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LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat

Mutations at the LYS3 locus in barley have multiple effects on grain development, including an increase in embryo size and a decrease in endosperm starch content. The gene underlying LYS3 was identified by genetic mapping and mutations in this gene were identified in all four barley lys3 alleles. LY...

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Autores principales: Orman-Ligeza, Beata, Borrill, Philippa, Chia, Tansy, Chirico, Marcella, Doležel, Jaroslav, Drea, Sinead, Karafiátová, Miroslava, Schatlowski, Nicole, Solomon, Charles U., Steuernagel, Burkhard, Wulff, Brande B.H., Uauy, Cristobal, Trafford, Kay
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7263734/
https://www.ncbi.nlm.nih.gov/pubmed/32508376
http://dx.doi.org/10.1016/j.jcs.2020.102965
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author Orman-Ligeza, Beata
Borrill, Philippa
Chia, Tansy
Chirico, Marcella
Doležel, Jaroslav
Drea, Sinead
Karafiátová, Miroslava
Schatlowski, Nicole
Solomon, Charles U.
Steuernagel, Burkhard
Wulff, Brande B.H.
Uauy, Cristobal
Trafford, Kay
author_facet Orman-Ligeza, Beata
Borrill, Philippa
Chia, Tansy
Chirico, Marcella
Doležel, Jaroslav
Drea, Sinead
Karafiátová, Miroslava
Schatlowski, Nicole
Solomon, Charles U.
Steuernagel, Burkhard
Wulff, Brande B.H.
Uauy, Cristobal
Trafford, Kay
author_sort Orman-Ligeza, Beata
collection PubMed
description Mutations at the LYS3 locus in barley have multiple effects on grain development, including an increase in embryo size and a decrease in endosperm starch content. The gene underlying LYS3 was identified by genetic mapping and mutations in this gene were identified in all four barley lys3 alleles. LYS3 encodes a transcription factor called Prolamin Binding Factor (PBF). Its role in controlling embryo size was confirmed using wheat TILLING mutants. To understand how PBF controls embryo development, we studied its spatial and temporal patterns of expression in developing grains. The PBF gene is expressed in both the endosperm and the embryos, but the timing of expression in these organs differs. PBF expression in wild-type embryos precedes the onset of embryo enlargement in lys3 mutants, suggesting that PBF suppresses embryo growth. We predicted the down-stream target genes of PBF in wheat and found them to be involved in a wide range of biological processes, including organ development and starch metabolism. Our work suggests that PBF may influence embryo size and endosperm starch synthesis via separate gene control networks.
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spelling pubmed-72637342020-06-05 LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat Orman-Ligeza, Beata Borrill, Philippa Chia, Tansy Chirico, Marcella Doležel, Jaroslav Drea, Sinead Karafiátová, Miroslava Schatlowski, Nicole Solomon, Charles U. Steuernagel, Burkhard Wulff, Brande B.H. Uauy, Cristobal Trafford, Kay J Cereal Sci Article Mutations at the LYS3 locus in barley have multiple effects on grain development, including an increase in embryo size and a decrease in endosperm starch content. The gene underlying LYS3 was identified by genetic mapping and mutations in this gene were identified in all four barley lys3 alleles. LYS3 encodes a transcription factor called Prolamin Binding Factor (PBF). Its role in controlling embryo size was confirmed using wheat TILLING mutants. To understand how PBF controls embryo development, we studied its spatial and temporal patterns of expression in developing grains. The PBF gene is expressed in both the endosperm and the embryos, but the timing of expression in these organs differs. PBF expression in wild-type embryos precedes the onset of embryo enlargement in lys3 mutants, suggesting that PBF suppresses embryo growth. We predicted the down-stream target genes of PBF in wheat and found them to be involved in a wide range of biological processes, including organ development and starch metabolism. Our work suggests that PBF may influence embryo size and endosperm starch synthesis via separate gene control networks. Academic Press 2020-05 /pmc/articles/PMC7263734/ /pubmed/32508376 http://dx.doi.org/10.1016/j.jcs.2020.102965 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Orman-Ligeza, Beata
Borrill, Philippa
Chia, Tansy
Chirico, Marcella
Doležel, Jaroslav
Drea, Sinead
Karafiátová, Miroslava
Schatlowski, Nicole
Solomon, Charles U.
Steuernagel, Burkhard
Wulff, Brande B.H.
Uauy, Cristobal
Trafford, Kay
LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
title LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
title_full LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
title_fullStr LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
title_full_unstemmed LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
title_short LYS3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
title_sort lys3 encodes a prolamin-box-binding transcription factor that controls embryo growth in barley and wheat
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7263734/
https://www.ncbi.nlm.nih.gov/pubmed/32508376
http://dx.doi.org/10.1016/j.jcs.2020.102965
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