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Mitiouchkina, T. Y.

Publications and source records attributed to Mitiouchkina, T. Y..

2 recordsLinked to original sources

Metabolically robust autoluminescent reporters

Self-sustained luminescence can be engineered in non-luminous organisms by integrating luciferin biosynthesis pathways with the hosts metabolism. When conditionally expressed, such pathways enable non-invasive monitoring of virtually any transcriptional event, providing a wide dynamic range and high resolution. However, because light emission depends on substrate availability within the cell, autoluminescence reporters are inherently non-quantitative: signal intensity reflects both gene expression and cellular metabolism. Here, we present an approach that disentangles the contributions of gene expression and metabolism, rendering autoluminescence signals robust against metabolic perturbations. By co-expressing an engineered reference luciferase variant that uses the same substrate but emits light at a different wavelength, and monitoring the resulting colour ratio, we dramatically reduce signal variation, enabling quantitative physiological imaging amid changing metabolic activity. Our strategy is applicable across known autoluminescence pathways from bacteria and fungi.

plant biology↗

Non-invasive imaging of salicylic and jasmonic acid activities in planta

Jasmonic and salicylic acids are the major hormones involved in plant response to pests and pathogens. Here, we engineered autoluminescent plants that report activity of these hormones with up to 53-fold contrast. Using consumer-grade cameras, we imaged reporter Arabidopsis thaliana and Nicotiana benthamiana plants throughout normal development, and in response to attacks of pests and pathogens.

plant biology↗