Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration

Maize is the highest yielding cereal crop grown worldwide. Here Sunet al. show that maize growth can be further enhanced by prolonging the duration of leaf elongation by targeted ectopic expression of the PLASTOCHRON1gene and show that this leads to increased yield in field trials.

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Autores principales: Xiaohuan Sun, James Cahill, Tom Van Hautegem, Kim Feys, Clinton Whipple, Ondrej Novák, Sofie Delbare, Charlot Versteele, Kirin Demuynck, Jolien De Block, Veronique Storme, Hannes Claeys, Mieke Van Lijsebettens, Griet Coussens, Karin Ljung, Alex De Vliegher, Michael Muszynski, Dirk Inzé, Hilde Nelissen
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/295db31a40b245f3bbe9f6cc4538ab8e
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spelling oai:doaj.org-article:295db31a40b245f3bbe9f6cc4538ab8e2021-12-02T14:40:59ZAltered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration10.1038/ncomms147522041-1723https://doaj.org/article/295db31a40b245f3bbe9f6cc4538ab8e2017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14752https://doaj.org/toc/2041-1723Maize is the highest yielding cereal crop grown worldwide. Here Sunet al. show that maize growth can be further enhanced by prolonging the duration of leaf elongation by targeted ectopic expression of the PLASTOCHRON1gene and show that this leads to increased yield in field trials.Xiaohuan SunJames CahillTom Van HautegemKim FeysClinton WhippleOndrej NovákSofie DelbareCharlot VersteeleKirin DemuynckJolien De BlockVeronique StormeHannes ClaeysMieke Van LijsebettensGriet CoussensKarin LjungAlex De VliegherMichael MuszynskiDirk InzéHilde NelissenNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaohuan Sun
James Cahill
Tom Van Hautegem
Kim Feys
Clinton Whipple
Ondrej Novák
Sofie Delbare
Charlot Versteele
Kirin Demuynck
Jolien De Block
Veronique Storme
Hannes Claeys
Mieke Van Lijsebettens
Griet Coussens
Karin Ljung
Alex De Vliegher
Michael Muszynski
Dirk Inzé
Hilde Nelissen
Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration
description Maize is the highest yielding cereal crop grown worldwide. Here Sunet al. show that maize growth can be further enhanced by prolonging the duration of leaf elongation by targeted ectopic expression of the PLASTOCHRON1gene and show that this leads to increased yield in field trials.
format article
author Xiaohuan Sun
James Cahill
Tom Van Hautegem
Kim Feys
Clinton Whipple
Ondrej Novák
Sofie Delbare
Charlot Versteele
Kirin Demuynck
Jolien De Block
Veronique Storme
Hannes Claeys
Mieke Van Lijsebettens
Griet Coussens
Karin Ljung
Alex De Vliegher
Michael Muszynski
Dirk Inzé
Hilde Nelissen
author_facet Xiaohuan Sun
James Cahill
Tom Van Hautegem
Kim Feys
Clinton Whipple
Ondrej Novák
Sofie Delbare
Charlot Versteele
Kirin Demuynck
Jolien De Block
Veronique Storme
Hannes Claeys
Mieke Van Lijsebettens
Griet Coussens
Karin Ljung
Alex De Vliegher
Michael Muszynski
Dirk Inzé
Hilde Nelissen
author_sort Xiaohuan Sun
title Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration
title_short Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration
title_full Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration
title_fullStr Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration
title_full_unstemmed Altered expression of maize PLASTOCHRON1 enhances biomass and seed yield by extending cell division duration
title_sort altered expression of maize plastochron1 enhances biomass and seed yield by extending cell division duration
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/295db31a40b245f3bbe9f6cc4538ab8e
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