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Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition

Interactions between plant hormones and environmental signals are important for the maintenance of root growth plasticity under ever-changing environmental conditions. Here, we demonstrate that arsenate (As(V)), the most prevalent form of arsenic (As) in nature, restrains elongation of the primary r...

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Autores principales: Tu, Tianli, Zheng, Shuangshuang, Ren, Panrong, Meng, Xianwen, Zhao, Jiuhai, Chen, Qian, Li, Chuanyou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8133639/
https://www.ncbi.nlm.nih.gov/pubmed/33793921
http://dx.doi.org/10.1093/plphys/kiaa072
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author Tu, Tianli
Zheng, Shuangshuang
Ren, Panrong
Meng, Xianwen
Zhao, Jiuhai
Chen, Qian
Li, Chuanyou
author_facet Tu, Tianli
Zheng, Shuangshuang
Ren, Panrong
Meng, Xianwen
Zhao, Jiuhai
Chen, Qian
Li, Chuanyou
author_sort Tu, Tianli
collection PubMed
description Interactions between plant hormones and environmental signals are important for the maintenance of root growth plasticity under ever-changing environmental conditions. Here, we demonstrate that arsenate (As(V)), the most prevalent form of arsenic (As) in nature, restrains elongation of the primary root through transcriptional regulation of local auxin biosynthesis genes in the root tips of Arabidopsis (Arabidopsis thaliana) plants. The ANTHRANILATE SYNTHASE ALPHA SUBUNIT 1 (ASA1) and BETA SUBUNIT 1 (ASB1) genes encode enzymes that catalyze the conversion of chorismate to anthranilate (ANT) via the tryptophan-dependent auxin biosynthesis pathway. Our results showed that As(V) upregulates ASA1 and ASB1 expression in root tips, and ASA1- and ASB1-mediated auxin biosynthesis is involved in As(V)-induced root growth inhibition. Further investigation confirmed that As(V) activates cytokinin signaling by stabilizing the type-B ARABIDOPSIS RESPONSE REGULATOR1 (ARR1) protein, which directly promotes the transcription of ASA1 and ASB1 genes by binding to their promoters. Genetic analysis revealed that ASA1 and ASB1 are epistatic to ARR1 in the As(V)-induced inhibition of primary root elongation. Overall, the results of this study illustrate a molecular framework that explains As(V)-induced root growth inhibition via crosstalk between two major plant growth regulators, auxin and cytokinin.
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spelling pubmed-81336392021-05-25 Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition Tu, Tianli Zheng, Shuangshuang Ren, Panrong Meng, Xianwen Zhao, Jiuhai Chen, Qian Li, Chuanyou Plant Physiol Regular Issue Interactions between plant hormones and environmental signals are important for the maintenance of root growth plasticity under ever-changing environmental conditions. Here, we demonstrate that arsenate (As(V)), the most prevalent form of arsenic (As) in nature, restrains elongation of the primary root through transcriptional regulation of local auxin biosynthesis genes in the root tips of Arabidopsis (Arabidopsis thaliana) plants. The ANTHRANILATE SYNTHASE ALPHA SUBUNIT 1 (ASA1) and BETA SUBUNIT 1 (ASB1) genes encode enzymes that catalyze the conversion of chorismate to anthranilate (ANT) via the tryptophan-dependent auxin biosynthesis pathway. Our results showed that As(V) upregulates ASA1 and ASB1 expression in root tips, and ASA1- and ASB1-mediated auxin biosynthesis is involved in As(V)-induced root growth inhibition. Further investigation confirmed that As(V) activates cytokinin signaling by stabilizing the type-B ARABIDOPSIS RESPONSE REGULATOR1 (ARR1) protein, which directly promotes the transcription of ASA1 and ASB1 genes by binding to their promoters. Genetic analysis revealed that ASA1 and ASB1 are epistatic to ARR1 in the As(V)-induced inhibition of primary root elongation. Overall, the results of this study illustrate a molecular framework that explains As(V)-induced root growth inhibition via crosstalk between two major plant growth regulators, auxin and cytokinin. Oxford University Press 2021-01-13 /pmc/articles/PMC8133639/ /pubmed/33793921 http://dx.doi.org/10.1093/plphys/kiaa072 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Regular Issue
Tu, Tianli
Zheng, Shuangshuang
Ren, Panrong
Meng, Xianwen
Zhao, Jiuhai
Chen, Qian
Li, Chuanyou
Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
title Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
title_full Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
title_fullStr Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
title_full_unstemmed Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
title_short Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
title_sort coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition
topic Regular Issue
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8133639/
https://www.ncbi.nlm.nih.gov/pubmed/33793921
http://dx.doi.org/10.1093/plphys/kiaa072
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