Cargando…

Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat

Awns, bristle‐like structures extending from grass lemmas, provide protection against predators, contribute to photosynthesis and aid in grain dispersal. In wheat, selection of awns with minimal extension, termed awnletted, has occurred during domestication by way of loci that dominantly inhibit awn...

Descripción completa

Detalles Bibliográficos
Autores principales: Huang, Daiqing, Zheng, Qian, Melchkart, Tancey, Bekkaoui, Yasmina, Konkin, David J. F., Kagale, Sateesh, Martucci, Martial, You, Frank M., Clarke, Martha, Adamski, Nikolai M., Chinoy, Catherine, Steed, Andrew, McCartney, Curt A., Cutler, Adrian J., Nicholson, Paul, Feurtado, J. Allan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6916588/
https://www.ncbi.nlm.nih.gov/pubmed/31469444
http://dx.doi.org/10.1111/nph.16154
_version_ 1783480262783401984
author Huang, Daiqing
Zheng, Qian
Melchkart, Tancey
Bekkaoui, Yasmina
Konkin, David J. F.
Kagale, Sateesh
Martucci, Martial
You, Frank M.
Clarke, Martha
Adamski, Nikolai M.
Chinoy, Catherine
Steed, Andrew
McCartney, Curt A.
Cutler, Adrian J.
Nicholson, Paul
Feurtado, J. Allan
author_facet Huang, Daiqing
Zheng, Qian
Melchkart, Tancey
Bekkaoui, Yasmina
Konkin, David J. F.
Kagale, Sateesh
Martucci, Martial
You, Frank M.
Clarke, Martha
Adamski, Nikolai M.
Chinoy, Catherine
Steed, Andrew
McCartney, Curt A.
Cutler, Adrian J.
Nicholson, Paul
Feurtado, J. Allan
author_sort Huang, Daiqing
collection PubMed
description Awns, bristle‐like structures extending from grass lemmas, provide protection against predators, contribute to photosynthesis and aid in grain dispersal. In wheat, selection of awns with minimal extension, termed awnletted, has occurred during domestication by way of loci that dominantly inhibit awn development, such as Tipped1 (B1), Tipped2 (B2), and Hooded (Hd). Here we identify and characterize the B1 gene. B1 was identified using bulked segregant RNA‐sequencing of an F(2) durum wheat population and through deletion mapping of awned bread wheat mutants. Functional characterization was accomplished by gene overexpression while haplotype analyses assessed B1 polymorphisms and genetic variation. Located on chromosome 5A, B1 is a C2H2 zinc finger encoding gene with ethylene‐responsive element binding factor‐associated amphiphilic repression (EAR) motifs. Constitutive overexpression of B1 in awned wheat produced an awnletted phenotype with pleiotropic effects on plant height and fertility. Transcriptome analysis of B1 overexpression plants suggests a role as transcriptional repressor, putatively targeting pathways involved in cell proliferation. Haplotype analysis revealed a conserved B1 coding region with proximal polymorphisms and supported the contention that B1 is mainly responsible for awnletted wheats globally. B1, predominantly responsible for awn inhibition in wheat, encodes a C2H2 zinc finger protein with EAR motifs which putatively functions as a transcriptional repressor.
format Online
Article
Text
id pubmed-6916588
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-69165882019-12-23 Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat Huang, Daiqing Zheng, Qian Melchkart, Tancey Bekkaoui, Yasmina Konkin, David J. F. Kagale, Sateesh Martucci, Martial You, Frank M. Clarke, Martha Adamski, Nikolai M. Chinoy, Catherine Steed, Andrew McCartney, Curt A. Cutler, Adrian J. Nicholson, Paul Feurtado, J. Allan New Phytol Research Awns, bristle‐like structures extending from grass lemmas, provide protection against predators, contribute to photosynthesis and aid in grain dispersal. In wheat, selection of awns with minimal extension, termed awnletted, has occurred during domestication by way of loci that dominantly inhibit awn development, such as Tipped1 (B1), Tipped2 (B2), and Hooded (Hd). Here we identify and characterize the B1 gene. B1 was identified using bulked segregant RNA‐sequencing of an F(2) durum wheat population and through deletion mapping of awned bread wheat mutants. Functional characterization was accomplished by gene overexpression while haplotype analyses assessed B1 polymorphisms and genetic variation. Located on chromosome 5A, B1 is a C2H2 zinc finger encoding gene with ethylene‐responsive element binding factor‐associated amphiphilic repression (EAR) motifs. Constitutive overexpression of B1 in awned wheat produced an awnletted phenotype with pleiotropic effects on plant height and fertility. Transcriptome analysis of B1 overexpression plants suggests a role as transcriptional repressor, putatively targeting pathways involved in cell proliferation. Haplotype analysis revealed a conserved B1 coding region with proximal polymorphisms and supported the contention that B1 is mainly responsible for awnletted wheats globally. B1, predominantly responsible for awn inhibition in wheat, encodes a C2H2 zinc finger protein with EAR motifs which putatively functions as a transcriptional repressor. John Wiley and Sons Inc. 2019-10-10 2020-01 /pmc/articles/PMC6916588/ /pubmed/31469444 http://dx.doi.org/10.1111/nph.16154 Text en © 2019 National Research Council Canada New Phytologist © 2019 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Huang, Daiqing
Zheng, Qian
Melchkart, Tancey
Bekkaoui, Yasmina
Konkin, David J. F.
Kagale, Sateesh
Martucci, Martial
You, Frank M.
Clarke, Martha
Adamski, Nikolai M.
Chinoy, Catherine
Steed, Andrew
McCartney, Curt A.
Cutler, Adrian J.
Nicholson, Paul
Feurtado, J. Allan
Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat
title Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat
title_full Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat
title_fullStr Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat
title_full_unstemmed Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat
title_short Dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the B1 locus in wheat
title_sort dominant inhibition of awn development by a putative zinc‐finger transcriptional repressor expressed at the b1 locus in wheat
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6916588/
https://www.ncbi.nlm.nih.gov/pubmed/31469444
http://dx.doi.org/10.1111/nph.16154
work_keys_str_mv AT huangdaiqing dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT zhengqian dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT melchkarttancey dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT bekkaouiyasmina dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT konkindavidjf dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT kagalesateesh dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT martuccimartial dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT youfrankm dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT clarkemartha dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT adamskinikolaim dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT chinoycatherine dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT steedandrew dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT mccartneycurta dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT cutleradrianj dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT nicholsonpaul dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat
AT feurtadojallan dominantinhibitionofawndevelopmentbyaputativezincfingertranscriptionalrepressorexpressedattheb1locusinwheat