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Plos One|July 22, 2024
Metabolic profiles in drought-tolerant wheat with enhanced abscisic acid sensitivityYuanjie Weng, Ryosuke Mega, Fumitaka Abe, et al.Plant Biotechnology (Tokyo, Japan)|July 10, 2025
Improvement of simultaneous genome editing of homoeologous loci in polyploid wheat using CRISPR/Cas9 applying tRNA processing systemShoya Komura, Mitsuko Kishi-Kaboshi, Fumitaka Abe, et al.Journal of Plant Physiology|April 9, 2014
Characterization of a wheat pathogenesis-related protein, TaBWPR-1.2, in seminal roots in response to waterlogging stressMd Emdadul Haque, Fumitaka Abe, Masahiko Mori, et al.Plant Biotechnology (Tokyo, Japan)|February 29, 2024
Optimizing genome editing efficiency in wheat: Effects of heat treatments and different promoters for single guide RNA expressionMitsuko Kishi-Kaboshi, Fumitaka Abe, Yoko Kamiya, et al.Scientific Reports|September 11, 2023
Metabolic and transcriptomic profiling during wheat seed development under progressive drought conditionsRyosuke Mega, June-Sik Kim, Hiroyuki Tanaka, et al.STAR Protocols|October 28, 2020
Protocol for Genome Editing to Produce Multiple Mutants in WheatFumitaka Abe, Yuji Ishida, Hiroshi Hisano, et al.Plant Biotechnology (Tokyo, Japan)|January 12, 2024
Modulation of wheat grain dormancy by introducing the recombinant abscisic acid-stimulated abscisic acid biosynthesis geneLipeng Zheng, Fumitaka Abe, Mariko Nonogaki, et al.Proteomes|March 3, 2017
Quantitative Proteomics of the Root of Transgenic Wheat Expressing <i>TaBWPR-1.2</i> Genes in Response to WaterloggingEmdadul Haque, Fumitaka Abe, Masahiko Mori, et al.Methods in Molecular Biology (Clifton, N.J.)|July 8, 2024
Genome Editing to Produce Knockout Mutations of Seed Dormancy Genes in WheatFumitaka Abe, Yoko Kamiya, Yuji Ishida, et al.Journal of Biotechnology|April 16, 2016
The cold-induced defensin TAD1 confers resistance against snow mold and Fusarium head blight in transgenic wheatKentaro Sasaki, Chikako Kuwabara, Natsuki Umeki, et al.Pageof 3