Root phenotyping: important and minimum information required for root modeling in crop plants
Author:
Affiliation:
1. Graduate School of Bioagricultural Sciences, Nagoya University
2. UMR AGAP, CIRAD
3. Inria & LIRMM, University of Montpellier
Publisher
Japanese Society of Breeding
Subject
Plant Science,Genetics,Agronomy and Crop Science
Link
https://www.jstage.jst.go.jp/article/jsbbs/71/1/71_20126/_pdf
Reference68 articles.
1. Atkinson, J.A., M.P. Pound, M.J. Bennett and D.M. Wells (2019) Uncovering the hidden half of plants using new advances in root phenotyping. Curr. Opin. Biotechnol. 55: 1–8.
2. Balduzzi, M., B.M. Binder, A. Bucksch, C. Chang, L. Hong, A.S. Iyer-Pascuzzi, C. Pradal and E.E. Sparks (2017) Reshaping plant biology: qualitative and quantitative descriptors for plant morphology. Front. Plant Sci. 8: 117.
3. Bao, Y., P. Aggarwal, N.E. Robbins, C.J. Sturrock, M.C. Thompson, H.Q. Tan, C. Tham, L. Duan, P.L. Rodriguez, T. Vernoux et al. (2014) Plant roots use a patterning mechanism to position lateral root branches toward available water. Proc. Natl. Acad. Sci. USA 111: 9319–9324.
4. Barczi, J.-F., H. Rey, S. Griffon and C. Jourdan (2018) DigR: a generic model and its open source simulation software to mimic three-dimensional root-system architecture diversity. Ann. Bot. 121: 1089–1104.
5. Barthélémy, D. and Y. Caraglio (2007) Plant architecture: a dynamic, multilevel and comprehensive approach to plant form, structure and ontogeny. Ann. Bot. 99: 375–407.
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