Form follows function in Triticeae inflorescences
Author:
Affiliation:
1. Faculty of Agriculture, Tottori University
2. Research Group Plant Architecture, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK)
Publisher
Japanese Society of Breeding
Subject
Plant Science,Genetics,Agronomy and Crop Science
Link
https://www.jstage.jst.go.jp/article/jsbbs/73/1/73_22085/_pdf
Reference94 articles.
1. Adamski, N.M., J. Simmonds, J.F. Brinton, A.E. Backhaus, Y. Chen, M. Smedley, S. Hayta, T. Florio, P. Crane, P. Scott et al. (2021) Ectopic expression of Triticum polonicum VRT-A2 underlies elongated glumes and grains in hexaploid wheat in a dosage-dependent manner. Plant Cell 33: 2296–2319.
2. Amagai, Y., A.J. Aliyeva, N.K. Aminov, P. Martinek, N. Watanabe and T. Kuboyama (2014) Microsatellite mapping of the genes for sham ramification and extra glume in spikelets of tetraploid wheat. Genet Resour Crop Evol 61: 491–498.
3. Amagai, Y., A.J. Aliyeva, N.K. Aminov, P. Martinek, N. Watanabe and T. Kuboyama (2015) Microsatellite mapping of the gene for sham ramification in spikelets derived from a hexaploid wheat (Triticum spp.) accession 171ACS. Genet Resour Crop Evol 62: 1079–1084.
4. Anwar, N., M. Ohta, T. Yazawa, Y. Sato, C. Li, A. Tagiri, M. Sakuma, T. Nussbaumer, P. Bregitzer, M. Pourkheirandish et al. (2018) miR172 downregulates the translation of cleistogamy 1 in barley. Ann Bot 122: 251–265.
5. AuBuchon-Elder, T., V. Coneva, D.M. Goad, L.M. Jenkins, Y. Yu, D.K. Allen and E.A. Kellogg (2020) Sterile spikelets contribute to yield in sorghum and related grasses. Plant Cell 32: 3500–3518.
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