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Related Experiment Videos

Next generation breeding.

Delfina Barabaschi1, Alessandro Tondelli1, Francesca Desiderio1

  • 1Consiglio per la ricerca in agricoltura e l'analisi dell'economia agraria, Genomics Research Centre, Via San Protaso 302, 29017 Fiorenzuola d'Arda, Italy.

Plant Science : an International Journal of Experimental Plant Biology
|November 15, 2015
PubMed
Summary

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The genomic revolution, driven by next-generation sequencing, enhances crop improvement through advanced breeding techniques and genome editing. This enables precise genetic modifications for desired crop traits.

Area of Science:

  • Genomics
  • Plant Science
  • Agricultural Biotechnology

Background:

  • The genomic revolution has significantly advanced our understanding of organismal genetics.
  • Crop genome sequencing has transformed interpretations of genome organization and evolution.
  • Re-sequencing facilitates extensive marker identification and germplasm diversity analysis.

Purpose of the Study:

  • To review how next-generation sequencing (NGS) data can be leveraged for crop improvement.
  • To illustrate the development of tailored genomic tools for breeders' specific needs.
  • To highlight the revolutionary potential of genomic information in agriculture.

Main Methods:

  • Utilizing re-sequencing for unlimited marker identification and allele mining.
  • Employing high-throughput marker technologies with advanced phenotyping.
Keywords:
Allele diversityGenome editingGenomic selectionMolecular markersNext generation sequencingPlant breeding

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  • Leveraging genome sequencing data for genome editing applications.
  • Main Results:

    • Identification of numerous genetic markers and analysis of germplasm diversity.
    • Discovery of marker-trait associations supporting genomic-assisted breeding.
    • Enabling site-specific mutagenesis for targeted gene modification.

    Conclusions:

    • NGS-derived genomic information is crucial for modern crop breeding.
    • Genomic tools can be customized to meet diverse breeders' requirements.
    • The integration of genomics promises to revolutionize crop improvement strategies.