Cargando…

Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia

Both hormonal balance and plant growth may be shaped by microorganisms synthesizing phytohormones, regulating its synthesis in the plant and inducing plant resistance by releasing elicitors from cell walls (CW) by degrading enzymes (CWDE). It was shown that the Trichoderma DEMTkZ3A0 strain, isolated...

Descripción completa

Detalles Bibliográficos
Autores principales: Jaroszuk-Ściseł, Jolanta, Tyśkiewicz, Renata, Nowak, Artur, Ozimek, Ewa, Majewska, Małgorzata, Hanaka, Agnieszka, Tyśkiewicz, Katarzyna, Pawlik, Anna, Janusz, Grzegorz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6801869/
https://www.ncbi.nlm.nih.gov/pubmed/31590281
http://dx.doi.org/10.3390/ijms20194923
_version_ 1783460678905888768
author Jaroszuk-Ściseł, Jolanta
Tyśkiewicz, Renata
Nowak, Artur
Ozimek, Ewa
Majewska, Małgorzata
Hanaka, Agnieszka
Tyśkiewicz, Katarzyna
Pawlik, Anna
Janusz, Grzegorz
author_facet Jaroszuk-Ściseł, Jolanta
Tyśkiewicz, Renata
Nowak, Artur
Ozimek, Ewa
Majewska, Małgorzata
Hanaka, Agnieszka
Tyśkiewicz, Katarzyna
Pawlik, Anna
Janusz, Grzegorz
author_sort Jaroszuk-Ściseł, Jolanta
collection PubMed
description Both hormonal balance and plant growth may be shaped by microorganisms synthesizing phytohormones, regulating its synthesis in the plant and inducing plant resistance by releasing elicitors from cell walls (CW) by degrading enzymes (CWDE). It was shown that the Trichoderma DEMTkZ3A0 strain, isolated from a healthy rye rhizosphere, colonized the rhizoplane of wheat seedlings and root border cells (RBC) and caused approximately 40% increase of stem weight. The strain inhibited (in over 90%) the growth of polyphagous Fusarium spp. (F. culmorum, F. oxysporum, F. graminearum) phytopathogens through a mechanism of mycoparasitism. Chitinolytic and glucanolytic activity, strongly stimulated by CW of F. culmorum in the DEMTkZ3A0 liquid culture, is most likely responsible for the lysis of hyphae and macroconidia of phytopathogenic Fusarium spp. as well as the release of plant resistance elicitors. In DEMTkZ3A0 inoculated plants, an increase in the activity of the six tested plant resistance markers and a decrease in the concentration of indoleacetic acid (IAA) auxin were noted. IAA and gibberellic acid (GA) but also the 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase (ACCD) enzyme regulating ethylene production by plant were synthesized by DEMTkZ3A0 in the liquid culture. IAA synthesis was dependent on tryptophan and negatively correlated with temperature, whereas GA synthesis was positively correlated with the biomass and temperature.
format Online
Article
Text
id pubmed-6801869
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68018692019-10-31 Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia Jaroszuk-Ściseł, Jolanta Tyśkiewicz, Renata Nowak, Artur Ozimek, Ewa Majewska, Małgorzata Hanaka, Agnieszka Tyśkiewicz, Katarzyna Pawlik, Anna Janusz, Grzegorz Int J Mol Sci Article Both hormonal balance and plant growth may be shaped by microorganisms synthesizing phytohormones, regulating its synthesis in the plant and inducing plant resistance by releasing elicitors from cell walls (CW) by degrading enzymes (CWDE). It was shown that the Trichoderma DEMTkZ3A0 strain, isolated from a healthy rye rhizosphere, colonized the rhizoplane of wheat seedlings and root border cells (RBC) and caused approximately 40% increase of stem weight. The strain inhibited (in over 90%) the growth of polyphagous Fusarium spp. (F. culmorum, F. oxysporum, F. graminearum) phytopathogens through a mechanism of mycoparasitism. Chitinolytic and glucanolytic activity, strongly stimulated by CW of F. culmorum in the DEMTkZ3A0 liquid culture, is most likely responsible for the lysis of hyphae and macroconidia of phytopathogenic Fusarium spp. as well as the release of plant resistance elicitors. In DEMTkZ3A0 inoculated plants, an increase in the activity of the six tested plant resistance markers and a decrease in the concentration of indoleacetic acid (IAA) auxin were noted. IAA and gibberellic acid (GA) but also the 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase (ACCD) enzyme regulating ethylene production by plant were synthesized by DEMTkZ3A0 in the liquid culture. IAA synthesis was dependent on tryptophan and negatively correlated with temperature, whereas GA synthesis was positively correlated with the biomass and temperature. MDPI 2019-10-04 /pmc/articles/PMC6801869/ /pubmed/31590281 http://dx.doi.org/10.3390/ijms20194923 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jaroszuk-Ściseł, Jolanta
Tyśkiewicz, Renata
Nowak, Artur
Ozimek, Ewa
Majewska, Małgorzata
Hanaka, Agnieszka
Tyśkiewicz, Katarzyna
Pawlik, Anna
Janusz, Grzegorz
Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia
title Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia
title_full Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia
title_fullStr Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia
title_full_unstemmed Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia
title_short Phytohormones (Auxin, Gibberellin) and ACC Deaminase In Vitro Synthesized by the Mycoparasitic Trichoderma DEMTkZ3A0 Strain and Changes in the Level of Auxin and Plant Resistance Markers in Wheat Seedlings Inoculated with this Strain Conidia
title_sort phytohormones (auxin, gibberellin) and acc deaminase in vitro synthesized by the mycoparasitic trichoderma demtkz3a0 strain and changes in the level of auxin and plant resistance markers in wheat seedlings inoculated with this strain conidia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6801869/
https://www.ncbi.nlm.nih.gov/pubmed/31590281
http://dx.doi.org/10.3390/ijms20194923
work_keys_str_mv AT jaroszukscisełjolanta phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT tyskiewiczrenata phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT nowakartur phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT ozimekewa phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT majewskamałgorzata phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT hanakaagnieszka phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT tyskiewiczkatarzyna phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT pawlikanna phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia
AT januszgrzegorz phytohormonesauxingibberellinandaccdeaminaseinvitrosynthesizedbythemycoparasitictrichodermademtkz3a0strainandchangesinthelevelofauxinandplantresistancemarkersinwheatseedlingsinoculatedwiththisstrainconidia