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Plant Growth in LED-Sourced Biophilic Environments Is Improved by the Biochar Amendment of Low-Fertility Soil, the Reflection of Low-Intensity Light, and a Continuous Photoperiod. | LitMetric

AI Article Synopsis

  • Introducing plants into biophilic indoor environments is key for enhancing human health and performance, but they often struggle under LED-sourced CoeLux lighting due to poor growth conditions.
  • Research explored various strategies, including different growth media and fertilizers, to improve plant health under these unique lighting systems.
  • Results showed that using biochar in soil, along with mirror reflections and continuous light exposure, significantly improved plant biomass, leaf size, and overall growth metrics.

Article Abstract

Introducing plants in the design of biophilic indoor environments is fundamental for improving human health, well-being, and performance. Previous studies showed that the phenotype of the model plant grown under LED-sourced CoeLux lighting systems was characterized by low biomass production rates, a small leaf area, and a low lamina-to-petiole length ratio, suggesting the onset of a strong shade avoidance syndrome. Therefore, it is essential to identify new strategies to improve plant growth under these peculiar light conditions. In the present work, we investigated the effects of two growing media (i.e., low-fertility soil and soil-less substrate), solid and liquid fertilizers, manure, biochar, perlite, mirror reflection of light, and a 24 h photoperiod on plants growing under CoeLux lighting systems at a light intensity of 30 μmol ms. We found that the biochar soil amendment to low-fertility soil increases both the above-ground plant biomass and leaf area. Furthermore, the application of a mirror behind the plants and a continuous photoperiod improves not only the biomass and the leaf area but also the lamina-to-petiole length ratio. The combination of different beneficial treatments can further boost plant growth in the low-intensity light environment characterizing the CoeLux biophilic lighting systems.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10535895PMC
http://dx.doi.org/10.3390/plants12183319DOI Listing

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