Genetic improvement for root growth angle to enhance crop production
Author:
Affiliation:
1. National Institute of Agrobiological Sciences (NIAS)
2. National Institute of Agro-Environmental Sciences (NIAES)
3. Present address: NARO Institute of Crop Science (NICS)
Publisher
Japanese Society of Breeding
Subject
Plant Science,Genetics,Agronomy and Crop Science
Link
https://www.jstage.jst.go.jp/article/jsbbs/65/2/65_111/_pdf
Reference108 articles.
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2. Abe, T., F. Taguchi-Shiobara, Y. Kojima, T. Ebitani, M. Kuramata, T. Yamamoto, M. Yano and S. Ishikawa (2011) Detection of a QTL for accumulating Cd in rice that enables efficient Cd phytoextraction from soil. Breed. Sci. 61: 43–51.
3. Arai-Sanoh, Y., T. Takai, S. Yoshinaga, H. Nakano, M. Kojima, H. Sakakibara, M. Kondo and Y. Uga (2014) Deep rooting conferred by DEEPER ROOTING 1 enhances rice yield in paddy fields. Sci. Rep. 4: 5563.
4. Araki, H., S. Morita, J. Tatsumi and M. Iijima (2002) Physiomorphological analysis on axile root growth in upland rice. Plant Prod. Sci. 5: 286–293.
5. Bernier, J., A. Kumar, V. Ramaiah, D. Spaner and G. Atlin (2007) A large-effect QTL for grain yield under reproductive-stage drought stress in upland rice. Crop Sci. 47: 507–516.
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