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Functional Plant Biology : FPB|June 3, 2020
Suppression of starch synthesis in rice stems splays tiller angle due to gravitropic insensitivity but does not affect yieldMasaki Okamura, Tatsuro Hirose, Yoichi Hashida, et al.
Plant Molecular Biology|March 28, 2025
Simulation study of factors affecting the accuracy of transcriptome models under complex environmentsDan Eiju, Yoichi Hashida, Taro Maeda, et al.
Plant Science : an International Journal of Experimental Plant Biology|December 15, 2016
A reduction of sucrose phosphate synthase (SPS) activity affects sucrose/starch ratio in leaves but does not inhibit normal plant growth in riceYoichi Hashida, Tatsuro Hirose, Masaki Okamura, et al.
Plant, Cell & Environment|May 24, 2022
Fillable and unfillable gaps in plant transcriptome under field and controlled environmentsYoichi Hashida, Ayumi Tezuka, Yasuyuki Nomura, et al.
Genome Biology|July 29, 2025
Field-crop transcriptome models are enhanced by measurements in systematically controlled environmentsYoichi Hashida, Daisuke Kyogoku, Suguru E Tanaka, et al.
Plant Science : an International Journal of Experimental Plant Biology|July 15, 2014
Analysis of gene-disruption mutants of a sucrose phosphate synthase gene in rice, OsSPS1, shows the importance of sucrose synthesis in pollen germinationTatsuro Hirose, Yoichi Hashida, Naohiro Aoki, et al.
Rice (New York, N.Y.)|January 19, 2018
Genetic Evidence for the Role of a Rice Vacuolar Invertase as a Molecular Sink Strength DeterminantShamitha Rao Morey, Tatsuro Hirose, Yoichi Hashida, et al.
Functional Plant Biology : FPB|May 3, 2019
Characterisation of a rice vacuolar invertase isoform, OsINV2, for growth and yield-related traitsShamitha R Morey, Tatsuro Hirose, Yoichi Hashida, et al.
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