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Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development

The present study is aimed at disclosing metabolic profile alterations in the leaves of the Medicago lupulina MlS-1 line that result from high-efficiency arbuscular mycorrhiza (AM) symbiosis formed with Rhizophagus irregularis under condition of a low phosphorus level in the substrate. A highly effe...

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Autores principales: Yurkov, Andrey P., Puzanskiy, Roman K., Avdeeva, Galina S., Jacobi, Lidija M., Gorbunova, Anastasia O., Kryukov, Alexey A., Kozhemyakov, Andrei P., Laktionov, Yuri V., Kosulnikov, Yuri V., Romanyuk, Daria A., Yemelyanov, Vladislav V., Shavarda, Alexey L., Kirpichnikova, Anastasia A., Smolikova, Galina N., Shishova, Maria F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8617643/
https://www.ncbi.nlm.nih.gov/pubmed/34834870
http://dx.doi.org/10.3390/plants10112506
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author Yurkov, Andrey P.
Puzanskiy, Roman K.
Avdeeva, Galina S.
Jacobi, Lidija M.
Gorbunova, Anastasia O.
Kryukov, Alexey A.
Kozhemyakov, Andrei P.
Laktionov, Yuri V.
Kosulnikov, Yuri V.
Romanyuk, Daria A.
Yemelyanov, Vladislav V.
Shavarda, Alexey L.
Kirpichnikova, Anastasia A.
Smolikova, Galina N.
Shishova, Maria F.
author_facet Yurkov, Andrey P.
Puzanskiy, Roman K.
Avdeeva, Galina S.
Jacobi, Lidija M.
Gorbunova, Anastasia O.
Kryukov, Alexey A.
Kozhemyakov, Andrei P.
Laktionov, Yuri V.
Kosulnikov, Yuri V.
Romanyuk, Daria A.
Yemelyanov, Vladislav V.
Shavarda, Alexey L.
Kirpichnikova, Anastasia A.
Smolikova, Galina N.
Shishova, Maria F.
author_sort Yurkov, Andrey P.
collection PubMed
description The present study is aimed at disclosing metabolic profile alterations in the leaves of the Medicago lupulina MlS-1 line that result from high-efficiency arbuscular mycorrhiza (AM) symbiosis formed with Rhizophagus irregularis under condition of a low phosphorus level in the substrate. A highly effective AM symbiosis was established in the period from the stooling to the shoot branching initiation stage (the efficiency in stem height exceeded 200%). Mycorrhization led to a more intensive accumulation of phosphates (glycerophosphoglycerol and inorganic phosphate) in M. lupulina leaves. Metabolic spectra were detected with GS-MS analysis. The application of complex mathematical analyses made it possible to identify the clustering of various groups of 320 metabolites and thus demonstrate the central importance of the carbohydrate and carboxylate-amino acid clusters. The results obtained indicate a delay in the metabolic development of mycorrhized plants. Thus, AM not only accelerates the transition between plant developmental stages but delays biochemical “maturation” mainly in the form of a lag of sugar accumulation in comparison with non-mycorrhized plants. Several methods of statistical modeling proved that, at least with respect to determining the metabolic status of host-plant leaves, stages of phenological development have priority over calendar age.
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spelling pubmed-86176432021-11-27 Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development Yurkov, Andrey P. Puzanskiy, Roman K. Avdeeva, Galina S. Jacobi, Lidija M. Gorbunova, Anastasia O. Kryukov, Alexey A. Kozhemyakov, Andrei P. Laktionov, Yuri V. Kosulnikov, Yuri V. Romanyuk, Daria A. Yemelyanov, Vladislav V. Shavarda, Alexey L. Kirpichnikova, Anastasia A. Smolikova, Galina N. Shishova, Maria F. Plants (Basel) Article The present study is aimed at disclosing metabolic profile alterations in the leaves of the Medicago lupulina MlS-1 line that result from high-efficiency arbuscular mycorrhiza (AM) symbiosis formed with Rhizophagus irregularis under condition of a low phosphorus level in the substrate. A highly effective AM symbiosis was established in the period from the stooling to the shoot branching initiation stage (the efficiency in stem height exceeded 200%). Mycorrhization led to a more intensive accumulation of phosphates (glycerophosphoglycerol and inorganic phosphate) in M. lupulina leaves. Metabolic spectra were detected with GS-MS analysis. The application of complex mathematical analyses made it possible to identify the clustering of various groups of 320 metabolites and thus demonstrate the central importance of the carbohydrate and carboxylate-amino acid clusters. The results obtained indicate a delay in the metabolic development of mycorrhized plants. Thus, AM not only accelerates the transition between plant developmental stages but delays biochemical “maturation” mainly in the form of a lag of sugar accumulation in comparison with non-mycorrhized plants. Several methods of statistical modeling proved that, at least with respect to determining the metabolic status of host-plant leaves, stages of phenological development have priority over calendar age. MDPI 2021-11-18 /pmc/articles/PMC8617643/ /pubmed/34834870 http://dx.doi.org/10.3390/plants10112506 Text en © 2021 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
Yurkov, Andrey P.
Puzanskiy, Roman K.
Avdeeva, Galina S.
Jacobi, Lidija M.
Gorbunova, Anastasia O.
Kryukov, Alexey A.
Kozhemyakov, Andrei P.
Laktionov, Yuri V.
Kosulnikov, Yuri V.
Romanyuk, Daria A.
Yemelyanov, Vladislav V.
Shavarda, Alexey L.
Kirpichnikova, Anastasia A.
Smolikova, Galina N.
Shishova, Maria F.
Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development
title Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development
title_full Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development
title_fullStr Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development
title_full_unstemmed Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development
title_short Mycorrhiza-Induced Alterations in Metabolome of Medicago lupulina Leaves during Symbiosis Development
title_sort mycorrhiza-induced alterations in metabolome of medicago lupulina leaves during symbiosis development
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8617643/
https://www.ncbi.nlm.nih.gov/pubmed/34834870
http://dx.doi.org/10.3390/plants10112506
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