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The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture

Challenges for wheat doubled haploid (DH) production using anther culture include genotype variability in green plant regeneration and spontaneous chromosome doubling. The frequency of chromosome doubling in our program can vary from 14% to 80%. Caffeine or trifluralin was applied at the start of th...

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Autores principales: Broughton, Sue, Castello, Marieclaire, Liu, Li, Killen, Julie, Hepworth, Anna, O’Leary, Rebecca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7020159/
https://www.ncbi.nlm.nih.gov/pubmed/31952150
http://dx.doi.org/10.3390/plants9010105
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author Broughton, Sue
Castello, Marieclaire
Liu, Li
Killen, Julie
Hepworth, Anna
O’Leary, Rebecca
author_facet Broughton, Sue
Castello, Marieclaire
Liu, Li
Killen, Julie
Hepworth, Anna
O’Leary, Rebecca
author_sort Broughton, Sue
collection PubMed
description Challenges for wheat doubled haploid (DH) production using anther culture include genotype variability in green plant regeneration and spontaneous chromosome doubling. The frequency of chromosome doubling in our program can vary from 14% to 80%. Caffeine or trifluralin was applied at the start of the induction phase to improve early genome doubling. Caffeine treatment at 0.5 mM for 24 h significantly improved green plant production in two of the six spring wheat crosses but had no effect on the other crosses. The improvements were observed in Trojan/Havoc and Lancer/LPB14-0392, where green plant numbers increased by 14% and 27% to 161 and 42 green plants per 30 anthers, respectively. Caffeine had no significant effect on chromosome doubling, despite a higher frequency of doubling in several caffeine treatments in the first experiment (67–68%) compared to the control (56%). In contrast, trifluralin significantly improved doubling following a 48 h treatment, from 38% in the control to 51% and 53% in the 1 µM and 3 µM trifluralin treatments, respectively. However, trifluralin had a significant negative effect on green plant regeneration, declining from 31.8 green plants per 20 anthers (control) to 9–25 green plants per 20 anthers in the trifluralin treatments. Further work is required to identify a treatment regime with caffeine and/or anti-mitotic herbicides that consistently increases chromosome doubling in wheat without reducing green plant regeneration.
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spelling pubmed-70201592020-03-09 The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture Broughton, Sue Castello, Marieclaire Liu, Li Killen, Julie Hepworth, Anna O’Leary, Rebecca Plants (Basel) Article Challenges for wheat doubled haploid (DH) production using anther culture include genotype variability in green plant regeneration and spontaneous chromosome doubling. The frequency of chromosome doubling in our program can vary from 14% to 80%. Caffeine or trifluralin was applied at the start of the induction phase to improve early genome doubling. Caffeine treatment at 0.5 mM for 24 h significantly improved green plant production in two of the six spring wheat crosses but had no effect on the other crosses. The improvements were observed in Trojan/Havoc and Lancer/LPB14-0392, where green plant numbers increased by 14% and 27% to 161 and 42 green plants per 30 anthers, respectively. Caffeine had no significant effect on chromosome doubling, despite a higher frequency of doubling in several caffeine treatments in the first experiment (67–68%) compared to the control (56%). In contrast, trifluralin significantly improved doubling following a 48 h treatment, from 38% in the control to 51% and 53% in the 1 µM and 3 µM trifluralin treatments, respectively. However, trifluralin had a significant negative effect on green plant regeneration, declining from 31.8 green plants per 20 anthers (control) to 9–25 green plants per 20 anthers in the trifluralin treatments. Further work is required to identify a treatment regime with caffeine and/or anti-mitotic herbicides that consistently increases chromosome doubling in wheat without reducing green plant regeneration. MDPI 2020-01-15 /pmc/articles/PMC7020159/ /pubmed/31952150 http://dx.doi.org/10.3390/plants9010105 Text en © 2020 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
Broughton, Sue
Castello, Marieclaire
Liu, Li
Killen, Julie
Hepworth, Anna
O’Leary, Rebecca
The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture
title The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture
title_full The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture
title_fullStr The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture
title_full_unstemmed The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture
title_short The Effect of Caffeine and Trifluralin on Chromosome Doubling in Wheat Anther Culture
title_sort effect of caffeine and trifluralin on chromosome doubling in wheat anther culture
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7020159/
https://www.ncbi.nlm.nih.gov/pubmed/31952150
http://dx.doi.org/10.3390/plants9010105
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