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  1. Jan 6, 2022 · This review aims to highlight the current genetic engineering tools that are being employed in potato improvement, with special emphasis on varieties that have reached the market. It examines the traits that have been modified in potato, the methods used, and the final outcomes.

    • Figure 3

      Potato (Solanum tuberosum L.) is the third most important...

    • Table 2

      Summary of the most outstanding genetically modified potato...

  2. Jan 10, 2022 · Genetically engineered (GE) potato plants, obtained by classical genetic transformation strategies or genome editing tools, with increased resistance to insects, bacteria, fungi, viruses, herbicides, abiotic factors, and/or improved nutritional and post-harvest quality were developed.

    • 10.3389/fpls.2021.768233
    • 2021
    • Front Plant Sci. 2021; 12: 768233.
  3. Aug 23, 2021 · They devised a clever combination of plant genetic resources, traditional genetics, modern genome sequencing to put the design of potato hybrids on a rational basis, fast-tracking it at the...

    • Martin Mascher, Murukarthick Jayakodi, Nils Stein, Nils Stein
    • 2021
  4. May 26, 2020 · Biotech potatoes: A case study of how genetic engineering can improve our food supply - Genetic Literacy Project. Craig Richael, David Douches, Dennis Halterman | Spudman | May 26, 2020.

  5. A genetically modified potato is a potato that has had its genes modified, using genetic engineering. Goals of modification include introducing pest resistance , tweaking the amounts of certain chemicals produced by the plant, and to prevent browning or bruising of the tubers.

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  7. Jan 1, 2023 · Several methods in potato genetic engineering exist to transform potato nuclear genome as well as plastids, and these methods include the use of Agrobacterium-mediated transformation, microinjection, particle bombardment, and polyethylene glycol (PEG) protoplast transfection.

  8. Apr 9, 2021 · John E. Bradshaw. 826 Accesses. Abstract. Gene editing and genetic transformation are alternatives to sexual hybridization for potato improvement. Engineered nucleases catalyse a double-stranded DNA break at a specific location in the genome so that desired DNA modifications can occur at the break site rather than at random.

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