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Contenido proporcionado por Arif Ashraf. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente Arif Ashraf o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.
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S1E7 | Ashley Hostetler | Embracing brace roots

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Manage episode 325035043 series 3299153
Contenido proporcionado por Arif Ashraf. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente Arif Ashraf o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.

Article: Multiple brace root phenotypes promote anchorage and limit root lodging in maize
Journal: Plant, Cell & Environment
Year: 2022
Guest: Ashley Hostetler
Host: Arif Ashraf

Abstract

Plant mechanical failure (lodging) causes global yield losses of 7%−66% in cereal crops. We have previously shown that the above-ground nodal roots (brace roots) in maize are critical for anchorage. However, it is unknown how brace root phenotypes vary across genotypes and the functional consequence of this variation. This study quantifies the contribution of brace roots to anchorage, brace root traits, plant height, and root lodging susceptibility in 52 maize inbred lines. We show that the contribution of brace roots to anchorage and root lodging susceptibility varies among genotypes and this contribution can be explained by plant architectural variation. Additionally, supervised machine learning models were developed and show that multiple plant architectural phenotypes can predict the contribution of brace roots to anchorage and root lodging susceptibility. Together these data define the plant architectures that are important in lodging resistance and show that the contribution of brace roots to anchorage is a good proxy for root lodging susceptibility.

Cover art design and audio editing: Ragib Anjum

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30 episodios

Artwork
iconCompartir
 
Manage episode 325035043 series 3299153
Contenido proporcionado por Arif Ashraf. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente Arif Ashraf o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.

Article: Multiple brace root phenotypes promote anchorage and limit root lodging in maize
Journal: Plant, Cell & Environment
Year: 2022
Guest: Ashley Hostetler
Host: Arif Ashraf

Abstract

Plant mechanical failure (lodging) causes global yield losses of 7%−66% in cereal crops. We have previously shown that the above-ground nodal roots (brace roots) in maize are critical for anchorage. However, it is unknown how brace root phenotypes vary across genotypes and the functional consequence of this variation. This study quantifies the contribution of brace roots to anchorage, brace root traits, plant height, and root lodging susceptibility in 52 maize inbred lines. We show that the contribution of brace roots to anchorage and root lodging susceptibility varies among genotypes and this contribution can be explained by plant architectural variation. Additionally, supervised machine learning models were developed and show that multiple plant architectural phenotypes can predict the contribution of brace roots to anchorage and root lodging susceptibility. Together these data define the plant architectures that are important in lodging resistance and show that the contribution of brace roots to anchorage is a good proxy for root lodging susceptibility.

Cover art design and audio editing: Ragib Anjum

  continue reading

30 episodios

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