温室
非生物成分
作物
农学
环境科学
营养物
生物
生态学
作者
Melodi Charles,Brianne Edwards,Eshwar Ravishankar,John Calero,Reece Henry,Jeromy James Rech,Carole H. Saravitz,Wei You,Harald Ade,Brendan T. O’Connor,Heike Sederoff
标识
DOI:10.3389/fpls.2023.1087707
摘要
The integration of semi-transparent organic solar cells (ST-OSCs) in greenhouses offers new agrivoltaic opportunities to meet the growing demands for sustainable food production. The tailored absorption/transmission spectra of ST-OSCs impacts the power generated as well as crop growth, development and responses to the biotic and abiotic environments. To characterize crop responses to ST-OSCs, we grew lettuce and tomato, traditional greenhouse crops, under three ST-OSC filters that create different light spectra. Lettuce yield and early tomato development are not negatively affected by the modified light environment. Our genomic analysis reveals that lettuce production exhibits beneficial traits involving nutrient content and nitrogen utilization while select ST-OSCs impact regulation of flowering initiation in tomato. These results suggest that ST-OSCs integrated into greenhouses are not only a promising technology for energy-neutral, sustainable and climate-change protected crop production, but can deliver benefits beyond energy considerations.
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