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Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation

Polyamines (PAs) dramatically affect root architecture and development, mainly by unknown mechanisms; however, accumulating evidence points to hormone signaling and reactive oxygen species (ROS) as candidate mechanisms. To test this hypothesis, PA levels were modified by progressively reducing ADC1/...

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Autores principales: Hashem, Ahmed M., Moore, Simon, Chen, Shangjian, Hu, Chenchen, Zhao, Qing, Elesawi, Ibrahim Eid, Feng, Yanni, Topping, Jennifer F., Liu, Junli, Lindsey, Keith, Chen, Chunli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8071467/
https://www.ncbi.nlm.nih.gov/pubmed/33920993
http://dx.doi.org/10.3390/ijms22084094
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author Hashem, Ahmed M.
Moore, Simon
Chen, Shangjian
Hu, Chenchen
Zhao, Qing
Elesawi, Ibrahim Eid
Feng, Yanni
Topping, Jennifer F.
Liu, Junli
Lindsey, Keith
Chen, Chunli
author_facet Hashem, Ahmed M.
Moore, Simon
Chen, Shangjian
Hu, Chenchen
Zhao, Qing
Elesawi, Ibrahim Eid
Feng, Yanni
Topping, Jennifer F.
Liu, Junli
Lindsey, Keith
Chen, Chunli
author_sort Hashem, Ahmed M.
collection PubMed
description Polyamines (PAs) dramatically affect root architecture and development, mainly by unknown mechanisms; however, accumulating evidence points to hormone signaling and reactive oxygen species (ROS) as candidate mechanisms. To test this hypothesis, PA levels were modified by progressively reducing ADC1/2 activity and Put levels, and then changes in root meristematic zone (MZ) size, ROS, and auxin and cytokinin (CK) signaling were investigated. Decreasing putrescine resulted in an interesting inverted-U-trend in primary root growth and a similar trend in MZ size, and differential changes in putrescine (Put), spermidine (Spd), and combined spermine (Spm) plus thermospermine (Tspm) levels. At low Put concentrations, ROS accumulation increased coincidently with decreasing MZ size, and treatment with ROS scavenger KI partially rescued this phenotype. Analysis of double AtrbohD/F loss-of-function mutants indicated that NADPH oxidases were not involved in H(2)O(2) accumulation and that elevated ROS levels were due to changes in PA back-conversion, terminal catabolism, PA ROS scavenging, or another pathway. Decreasing Put resulted in a non-linear trend in auxin signaling, whereas CK signaling decreased, re-balancing auxin and CK signaling. Different levels of Put modulated the expression of PIN1 and PIN2 auxin transporters, indicating changes to auxin distribution. These data strongly suggest that PAs modulate MZ size through both hormone signaling and ROS accumulation in Arabidopsis.
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spelling pubmed-80714672021-04-26 Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation Hashem, Ahmed M. Moore, Simon Chen, Shangjian Hu, Chenchen Zhao, Qing Elesawi, Ibrahim Eid Feng, Yanni Topping, Jennifer F. Liu, Junli Lindsey, Keith Chen, Chunli Int J Mol Sci Article Polyamines (PAs) dramatically affect root architecture and development, mainly by unknown mechanisms; however, accumulating evidence points to hormone signaling and reactive oxygen species (ROS) as candidate mechanisms. To test this hypothesis, PA levels were modified by progressively reducing ADC1/2 activity and Put levels, and then changes in root meristematic zone (MZ) size, ROS, and auxin and cytokinin (CK) signaling were investigated. Decreasing putrescine resulted in an interesting inverted-U-trend in primary root growth and a similar trend in MZ size, and differential changes in putrescine (Put), spermidine (Spd), and combined spermine (Spm) plus thermospermine (Tspm) levels. At low Put concentrations, ROS accumulation increased coincidently with decreasing MZ size, and treatment with ROS scavenger KI partially rescued this phenotype. Analysis of double AtrbohD/F loss-of-function mutants indicated that NADPH oxidases were not involved in H(2)O(2) accumulation and that elevated ROS levels were due to changes in PA back-conversion, terminal catabolism, PA ROS scavenging, or another pathway. Decreasing Put resulted in a non-linear trend in auxin signaling, whereas CK signaling decreased, re-balancing auxin and CK signaling. Different levels of Put modulated the expression of PIN1 and PIN2 auxin transporters, indicating changes to auxin distribution. These data strongly suggest that PAs modulate MZ size through both hormone signaling and ROS accumulation in Arabidopsis. MDPI 2021-04-15 /pmc/articles/PMC8071467/ /pubmed/33920993 http://dx.doi.org/10.3390/ijms22084094 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
Hashem, Ahmed M.
Moore, Simon
Chen, Shangjian
Hu, Chenchen
Zhao, Qing
Elesawi, Ibrahim Eid
Feng, Yanni
Topping, Jennifer F.
Liu, Junli
Lindsey, Keith
Chen, Chunli
Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation
title Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation
title_full Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation
title_fullStr Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation
title_full_unstemmed Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation
title_short Putrescine Depletion Affects Arabidopsis Root Meristem Size by Modulating Auxin and Cytokinin Signaling and ROS Accumulation
title_sort putrescine depletion affects arabidopsis root meristem size by modulating auxin and cytokinin signaling and ros accumulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8071467/
https://www.ncbi.nlm.nih.gov/pubmed/33920993
http://dx.doi.org/10.3390/ijms22084094
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