Early evolution of the land plant circadian clock AM Linde, DM Eklund, A Kubota, ERA Pederson, K Holm, N Gyllenstrand, ... New Phytologist 216 (2), 576-590, 2017 | 95 | 2017 |
Heterogeneity of cellular circadian clocks in intact plants and its correction under light-dark cycles T Muranaka, T Oyama Science advances 2 (7), e1600500, 2016 | 69 | 2016 |
Circadian regulation of the plant transcriptome under natural conditions PE Panter, T Muranaka, D Cuitun-Coronado, CA Graham, A Yochikawa, ... Frontiers in Genetics 10, 1239, 2019 | 40 | 2019 |
Characterisation of circadian rhythms of various duckweeds T Muranaka, M Okada, J Yomo, S Kubota, T Oyama Plant Biology 17, 66-74, 2015 | 38 | 2015 |
A single-cell bioluminescence imaging system for monitoring cellular gene expression in a plant body T Muranaka, S Kubota, T Oyama Plant and cell physiology 54 (12), 2085-2093, 2013 | 35 | 2013 |
Synchrony of plant cellular circadian clocks with heterogeneous properties under light/dark cycles M Okada, T Muranaka, S Ito, T Oyama Scientific Reports 7 (1), 317, 2017 | 29 | 2017 |
How does time flow in living systems? Retrocausal scaffolding and E-series time N Nomura, K Matsuno, T Muranaka, J Tomita Biosemiotics 12, 267-287, 2019 | 18 | 2019 |
Monitoring circadian rhythms of individual cells in plants T Muranaka, T Oyama Journal of plant research 131, 15-21, 2018 | 15 | 2018 |
Time from semiosis: E-series time for living systems N Nomura, T Muranaka, J Tomita, K Matsuno Biosemiotics 11, 65-83, 2018 | 14 | 2018 |
Characterization of Frond and Flower Development and Identification of FT and FD Genes From Duckweed Lemna aequinoctialis Nd A Yoshida, K Taoka, A Hosaka, K Tanaka, H Kobayashi, T Muranaka, ... Frontiers in Plant Science 12, 697206, 2021 | 11 | 2021 |
Detection of Uncoupled Circadian Rhythms in Individual Cells of Lemna minor using a Dual-Color Bioluminescence Monitoring System E Watanabe, M Isoda, T Muranaka, S Ito, T Oyama Plant and Cell Physiology 62 (5), 815-826, 2021 | 9 | 2021 |
Application of single-cell bioluminescent imaging to monitor circadian rhythms of individual plant cells T Muranaka, T Oyama Bioluminescent imaging: methods and protocols, 231-242, 2020 | 9 | 2020 |
Multifunctional chemical inhibitors of the florigen activation complex discovered by structure‐based high‐throughput screening K Taoka, I Kawahara, S Shinya, K Harada, E Yamashita, Z Shimatani, ... The Plant Journal 112 (6), 1337-1349, 2022 | 7 | 2022 |
Toward a practical theory of timing: Upbeat and E-series time for organisms N Nomura, K Matsuno, T Muranaka, J Tomita Biosemiotics 13, 347-367, 2020 | 5 | 2020 |
Circadian-period variation underlies the local adaptation of photoperiodism in the short-day plant Lemna aequinoctialis T Muranaka, S Ito, H Kudoh, T Oyama Iscience 25 (7), 2022 | 4 | 2022 |
A non-cell-autonomous circadian rhythm of bioluminescence reporter activities in individual duckweed cells E Watanabe, T Muranaka, S Nakamura, M Isoda, Y Horikawa, T Aiso, S Ito, ... Plant Physiology 193 (1), 677-688, 2023 | 3 | 2023 |
Circadian and environmental signal transduction in a natural population of Arabidopsis DL Cano-Ramirez, H Nishio, T Muranaka, LL de Barros Dantas, ... bioRxiv, 2022.09. 10.507414, 2022 | 2 | 2022 |
Seasonal switching of integrated leaf senescence controls in an evergreen perennial Arabidopsis G Yumoto, H Nishio, T Muranaka, J Sugisaka, MN Honjo, H Kudoh Nature Communications 15 (1), 4719, 2024 | | 2024 |
Complexities, similarities, and differences in circadian regulation in the green lineage: A session concerning circadian regulation in unpredictable environments, at the 33rd … AE Maeda, T Muranaka, N Nakamichi, T Oyama, AN Dodd The New phytologist 241 (1), 28-31, 2024 | | 2024 |
Effects of fruit dimorphism on genetic structure and gene flow in the coastal shrub Scaevola taccada N Emura, T Muranaka, T Iwasaki, MN Honjo, AJ Nagano, Y Isagi, ... Annals of Botany 130 (7), 1029-1040, 2022 | | 2022 |