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Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds

Iodine is a crucial microelement necessary for the proper functioning of human and animal organisms. Plant biofortification has been proposed as a method of improving the iodine status of the population. Recent studies in that field have revealed that iodine may also act as a beneficial element for...

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Autores principales: Ledwożyw-Smoleń, Iwona, Pitala, Joanna, Smoleń, Sylwester, Liszka-Skoczylas, Marta, Kováčik, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419995/
https://www.ncbi.nlm.nih.gov/pubmed/37570607
http://dx.doi.org/10.3390/molecules28155638
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author Ledwożyw-Smoleń, Iwona
Pitala, Joanna
Smoleń, Sylwester
Liszka-Skoczylas, Marta
Kováčik, Peter
author_facet Ledwożyw-Smoleń, Iwona
Pitala, Joanna
Smoleń, Sylwester
Liszka-Skoczylas, Marta
Kováčik, Peter
author_sort Ledwożyw-Smoleń, Iwona
collection PubMed
description Iodine is a crucial microelement necessary for the proper functioning of human and animal organisms. Plant biofortification has been proposed as a method of improving the iodine status of the population. Recent studies in that field have revealed that iodine may also act as a beneficial element for higher plants. The aim of the work was to evaluate the efficiency of the uptake and accumulation of iodine in the plants of dandelion grown in a pot experiment. During cultivation, iodine was applied through fertigation in inorganic (KI, KIO(3)) and organic forms (5-iodosalicylic acid, 5-ISA; 3,5-diiodosalicylic acid, 3,5-diISA) at two concentrations (10 and 50 µM). The contents of total iodine and iodosalicylic acids, as well the plant biomass and antioxidant capacity of dandelion leaves and roots, were analyzed. The uptake of inorganic and organic forms by dandelion plants was confirmed with no negative effect on plant growth. The highest efficiency of improving iodine content in dandelion leaves and roots was noted for 50 µM KI. The applicability of iodosalicylates, especially 5-ISA, for plant biofortification purposes was confirmed, particularly as the increase in the iodine content after the application of 5-ISA was higher as compared to that with commonly used KIO(3). The chemical analyses have revealed that iodosalicylates are endogenous compounds of dandelion plants.
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spelling pubmed-104199952023-08-12 Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds Ledwożyw-Smoleń, Iwona Pitala, Joanna Smoleń, Sylwester Liszka-Skoczylas, Marta Kováčik, Peter Molecules Article Iodine is a crucial microelement necessary for the proper functioning of human and animal organisms. Plant biofortification has been proposed as a method of improving the iodine status of the population. Recent studies in that field have revealed that iodine may also act as a beneficial element for higher plants. The aim of the work was to evaluate the efficiency of the uptake and accumulation of iodine in the plants of dandelion grown in a pot experiment. During cultivation, iodine was applied through fertigation in inorganic (KI, KIO(3)) and organic forms (5-iodosalicylic acid, 5-ISA; 3,5-diiodosalicylic acid, 3,5-diISA) at two concentrations (10 and 50 µM). The contents of total iodine and iodosalicylic acids, as well the plant biomass and antioxidant capacity of dandelion leaves and roots, were analyzed. The uptake of inorganic and organic forms by dandelion plants was confirmed with no negative effect on plant growth. The highest efficiency of improving iodine content in dandelion leaves and roots was noted for 50 µM KI. The applicability of iodosalicylates, especially 5-ISA, for plant biofortification purposes was confirmed, particularly as the increase in the iodine content after the application of 5-ISA was higher as compared to that with commonly used KIO(3). The chemical analyses have revealed that iodosalicylates are endogenous compounds of dandelion plants. MDPI 2023-07-25 /pmc/articles/PMC10419995/ /pubmed/37570607 http://dx.doi.org/10.3390/molecules28155638 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
Ledwożyw-Smoleń, Iwona
Pitala, Joanna
Smoleń, Sylwester
Liszka-Skoczylas, Marta
Kováčik, Peter
Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds
title Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds
title_full Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds
title_fullStr Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds
title_full_unstemmed Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds
title_short Iodine Biofortification of Dandelion Plants (Taraxacum officinale F.H. Wiggers Coll.) with the Use of Inorganic and Organic Iodine Compounds
title_sort iodine biofortification of dandelion plants (taraxacum officinale f.h. wiggers coll.) with the use of inorganic and organic iodine compounds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419995/
https://www.ncbi.nlm.nih.gov/pubmed/37570607
http://dx.doi.org/10.3390/molecules28155638
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