Asako Kobayashi, Mao Suganami, Hideki Yoshida, Yoichi Morinaka, Syuto Watanabe, Yoshie Machida, Genki Chaya, Fumihiro Nakaoka, Nobuhito Sato, Kotaro Miura, et al. How have breeders adapted rice flowering to the growing region?. Journal of Integrative Plant Biology. 2024
Mao Suganami, Hideki Yoshida, Shinya Yoshida, Mayuko Kawamura, Eriko Koketsu, Makoto Matsuoka, Soichi Kojima. Redefining awn development in rice through the breeding history of Japanese awn reduction. Frontiers in Plant Science. 2024. 15
Mao Suganami, Soichi Kojima, Hideki Yoshida, Masaki Mori, Mayuko Kawamura, Eriko Koketsu, Makoto Matsuoka. Low mutation rate of spontaneous mutants enables detection of causative genes by comparing whole genome sequences. Frontiers in plant science. 2024. 15. 1366413-1366413
Mao SUGANAMI, Hidekazu TAKAHASHI, Naoto NIHEI, Hideki YOSHIDA, Soichi KOJIMA, Masao WATANABE, Tsukasa MATSUDA, Makoto MATSUOKA. Establishment of Population Consisted of Japanese Soybeans for GWAS. Tohoku Journal of Crop Science. 2023. 66. 66. 41-42
Mao Suganami, Soichi Kojima, Fanmiao Wang, Hideki Yoshida, Kotaro Miura, Yoichi Morinaka, Masao Watanabe, Tsukasa Matsuda, Eiji Yamamoto, Makoto Matsuoka. Effective use of legacy data in a genome-wide association studies improves the credibility of quantitative trait loci detection in rice. Plant Physiology. 2023
Suganami Mao. The study on Rubisco and Rubisco activase for the enhancement of photosynthesis in rice plants. Japanese Journal of Soil Science and Plant Nutrition. 2024. 95. 5. 266-267
Suganami Mao, Kojima Soichi, Yoshida Hideki, Matsuoka Makoto. Proposal of an in silico approach to identify the causative gene of natural spontaneous mutants by whole genome sequence comparison. Abstracts of Meeting of the CSSJ. 2024. 258. 119-119
菅波 眞央. 青ダイズの低い生産性に関わる早期光合成低下の原因究明-Investigating the Cause of Early Decline in Photosynthesis in Green Soybean-第26回研究報告会記録. 大豆たん白質研究 / 不二たん白質研究振興財団 [編]. 2024. 26. 44. 164-168
松田, 幹, 松岡, 信, 小山, 良太, 藤井, 力, 高橋, 秀和, 吉田, 英樹, 菅波, 眞央, 北野, 英己, 吉田, 晋弥. 令和3年度福島大学重点研究分野「foR-Fプロジェクト」に指定された『ゲノム科学・技術を援用した栽培・発酵好適性イネ系統の開発基盤研究』-Fundamental research on the development of rice strains suitable for cultivation and fermentation using genome science and technology. 福島大学地域創造. 2024. 35. 2. 1-3