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

Author:

Schneider Hannah M.1,Lor Vai Sa Nee2,Hanlon Meredith T.1,Perkins Alden1,Kaeppler Shawn M.2,Borkar Aditi N.3,Bhosale Rahul4,Zhang Xia2,Rodriguez Jonas2,Bucksch Alexander567,Bennett Malcolm J.4,Brown Kathleen M.1,Lynch Jonathan P.1ORCID

Affiliation:

1. Department of Plant Science The Pennsylvania State University University Park Pennsylvania USA

2. Department of Agronomy University of Wisconsin Madison Wisconsin USA

3. School of Veterinary Medicine and Science University of Nottingham Sutton Bonington UK

4. Future Food Beacon of Excellence and School of Biosciences University of Nottingham Nottingham UK

5. Department of Plant Biology University of Georgia Athens Georgia USA

6. Warnell School of Forestry and Natural Resources University of Georgia Athens Georgia USA

7. Institute of Bioinformatics University of Georgia Athens Georgia USA

Publisher

Wiley

Subject

Plant Science,Physiology

Reference97 articles.

1. Deep rooting conferred by DEEPER ROOTING 1 enhances rice yield in paddy fields;Arai‐sanoh Y.;Scientific Reports,2014

2. Inactivation of maize transposon mu suppresses a mutant phenotype by activating an outward‐reading promoter near the end of Mu1;Barkan A.;Proceedings of the National Academy of Sciences,1991

3. Bates D. Carey V. Dettling M. Dudoit S. Ellis B. Gautier L. … Huber W.(2002)Bioconductor. Retrieved fromhttp://www.bioconductor.org.

4. Genotypic variation for root traits of maize (Zea mays L.) from the Purhepecha plateau under contrasting phosphorus availability;Bayuelo‐Jiménez J. S.;Field Crops Research,2011

5. Effect of phosphorus deficiency on growth angle of basal roots in Phaseolus vulgaris;Bonser A.;New Phytologist,1996

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