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  1. 27 apr 2020 · Autoluminescent plants engineered to express a bacterial bioluminescence gene cluster in plastids have not been widely adopted because of low light output.

    • Tatiana Mitiouchkina, Alexander S. Mishin, Louisa Gonzalez Somermeyer, Nadezhda M. Markina, Tatiana ...
    • 2020
  2. 8 ago 2020 · Autoluminescent plants that express a bacterial bioluminescence gene cluster 1 have not been widely adopted due to requisite expression in plastids and low light output.

    • Tatiana Mitiouchkina, Alexander S. Mishin, Louisa Gonzalez Somermeyer, Nadezhda M. Markina, Tatiana ...
    • 10.1038/s41587-020-0500-9
    • 2020
    • 2020/08/08
  3. 12 nov 2010 · Abstract. Prospects of obtaining plants glowing in the dark have captivated the imagination of scientists and layman alike. While light emission has been developed into a useful marker of gene expression, bioluminescence in plants remained dependent on externally supplied substrate.

  4. 12 nov 2010 · The first transplastomic plants that emit visible light by themselves are reported. The plants express the bacterial lux operon, which encodes the luciferase and luciferin pathway, and are capable of bioluminescence.

  5. Abstract. Until recently, robust autoluminescence in plants has proven elusive. Two recent pioneering manuscripts (Khakhar et al. and Mitiouchkina et al.) expand our understanding of fungal bioluminescence to provide a new blueprint for engineering autoluminescence in plants. Here we discuss translating a fungal bioluminescence pathway into ...

    • D. Nikki Reuter, C. Neal Stewart, Scott C. Lenaghan
    • 2020
  6. 2 set 2020 · Focusing on more advanced applications, autoluminescent plants could provide a renewable light source for the built environment, decreasing dependency on the electrical grid. Imagine streetlights being replaced with autoluminescent trees, or crops providing both food and light to rural landscapes.

  7. Autoluminescent plants engineered to express a bacterial bioluminescence gene cluster in plastids have not been widely adopted because of low light output. We engineered tobacco plants with a fungal bioluminescence system that converts caffeic acid (present in all plants) into luciferin and report s …