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Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism

Plants are able to orient their growth according to gravity, which ultimately controls both shoot and root architecture.(1) Gravitropism is a dynamic process whereby gravistimulation induces the asymmetric distribution of the plant hormone auxin, leading to asymmetric growth, organ bending, and subs...

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Autores principales: Marquès-Bueno, Maria Mar, Armengot, Laia, Noack, Lise C., Bareille, Joseph, Rodriguez, Lesia, Platre, Matthieu Pierre, Bayle, Vincent, Liu, Mengying, Opdenacker, Davy, Vanneste, Steffen, Möller, Barbara K., Nimchuk, Zachary L., Beeckman, Tom, Caño-Delgado, Ana I., Friml, Jiří, Jaillais, Yvon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7809621/
https://www.ncbi.nlm.nih.gov/pubmed/33157019
http://dx.doi.org/10.1016/j.cub.2020.10.011
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author Marquès-Bueno, Maria Mar
Armengot, Laia
Noack, Lise C.
Bareille, Joseph
Rodriguez, Lesia
Platre, Matthieu Pierre
Bayle, Vincent
Liu, Mengying
Opdenacker, Davy
Vanneste, Steffen
Möller, Barbara K.
Nimchuk, Zachary L.
Beeckman, Tom
Caño-Delgado, Ana I.
Friml, Jiří
Jaillais, Yvon
author_facet Marquès-Bueno, Maria Mar
Armengot, Laia
Noack, Lise C.
Bareille, Joseph
Rodriguez, Lesia
Platre, Matthieu Pierre
Bayle, Vincent
Liu, Mengying
Opdenacker, Davy
Vanneste, Steffen
Möller, Barbara K.
Nimchuk, Zachary L.
Beeckman, Tom
Caño-Delgado, Ana I.
Friml, Jiří
Jaillais, Yvon
author_sort Marquès-Bueno, Maria Mar
collection PubMed
description Plants are able to orient their growth according to gravity, which ultimately controls both shoot and root architecture.(1) Gravitropism is a dynamic process whereby gravistimulation induces the asymmetric distribution of the plant hormone auxin, leading to asymmetric growth, organ bending, and subsequent reset of auxin distribution back to the original pre-gravistimulation situation.1, 2, 3 Differential auxin accumulation during the gravitropic response depends on the activity of polarly localized PIN-FORMED (PIN) auxin-efflux carriers.1, 2, 3, 4 In particular, the timing of this dynamic response is regulated by PIN2,(5)(,)(6) but the underlying molecular mechanisms are poorly understood. Here, we show that MEMBRANE ASSOCIATED KINASE REGULATOR2 (MAKR2) controls the pace of the root gravitropic response. We found that MAKR2 is required for the PIN2 asymmetry during gravitropism by acting as a negative regulator of the cell-surface signaling mediated by the receptor-like kinase TRANSMEMBRANE KINASE1 (TMK1).(2)(,)7, 8, 9, 10 Furthermore, we show that the MAKR2 inhibitory effect on TMK1 signaling is antagonized by auxin itself, which triggers rapid MAKR2 membrane dissociation in a TMK1-dependent manner. Our findings suggest that the timing of the root gravitropic response is orchestrated by the reversible inhibition of the TMK1 signaling pathway at the cell surface.
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spelling pubmed-78096212021-01-22 Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism Marquès-Bueno, Maria Mar Armengot, Laia Noack, Lise C. Bareille, Joseph Rodriguez, Lesia Platre, Matthieu Pierre Bayle, Vincent Liu, Mengying Opdenacker, Davy Vanneste, Steffen Möller, Barbara K. Nimchuk, Zachary L. Beeckman, Tom Caño-Delgado, Ana I. Friml, Jiří Jaillais, Yvon Curr Biol Report Plants are able to orient their growth according to gravity, which ultimately controls both shoot and root architecture.(1) Gravitropism is a dynamic process whereby gravistimulation induces the asymmetric distribution of the plant hormone auxin, leading to asymmetric growth, organ bending, and subsequent reset of auxin distribution back to the original pre-gravistimulation situation.1, 2, 3 Differential auxin accumulation during the gravitropic response depends on the activity of polarly localized PIN-FORMED (PIN) auxin-efflux carriers.1, 2, 3, 4 In particular, the timing of this dynamic response is regulated by PIN2,(5)(,)(6) but the underlying molecular mechanisms are poorly understood. Here, we show that MEMBRANE ASSOCIATED KINASE REGULATOR2 (MAKR2) controls the pace of the root gravitropic response. We found that MAKR2 is required for the PIN2 asymmetry during gravitropism by acting as a negative regulator of the cell-surface signaling mediated by the receptor-like kinase TRANSMEMBRANE KINASE1 (TMK1).(2)(,)7, 8, 9, 10 Furthermore, we show that the MAKR2 inhibitory effect on TMK1 signaling is antagonized by auxin itself, which triggers rapid MAKR2 membrane dissociation in a TMK1-dependent manner. Our findings suggest that the timing of the root gravitropic response is orchestrated by the reversible inhibition of the TMK1 signaling pathway at the cell surface. Cell Press 2021-01-11 /pmc/articles/PMC7809621/ /pubmed/33157019 http://dx.doi.org/10.1016/j.cub.2020.10.011 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Report
Marquès-Bueno, Maria Mar
Armengot, Laia
Noack, Lise C.
Bareille, Joseph
Rodriguez, Lesia
Platre, Matthieu Pierre
Bayle, Vincent
Liu, Mengying
Opdenacker, Davy
Vanneste, Steffen
Möller, Barbara K.
Nimchuk, Zachary L.
Beeckman, Tom
Caño-Delgado, Ana I.
Friml, Jiří
Jaillais, Yvon
Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism
title Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism
title_full Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism
title_fullStr Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism
title_full_unstemmed Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism
title_short Auxin-Regulated Reversible Inhibition of TMK1 Signaling by MAKR2 Modulates the Dynamics of Root Gravitropism
title_sort auxin-regulated reversible inhibition of tmk1 signaling by makr2 modulates the dynamics of root gravitropism
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7809621/
https://www.ncbi.nlm.nih.gov/pubmed/33157019
http://dx.doi.org/10.1016/j.cub.2020.10.011
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