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  1. Targeted Mutagenesis

    Mutational analysis in forward genetics is an effective strategy in invertebrate model animals and zebrafish in vertebrates. Forward genetic studies...
    Chapter 2024
  2. Mutagenesis

    Reference work entry 2024
  3. CRISPR/Cas9-assisted ssDNA recombineering for site-directed mutagenesis and saturation mutagenesis of plasmid-encoded genes

    Site-directed and saturation mutagenesis are critical DNA methodologies for studying protein structure and function. For plasmid-based gene mutation,...

    Guoyi Zhang, Junyu Wang, ... Guangdong Shang in Biotechnology Letters
    Article 17 March 2023
  4. Random Mutagenesis by PCR

    Random mutagenesis of DNA sequences has the advantage of generating DNA sequences with novel properties, either directly in the case of aptamers or...
    Protocol 2023
  5. Transposable Elements II: Insertional Mutagenesis

    This chapter is a sequel to the topic of transposable elements discussed in Chap. 5 . Here, we will...
    Chapter 2024
  6. Loss-of-Function Mutagenesis for Forward Genetics

    Genes are central players regulating biological processes. A general strategy for studying gene function is to impair gene activity and examine its...
    Chapter 2024
  7. Mutagenesis: Exploring Genetic Diversity of Industrial Crop Plants

    Beyond their use in food production, industrial crops—a distinct class of crops grown primarily for nonhuman consumption—are essential to many facets...
    Saima Mir, Muhammad Faheem, ... Khalil Ahmad Leghari in Industrial Crop Plants
    Chapter 2024
  8. CRIMP: a CRISPR/Cas9 insertional mutagenesis protocol and toolkit

    Site-directed insertion is a powerful approach for generating mutant alleles, but low efficiency and the need for customisation for each target has...

    Lee B. Miles, Vanessa Calcinotto, ... Robert J. Bryson-Richardson in Nature Communications
    Article Open access 12 June 2024
  9. Research Progress of ARTP Mutagenesis Technology Based on Citespace Visualization Analysis

    Atmospheric and room temperature plasma (ARTP) mutagenesis technology has been developed rapidly in recent years because of its simple operation,...

    Shun Gao, Li Li, ... Xuyan Zong in Molecular Biotechnology
    Article 11 July 2024
  10. Mutagenesis and Transgenesis in Plant Breeding

    Mutagenesis gives an avenue of possibilities for develo** improved cultivars in crops with limited or no variability in a specific trait....
    Anurag Tripathi, Sudhir Kumar, ... Pradipta Ranjan Pradhan in Advanced Crop Improvement, Volume 1
    Chapter 2023
  11. A Cas3-base editing tool for targetable in vivo mutagenesis

    The generation of genetic diversity via mutagenesis is routinely used for protein engineering and pathway optimization. Current technologies for...

    Anna Zimmermann, Julian E. Prieto-Vivas, ... Kevin J. Verstrepen in Nature Communications
    Article Open access 09 June 2023
  12. Mutagenesis

    Ester Lázaro in Encyclopedia of Astrobiology
    Reference work entry 2023
  13. Directed mutagenesis in plants through genome editing using guide RNA library

    Plants with genetic diversity have a higher rate of resilience and adaptation to environmental change. Crop species need to diversify genetically if...

    Suman Dutta, Debashis Paul, ... Viswanathan Chinnusamy in The Nucleus
    Article 12 April 2024
  14. Application of Mutagenesis and Genome Editing in Crop Plants

    Mutagenesis and genome editing has emerged as a substitute to traditional plant breeding and transgenics for crop improvement and hence ensure...
    Shajaat Hussain, Tania Sagar, ... Ritu Mahajan in Plant Mutagenesis
    Chapter 2024
  15. Physical Mutagenesis in Cereal Crops

    The use of physical mutagens to induce heritable genetic variation in crop plants dates back to the beginning of the twentieth century. While X-rays...
    Chapter Open access 2024
  16. Alternative Mechanisms of Mutagenesis at mCpG Sites during Replication and Repair

    Abstract

    5-Methyl-2'-deoxycytidine (mC) at CpG sites plays a key role in the epigenetic gene regulation, cell differentiation, and carcinogenesis....

    E. S. Shilkin, D. V. Petrova, ... A. V. Makarova in Molecular Biology
    Article 08 August 2023
  17. Revisiting mutagenesis at non-B DNA motifs in the human genome

    Non-B DNA structures formed by repetitive sequence motifs are known instigators of mutagenesis in experimental systems. Analyzing this phenomenon...

    R. J. McGinty, S. R. Sunyaev in Nature Structural & Molecular Biology
    Article 13 March 2023
  18. In Vitro Site Directed Mutagenesis

    Site-Directed Mutagenesis (SDM) allows for changes in the DNA sequence of plasmids using polymerase chain reaction (PCR). It is a reliable,...
    Michael J. McClellan in DNA Manipulation and Analysis
    Protocol 2023
  19. Induced Mutagenesis for Crop Improvement

    Induced mutagenesis is one of the most powerful strategies for creating genetic diversity and identifying critical regulatory genes for economically...
    Anshika Tyagi, Rekha Joshi, ... Indumathi Padmanaban in TILLING and Eco-TILLING for Crop Improvement
    Chapter 2023
  20. Single-mitosis dissection of acute and chronic DNA mutagenesis and repair

    How chronic mutational processes and punctuated bursts of DNA damage drive evolution of the cancer genome is poorly understood. Here, we demonstrate...

    Paul Adrian Ginno, Helena Borgers, ... Duncan T. Odom in Nature Genetics
    Article Open access 16 April 2024
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