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Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )

Crops with reduced nutrient and water requirements are urgently needed in global agriculture. Root growth angle plays an important role in nutrient and water acquisition. A maize diversity panel of 481 genotypes was screened for variation in root angle employing a high‐throughput field phenotyping p...

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Autores principales: Schneider, Hannah M., Lor, Vai Sa Nee, Hanlon, Meredith T., Perkins, Alden, Kaeppler, Shawn M., Borkar, Aditi N., Bhosale, Rahul, Zhang, Xia, Rodriguez, Jonas, Bucksch, Alexander, Bennett, Malcolm J., Brown, Kathleen M., Lynch, Jonathan P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9544310/
https://www.ncbi.nlm.nih.gov/pubmed/34169548
http://dx.doi.org/10.1111/pce.14135
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author Schneider, Hannah M.
Lor, Vai Sa Nee
Hanlon, Meredith T.
Perkins, Alden
Kaeppler, Shawn M.
Borkar, Aditi N.
Bhosale, Rahul
Zhang, Xia
Rodriguez, Jonas
Bucksch, Alexander
Bennett, Malcolm J.
Brown, Kathleen M.
Lynch, Jonathan P.
author_facet Schneider, Hannah M.
Lor, Vai Sa Nee
Hanlon, Meredith T.
Perkins, Alden
Kaeppler, Shawn M.
Borkar, Aditi N.
Bhosale, Rahul
Zhang, Xia
Rodriguez, Jonas
Bucksch, Alexander
Bennett, Malcolm J.
Brown, Kathleen M.
Lynch, Jonathan P.
author_sort Schneider, Hannah M.
collection PubMed
description Crops with reduced nutrient and water requirements are urgently needed in global agriculture. Root growth angle plays an important role in nutrient and water acquisition. A maize diversity panel of 481 genotypes was screened for variation in root angle employing a high‐throughput field phenotyping platform. Genome‐wide association mapping identified several single nucleotide polymorphisms (SNPs) associated with root angle, including one located in the root expressed CBL‐interacting serine/threonine‐protein kinase 15 (ZmCIPK15) gene (LOC100285495). Reverse genetic studies validated the functional importance of ZmCIPK15, causing a approximately 10° change in root angle in specific nodal positions. A steeper root growth angle improved nitrogen capture in silico and in the field. OpenSimRoot simulations predicted at 40 days of growth that this change in angle would improve nitrogen uptake by 11% and plant biomass by 4% in low nitrogen conditions. In field studies under suboptimal N availability, the cipk15 mutant with steeper growth angles had 18% greater shoot biomass and 29% greater shoot nitrogen accumulation compared to the wild type after 70 days of growth. We propose that a steeper root growth angle modulated by ZmCIPK15 will facilitate efforts to develop new crop varieties with optimal root architecture for improved performance under edaphic stress.
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spelling pubmed-95443102022-10-14 Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 ) Schneider, Hannah M. Lor, Vai Sa Nee Hanlon, Meredith T. Perkins, Alden Kaeppler, Shawn M. Borkar, Aditi N. Bhosale, Rahul Zhang, Xia Rodriguez, Jonas Bucksch, Alexander Bennett, Malcolm J. Brown, Kathleen M. Lynch, Jonathan P. Plant Cell Environ Original Articles Crops with reduced nutrient and water requirements are urgently needed in global agriculture. Root growth angle plays an important role in nutrient and water acquisition. A maize diversity panel of 481 genotypes was screened for variation in root angle employing a high‐throughput field phenotyping platform. Genome‐wide association mapping identified several single nucleotide polymorphisms (SNPs) associated with root angle, including one located in the root expressed CBL‐interacting serine/threonine‐protein kinase 15 (ZmCIPK15) gene (LOC100285495). Reverse genetic studies validated the functional importance of ZmCIPK15, causing a approximately 10° change in root angle in specific nodal positions. A steeper root growth angle improved nitrogen capture in silico and in the field. OpenSimRoot simulations predicted at 40 days of growth that this change in angle would improve nitrogen uptake by 11% and plant biomass by 4% in low nitrogen conditions. In field studies under suboptimal N availability, the cipk15 mutant with steeper growth angles had 18% greater shoot biomass and 29% greater shoot nitrogen accumulation compared to the wild type after 70 days of growth. We propose that a steeper root growth angle modulated by ZmCIPK15 will facilitate efforts to develop new crop varieties with optimal root architecture for improved performance under edaphic stress. John Wiley and Sons Inc. 2021-07-08 2022-03 /pmc/articles/PMC9544310/ /pubmed/34169548 http://dx.doi.org/10.1111/pce.14135 Text en © 2021 The Authors. Plant, Cell & Environment published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Schneider, Hannah M.
Lor, Vai Sa Nee
Hanlon, Meredith T.
Perkins, Alden
Kaeppler, Shawn M.
Borkar, Aditi N.
Bhosale, Rahul
Zhang, Xia
Rodriguez, Jonas
Bucksch, Alexander
Bennett, Malcolm J.
Brown, Kathleen M.
Lynch, Jonathan P.
Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )
title Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )
title_full Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )
title_fullStr Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )
title_full_unstemmed Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )
title_short Root angle in maize influences nitrogen capture and is regulated by calcineurin B‐like protein (CBL)‐interacting serine/threonine‐protein kinase 15 ( ZmCIPK15 )
title_sort root angle in maize influences nitrogen capture and is regulated by calcineurin b‐like protein (cbl)‐interacting serine/threonine‐protein kinase 15 ( zmcipk15 )
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9544310/
https://www.ncbi.nlm.nih.gov/pubmed/34169548
http://dx.doi.org/10.1111/pce.14135
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