjugation in Enterobacterial Strains Such As Escherichia Coli or Shigella flexneri
    11:36

    Creation of a Dense Transposon Insertion Library Using Bacterial Conjugation in Enterobacterial Strains Such As Escherichia Coli or Shigella flexneri

    Published on: September 23, 2017

    Generating Transposon Insertion Libraries in Gram-Negative Bacteria for High-Throughput Sequencing
    08:19

    Generating Transposon Insertion Libraries in Gram-Negative Bacteria for High-Throughput Sequencing

    Published on: July 7, 2020

    Characterizing Multidrug Efflux Systems in Acinetobacter baumannii Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System
    05:06

    Characterizing Multidrug Efflux Systems in Acinetobacter baumannii Using an Efflux-Deficient Bacterial Strain and a Single-Copy Gene Expression System

    Published on: January 5, 2024

    • 已经确定了一种携带 gentamicin / tobramycin 耐药性的转体子.
    • 这种转体子在IncFII等离子体上的存在为抵抗基因流动性提供了新的理解.
    • 这一发现有助于了解在医院环境中抗生素耐药性的演变和传播.