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Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA

Although changes in root architecture in response to the environment can optimize mineral and water nutrient uptake, mechanisms regulating these changes are not well-understood. We investigated whether P deprivation effects on root development are mediated by abscisic acid (ABA) and its interactions...

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Autores principales: Vysotskaya, Lidiya, Akhiyarova, Guzel, Feoktistova, Arina, Akhtyamova, Zarina, Korobova, Alla, Ivanov, Igor, Dodd, Ian, Kuluev, Bulat, Kudoyarova, Guzel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762276/
https://www.ncbi.nlm.nih.gov/pubmed/33297400
http://dx.doi.org/10.3390/plants9121722
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author Vysotskaya, Lidiya
Akhiyarova, Guzel
Feoktistova, Arina
Akhtyamova, Zarina
Korobova, Alla
Ivanov, Igor
Dodd, Ian
Kuluev, Bulat
Kudoyarova, Guzel
author_facet Vysotskaya, Lidiya
Akhiyarova, Guzel
Feoktistova, Arina
Akhtyamova, Zarina
Korobova, Alla
Ivanov, Igor
Dodd, Ian
Kuluev, Bulat
Kudoyarova, Guzel
author_sort Vysotskaya, Lidiya
collection PubMed
description Although changes in root architecture in response to the environment can optimize mineral and water nutrient uptake, mechanisms regulating these changes are not well-understood. We investigated whether P deprivation effects on root development are mediated by abscisic acid (ABA) and its interactions with other hormones. The ABA-deficient barley mutant Az34 and its wild-type (WT) were grown in P-deprived and P-replete conditions, and hormones were measured in whole roots and root tips. Although P deprivation decreased growth in shoot mass similarly in both genotypes, only the WT increased primary root length and number of lateral roots. The effect was accompanied by ABA accumulation in root tips, a response not seen in Az34. Increased ABA in P-deprived WT was accompanied by decreased concentrations of cytokinin, an inhibitor of root extension. Furthermore, P-deficiency in the WT increased auxin concentration in whole root systems in association with increased root branching. In the ABA-deficient mutant, P-starvation failed to stimulate root elongation or promote branching, and there was no decline in cytokinin and no increase in auxin. The results demonstrate ABA’s ability to mediate in root growth responses to P starvation in barley, an effect linked to its effects on cytokinin and auxin concentrations.
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spelling pubmed-77622762020-12-26 Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA Vysotskaya, Lidiya Akhiyarova, Guzel Feoktistova, Arina Akhtyamova, Zarina Korobova, Alla Ivanov, Igor Dodd, Ian Kuluev, Bulat Kudoyarova, Guzel Plants (Basel) Article Although changes in root architecture in response to the environment can optimize mineral and water nutrient uptake, mechanisms regulating these changes are not well-understood. We investigated whether P deprivation effects on root development are mediated by abscisic acid (ABA) and its interactions with other hormones. The ABA-deficient barley mutant Az34 and its wild-type (WT) were grown in P-deprived and P-replete conditions, and hormones were measured in whole roots and root tips. Although P deprivation decreased growth in shoot mass similarly in both genotypes, only the WT increased primary root length and number of lateral roots. The effect was accompanied by ABA accumulation in root tips, a response not seen in Az34. Increased ABA in P-deprived WT was accompanied by decreased concentrations of cytokinin, an inhibitor of root extension. Furthermore, P-deficiency in the WT increased auxin concentration in whole root systems in association with increased root branching. In the ABA-deficient mutant, P-starvation failed to stimulate root elongation or promote branching, and there was no decline in cytokinin and no increase in auxin. The results demonstrate ABA’s ability to mediate in root growth responses to P starvation in barley, an effect linked to its effects on cytokinin and auxin concentrations. MDPI 2020-12-07 /pmc/articles/PMC7762276/ /pubmed/33297400 http://dx.doi.org/10.3390/plants9121722 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
Vysotskaya, Lidiya
Akhiyarova, Guzel
Feoktistova, Arina
Akhtyamova, Zarina
Korobova, Alla
Ivanov, Igor
Dodd, Ian
Kuluev, Bulat
Kudoyarova, Guzel
Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA
title Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA
title_full Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA
title_fullStr Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA
title_full_unstemmed Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA
title_short Effects of Phosphate Shortage on Root Growth and Hormone Content of Barley Depend on Capacity of the Roots to Accumulate ABA
title_sort effects of phosphate shortage on root growth and hormone content of barley depend on capacity of the roots to accumulate aba
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7762276/
https://www.ncbi.nlm.nih.gov/pubmed/33297400
http://dx.doi.org/10.3390/plants9121722
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