Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis

The influence of polyamines (PAs), putrescine (Put) and spermidine (Spd) on the efficiency of gynogenesis in ovule cultures of red beet (syn. beetroot) (<i>Beta vulgaris</i> L. <i>vulgaris</i>) cultivar “Czerwona Kula” and breeding accessions no. 3/2010 and no. 7/2008 was inv...

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Main Authors: Waldemar Kiszczak, Urszula Kowalska, Maria Burian, Małgorzata Podwyszyńska, Krystyna Górecka
Format: Article
Language:English
Published: MDPI AG 2023-02-01
Series:Agronomy
Subjects:
Online Access:https://www.mdpi.com/2073-4395/13/2/537
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author Waldemar Kiszczak
Urszula Kowalska
Maria Burian
Małgorzata Podwyszyńska
Krystyna Górecka
author_facet Waldemar Kiszczak
Urszula Kowalska
Maria Burian
Małgorzata Podwyszyńska
Krystyna Górecka
author_sort Waldemar Kiszczak
collection DOAJ
description The influence of polyamines (PAs), putrescine (Put) and spermidine (Spd) on the efficiency of gynogenesis in ovule cultures of red beet (syn. beetroot) (<i>Beta vulgaris</i> L. <i>vulgaris</i>) cultivar “Czerwona Kula” and breeding accessions no. 3/2010 and no. 7/2008 was investigated. The effect of Put on the process of plant regeneration from gynogenetic embryos was studied. The response to the applied PAs was strongly dependent on the genotype. In “Czerwona Kula”, an increase in the number of obtained embryos was achieved by using each of the two PAs in the B5 medium. The effect of Spd was stronger. Put added to the regeneration medium at the concentration of 0.5 mg L<sup>−1</sup> increased the number of obtained plants. All shoots placed on the rooting medium supplemented with 160 mg L<sup>−1</sup> Put formed roots. The distribution of ploidy and homozygosity of gynogenetic plants depended on the genotype. Of the tested genotypes, the highest number of haploid plants, 68%, was obtained in red beet “Czerwona Kula”. The highest percentage of homozygotes, 69% for the glucose phosphate isomerase (GPI, E.C.5.3.1.9) isoenzyme and 100% for the aspartate aminotransferase (AAT, E.C.2.6.1.1) isoenzyme, was obtained in the population of gynogenetic plants of cultivar “Czerwona Kula”.
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spelling doaj.art-6adf1302bd3240f7b19d5570252ce9292023-11-16T18:36:04ZengMDPI AGAgronomy2073-43952023-02-0113253710.3390/agronomy13020537Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) GynogenesisWaldemar Kiszczak0Urszula Kowalska1Maria Burian2Małgorzata Podwyszyńska3Krystyna Górecka4Department of Applied Biology, The National Institute of Horticultural Research, Konstytucji 3 Maja 1/3 Str., 96-100 Skierniewice, PolandDepartment of Applied Biology, The National Institute of Horticultural Research, Konstytucji 3 Maja 1/3 Str., 96-100 Skierniewice, PolandDepartment of Applied Biology, The National Institute of Horticultural Research, Konstytucji 3 Maja 1/3 Str., 96-100 Skierniewice, PolandDepartment of Applied Biology, The National Institute of Horticultural Research, Konstytucji 3 Maja 1/3 Str., 96-100 Skierniewice, PolandDepartment of Applied Biology, The National Institute of Horticultural Research, Konstytucji 3 Maja 1/3 Str., 96-100 Skierniewice, PolandThe influence of polyamines (PAs), putrescine (Put) and spermidine (Spd) on the efficiency of gynogenesis in ovule cultures of red beet (syn. beetroot) (<i>Beta vulgaris</i> L. <i>vulgaris</i>) cultivar “Czerwona Kula” and breeding accessions no. 3/2010 and no. 7/2008 was investigated. The effect of Put on the process of plant regeneration from gynogenetic embryos was studied. The response to the applied PAs was strongly dependent on the genotype. In “Czerwona Kula”, an increase in the number of obtained embryos was achieved by using each of the two PAs in the B5 medium. The effect of Spd was stronger. Put added to the regeneration medium at the concentration of 0.5 mg L<sup>−1</sup> increased the number of obtained plants. All shoots placed on the rooting medium supplemented with 160 mg L<sup>−1</sup> Put formed roots. The distribution of ploidy and homozygosity of gynogenetic plants depended on the genotype. Of the tested genotypes, the highest number of haploid plants, 68%, was obtained in red beet “Czerwona Kula”. The highest percentage of homozygotes, 69% for the glucose phosphate isomerase (GPI, E.C.5.3.1.9) isoenzyme and 100% for the aspartate aminotransferase (AAT, E.C.2.6.1.1) isoenzyme, was obtained in the population of gynogenetic plants of cultivar “Czerwona Kula”.https://www.mdpi.com/2073-4395/13/2/537gynogenesishomozygosityputrescineploidyred beetspermidine
spellingShingle Waldemar Kiszczak
Urszula Kowalska
Maria Burian
Małgorzata Podwyszyńska
Krystyna Górecka
Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis
Agronomy
gynogenesis
homozygosity
putrescine
ploidy
red beet
spermidine
title Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis
title_full Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis
title_fullStr Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis
title_full_unstemmed Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis
title_short Influence of Polyamines on Red Beet (<i>Beta vulgaris</i> L. ssp. <i>vulgaris</i>) Gynogenesis
title_sort influence of polyamines on red beet i beta vulgaris i l ssp i vulgaris i gynogenesis
topic gynogenesis
homozygosity
putrescine
ploidy
red beet
spermidine
url https://www.mdpi.com/2073-4395/13/2/537
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