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An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale

The natural auxin indole-3-acetic acid (IAA) is a key regulator of many aspects of plant growth and development. Synthetic auxin herbicides such as 2,4-D mimic the effects of IAA by inducing strong auxinic-signaling responses in plants. To determine the mechanism of 2,4-D resistance in a Sisymbrium...

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Autores principales: de Figueiredo, Marcelo R. A., Küpper, Anita, Malone, Jenna M., Petrovic, Tijana, de Figueiredo, Ana Beatriz T. B., Campagnola, Grace, Peersen, Olve B., Prasad, Kasavajhala V. S. K., Patterson, Eric L., Reddy, Anireddy S. N., Kubeš, Martin F., Napier, Richard, Dayan, Franck E., Preston, Christopher, Gaines, Todd A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892348/
https://www.ncbi.nlm.nih.gov/pubmed/35217601
http://dx.doi.org/10.1073/pnas.2105819119
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author de Figueiredo, Marcelo R. A.
Küpper, Anita
Malone, Jenna M.
Petrovic, Tijana
de Figueiredo, Ana Beatriz T. B.
Campagnola, Grace
Peersen, Olve B.
Prasad, Kasavajhala V. S. K.
Patterson, Eric L.
Reddy, Anireddy S. N.
Kubeš, Martin F.
Napier, Richard
Dayan, Franck E.
Preston, Christopher
Gaines, Todd A.
author_facet de Figueiredo, Marcelo R. A.
Küpper, Anita
Malone, Jenna M.
Petrovic, Tijana
de Figueiredo, Ana Beatriz T. B.
Campagnola, Grace
Peersen, Olve B.
Prasad, Kasavajhala V. S. K.
Patterson, Eric L.
Reddy, Anireddy S. N.
Kubeš, Martin F.
Napier, Richard
Dayan, Franck E.
Preston, Christopher
Gaines, Todd A.
author_sort de Figueiredo, Marcelo R. A.
collection PubMed
description The natural auxin indole-3-acetic acid (IAA) is a key regulator of many aspects of plant growth and development. Synthetic auxin herbicides such as 2,4-D mimic the effects of IAA by inducing strong auxinic-signaling responses in plants. To determine the mechanism of 2,4-D resistance in a Sisymbrium orientale (Indian hedge mustard) weed population, we performed a transcriptome analysis of 2,4-D-resistant (R) and -susceptible (S) genotypes that revealed an in-frame 27-nucleotide deletion removing nine amino acids in the degron tail (DT) of the auxin coreceptor Aux/IAA2 (SoIAA2). The deletion allele cosegregated with 2,4-D resistance in recombinant inbred lines. Further, this deletion was also detected in several 2,4-D-resistant field populations of this species. Arabidopsis transgenic lines expressing the SoIAA2 mutant allele were resistant to 2,4-D and dicamba. The IAA2-DT deletion reduced binding to TIR1 in vitro with both natural and synthetic auxins, causing reduced association and increased dissociation rates. This mechanism of synthetic auxin herbicide resistance assigns an in planta function to the DT region of this Aux/IAA coreceptor for its role in synthetic auxin binding kinetics and reveals a potential biotechnological approach to produce synthetic auxin-resistant crops using gene-editing.
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spelling pubmed-88923482022-03-04 An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale de Figueiredo, Marcelo R. A. Küpper, Anita Malone, Jenna M. Petrovic, Tijana de Figueiredo, Ana Beatriz T. B. Campagnola, Grace Peersen, Olve B. Prasad, Kasavajhala V. S. K. Patterson, Eric L. Reddy, Anireddy S. N. Kubeš, Martin F. Napier, Richard Dayan, Franck E. Preston, Christopher Gaines, Todd A. Proc Natl Acad Sci U S A Biological Sciences The natural auxin indole-3-acetic acid (IAA) is a key regulator of many aspects of plant growth and development. Synthetic auxin herbicides such as 2,4-D mimic the effects of IAA by inducing strong auxinic-signaling responses in plants. To determine the mechanism of 2,4-D resistance in a Sisymbrium orientale (Indian hedge mustard) weed population, we performed a transcriptome analysis of 2,4-D-resistant (R) and -susceptible (S) genotypes that revealed an in-frame 27-nucleotide deletion removing nine amino acids in the degron tail (DT) of the auxin coreceptor Aux/IAA2 (SoIAA2). The deletion allele cosegregated with 2,4-D resistance in recombinant inbred lines. Further, this deletion was also detected in several 2,4-D-resistant field populations of this species. Arabidopsis transgenic lines expressing the SoIAA2 mutant allele were resistant to 2,4-D and dicamba. The IAA2-DT deletion reduced binding to TIR1 in vitro with both natural and synthetic auxins, causing reduced association and increased dissociation rates. This mechanism of synthetic auxin herbicide resistance assigns an in planta function to the DT region of this Aux/IAA coreceptor for its role in synthetic auxin binding kinetics and reveals a potential biotechnological approach to produce synthetic auxin-resistant crops using gene-editing. National Academy of Sciences 2022-02-25 2022-03-01 /pmc/articles/PMC8892348/ /pubmed/35217601 http://dx.doi.org/10.1073/pnas.2105819119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
de Figueiredo, Marcelo R. A.
Küpper, Anita
Malone, Jenna M.
Petrovic, Tijana
de Figueiredo, Ana Beatriz T. B.
Campagnola, Grace
Peersen, Olve B.
Prasad, Kasavajhala V. S. K.
Patterson, Eric L.
Reddy, Anireddy S. N.
Kubeš, Martin F.
Napier, Richard
Dayan, Franck E.
Preston, Christopher
Gaines, Todd A.
An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale
title An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale
title_full An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale
title_fullStr An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale
title_full_unstemmed An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale
title_short An in-frame deletion mutation in the degron tail of auxin coreceptor IAA2 confers resistance to the herbicide 2,4-D in Sisymbrium orientale
title_sort in-frame deletion mutation in the degron tail of auxin coreceptor iaa2 confers resistance to the herbicide 2,4-d in sisymbrium orientale
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8892348/
https://www.ncbi.nlm.nih.gov/pubmed/35217601
http://dx.doi.org/10.1073/pnas.2105819119
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