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Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana

In terrestrial plants, strigolactones act as multifunctional endo- and exo-signals. On microalgae, the strigolactones determine akin effects: induce symbiosis formation with fungi and bacteria and enhance photosynthesis efficiency and accumulation of biomass. This work aims to synthesize and identif...

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Autores principales: Popa, Daria Gabriela, Georgescu, Florentina, Dumitrascu, Florea, Shova, Sergiu, Constantinescu-Aruxandei, Diana, Draghici, Constantin, Vladulescu, Lucian, Oancea, Florin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609326/
https://www.ncbi.nlm.nih.gov/pubmed/37894539
http://dx.doi.org/10.3390/molecules28207059
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author Popa, Daria Gabriela
Georgescu, Florentina
Dumitrascu, Florea
Shova, Sergiu
Constantinescu-Aruxandei, Diana
Draghici, Constantin
Vladulescu, Lucian
Oancea, Florin
author_facet Popa, Daria Gabriela
Georgescu, Florentina
Dumitrascu, Florea
Shova, Sergiu
Constantinescu-Aruxandei, Diana
Draghici, Constantin
Vladulescu, Lucian
Oancea, Florin
author_sort Popa, Daria Gabriela
collection PubMed
description In terrestrial plants, strigolactones act as multifunctional endo- and exo-signals. On microalgae, the strigolactones determine akin effects: induce symbiosis formation with fungi and bacteria and enhance photosynthesis efficiency and accumulation of biomass. This work aims to synthesize and identify strigolactone mimics that promote photosynthesis and biomass accumulation in microalgae with biotechnological potential. Novel strigolactone mimics easily accessible in significant amounts were prepared and fully characterized. The first two novel compounds contain 3,5-disubstituted aryloxy moieties connected to the bioactive furan-2-one ring. In the second group of compounds, a benzothiazole ring is connected directly through the cyclic nitrogen atom to the bioactive furan-2-one ring. The novel strigolactone mimics were tested on Chlorella sorokiniana NIVA-CHL 176. All tested strigolactones increased the accumulation of chlorophyll b in microalgae biomass. The SL-F3 mimic, 3-(4-methyl-5-oxo-2,5-dihydrofuran-2-yl)-3H-benzothiazol-2-one (7), proved the most efficient. This compound, applied at a concentration of 10(−7) M, determined a significant biomass accumulation, higher by more than 15% compared to untreated control, and improved the quantum yield efficiency of photosystem II. SL-F2 mimic, 5-(3,5-dibromophenoxy)-3-methyl-5H-furan-2-one (4), applied at a concentration of 10(−9) M, improved protein production and slightly stimulated biomass accumulation. Potential utilization of the new strigolactone mimics as microalgae biostimulants is discussed.
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spelling pubmed-106093262023-10-28 Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana Popa, Daria Gabriela Georgescu, Florentina Dumitrascu, Florea Shova, Sergiu Constantinescu-Aruxandei, Diana Draghici, Constantin Vladulescu, Lucian Oancea, Florin Molecules Article In terrestrial plants, strigolactones act as multifunctional endo- and exo-signals. On microalgae, the strigolactones determine akin effects: induce symbiosis formation with fungi and bacteria and enhance photosynthesis efficiency and accumulation of biomass. This work aims to synthesize and identify strigolactone mimics that promote photosynthesis and biomass accumulation in microalgae with biotechnological potential. Novel strigolactone mimics easily accessible in significant amounts were prepared and fully characterized. The first two novel compounds contain 3,5-disubstituted aryloxy moieties connected to the bioactive furan-2-one ring. In the second group of compounds, a benzothiazole ring is connected directly through the cyclic nitrogen atom to the bioactive furan-2-one ring. The novel strigolactone mimics were tested on Chlorella sorokiniana NIVA-CHL 176. All tested strigolactones increased the accumulation of chlorophyll b in microalgae biomass. The SL-F3 mimic, 3-(4-methyl-5-oxo-2,5-dihydrofuran-2-yl)-3H-benzothiazol-2-one (7), proved the most efficient. This compound, applied at a concentration of 10(−7) M, determined a significant biomass accumulation, higher by more than 15% compared to untreated control, and improved the quantum yield efficiency of photosystem II. SL-F2 mimic, 5-(3,5-dibromophenoxy)-3-methyl-5H-furan-2-one (4), applied at a concentration of 10(−9) M, improved protein production and slightly stimulated biomass accumulation. Potential utilization of the new strigolactone mimics as microalgae biostimulants is discussed. MDPI 2023-10-12 /pmc/articles/PMC10609326/ /pubmed/37894539 http://dx.doi.org/10.3390/molecules28207059 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Popa, Daria Gabriela
Georgescu, Florentina
Dumitrascu, Florea
Shova, Sergiu
Constantinescu-Aruxandei, Diana
Draghici, Constantin
Vladulescu, Lucian
Oancea, Florin
Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana
title Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana
title_full Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana
title_fullStr Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana
title_full_unstemmed Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana
title_short Novel Strigolactone Mimics That Modulate Photosynthesis and Biomass Accumulation in Chlorella sorokiniana
title_sort novel strigolactone mimics that modulate photosynthesis and biomass accumulation in chlorella sorokiniana
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609326/
https://www.ncbi.nlm.nih.gov/pubmed/37894539
http://dx.doi.org/10.3390/molecules28207059
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