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Improving abiotic stress tolerance of forage grasses – prospects of using genome editing

  • Ferenz Sustek-Sánchez
  • , Odd Arne Rognli
  • , Nils Rostoks
  • , Merike Sõmera
  • , Kristina Jaškūnė
  • , Mallikarjuna Rao Kovi
  • , Gražina Statkevičiūtė
  • , Cecilia Sarmiento*
  • *Šī darba korespondējošais autors
    • Tallinn University of Technology
    • Norwegian University of Life Sciences
    • Lithuanian Research Centre for Agriculture and Forestry

    Zinātniskās darbības rezultāts: Devums žurnālamPārskata rakstskoleģiāli recenzēts

    29 Atsauces (Scopus)

    Kopsavilkums

    Due to an increase in the consumption of food, feed, and fuel and to meet global food security needs for the rapidly growing human population, there is a necessity to obtain high-yielding crops that can adapt to future climate changes. Currently, the main feed source used for ruminant livestock production is forage grasses. In temperate climate zones, perennial grasses grown for feed are widely distributed and tend to suffer under unfavorable environmental conditions. Genome editing has been shown to be an effective tool for the development of abiotic stress-resistant plants. The highly versatile CRISPR-Cas system enables increasingly complex modifications in genomes while maintaining precision and low off-target frequency mutations. In this review, we provide an overview of forage grass species that have been subjected to genome editing. We offer a perspective view on the generation of plants resilient to abiotic stresses. Due to the broad factors contributing to these stresses the review focuses on drought, salt, heat, and cold stresses. The application of new genomic techniques (e.g., CRISPR-Cas) allows addressing several challenges caused by climate change and abiotic stresses for developing forage grass cultivars with improved adaptation to the future climatic conditions. Genome editing will contribute towards developing safe and sustainable food systems.

    OriģinālvalodaAngļu
    Raksta numurs1127532
    Lapas (no-līdz)01-18
    ŽurnālsFrontiers in Plant Science
    Sējums14
    DOIs
    Publikācijas statussPublicēts - 7 febr. 2023

    ANO IAM

    Šis izpildes rezultāts palīdz sasniegt šādus ANO ilgtspējīgas attīstības mērķus (IAM)

    1. 2 IAM — Bada Izskaušana
      2 IAM — Bada Izskaušana
    2. 13. IAM — Klimatrīcība
      13. IAM — Klimatrīcība

    OECD Zinātnes nozare

    • 1.6 Bioloģija

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