<i>De novo</i> transcriptome analysis reveals an unperturbed transcriptome under high cadmium conditions in the Cd-hypertolerant fern <i>Athyrium yokoscense</i>Yuko Ukai, Hiroaki Shimada, Komaki Inoue et al.|Genes & Genetic Systems|2020Cited by 12
Athyrium yokoscense, a cadmium-hypertolerant fern, exhibits two cadmium stress mitigation strategies in its roots and aerial partsYuko Ukai, Hiroaki Shimada, Kazuyoshi Kitazaki et al.|Journal of Plant Research|2024Cited by 4
Rice OsHAK5 is a major potassium transporter that functions in potassium uptake with high specificity but contributes less to cesium uptakeMinato Uchiyama, Hiroaki Shimada, Rika Fudaki et al.|Bioscience Biotechnology and Biochemistry|2022Cited by 3
Microscopic analysis of the roots of Athyrium yokoscense to determine the mechanism of the cadmium toleranceYuko Ukai, Hiroaki Shimada, Manaka Kamada et al.|The Japanese Biochemical Society/The Molecular Biology Society of Japan|2017Cited by 0
The cadmium-hypertolerant fern, <i>Athyrium yokoscense</i> , exhibits two cadmium stress mitigation strategies in the roots and the aerial partsYuko Ukai, Hiroaki Shimada, Hiroki Taoka et al.|bioRxiv (Cold Spring Harbor Laboratory)|2023Cited by 0