Unstable Phase Response Curves Shown by Spatiotemporal Patterns in the Plant Root Circadian Clock

Bordage, S, Sullivan, S, Laird, J, Millar, AJ, Nimmo, HG (2016) Organ specificity in the plant circadian system is explained by different light inputs to the shoot and root clocks. New Phytol 212:136-149.
Google Scholar | Crossref | Medline Creux, N, Harmer, S (2019) Circadian rhythms in plants. Cold Spring Harb Perspect Biol 11:a034611.
Google Scholar | Crossref | Medline Davis, AM, Ronald, J, Ma, Z, Wilkinson, AJ, Philippou, K, Shindo, T, Queitsch, C, Davis, SJ (2018) HSP90 contributes to entrainment of the Arabidopsis circadian clock via the morning loop. Genetics 210:1383-1390.
Google Scholar | Crossref | Medline Dodd, AN, Kusakina, J, Hall, A, Gould, PD, Hanaoka, M (2014) The circadian regulation of photosynthesis. Photosynth Res 119:181-190.
Google Scholar | Crossref | Medline Endo, M, Shimizu, H, Nohales, MA, Araki, T, Kay, SA (2014) Tissue-specific clocks in Arabidopsis show asymmetric coupling. Nature 515:419-422.
Google Scholar | Crossref | Medline Flis, A, Sulpice, R, Seaton, DD, Ivakov, AA, Liput, M, Abel, C, Millar, AJ, Stitt, M (2016) Photoperiod-dependent changes in the phase of core clock transcripts and global transcriptional outputs at dawn and dusk in Arabidopsis. Plant Cell Environ 39:1955-1981.
Google Scholar | Crossref | Medline Fukuda, H, Murase, H, Tokuda, IT (2013) Controlling circadian rhythms by dark-pulse perturbations in Arabidopsis thaliana. Sci Rep 3:1533.
Google Scholar | Crossref | Medline Fukuda, H, Uchida, Y, Nakamichi, N (2008) Effect of a dark pulse under continuous red light on the Arabidopsis thaliana circadian rhythm. Environ Control Biol 46:123-128.
Google Scholar | Crossref Fukuda, H, Ukai, K, Oyama, T (2012) Self-arrangement of cellular circadian rhythms through phase-resetting in plant roots. Phys Rev E 86:041917.
Google Scholar | Crossref Gould, PD, Domijan, M, Greenwood, M, Tokuda, IT, Rees, H, Kozma-Bognar, L, Hall, AJW, Locke, JCW (2018) Coordination of robust single cell rhythms in the Arabidopsis circadian clock via spatial waves of gene expression. eLife 7:e31700.
Google Scholar | Crossref Granada, A, Hennig, RM, Ronacher, B, Kramer, A, Herzel, H (2009) Phase response curves elucidating the dynamics of coupled oscillators. Methods Enzymol 454:1-27.
Google Scholar | Crossref | Medline Greenwood, M, Domijan, M, Gould, PD, Hall, AJW, Locke, JCW (2019) Coordinated circadian timing through the integration of local inputs in Arabidopsis thaliana. PLoS Biology 17:e3000407.
Google Scholar | Crossref | Medline Haydon, MJ, Mielczarek, O, Robertson, FC, Hubbard, KE, Webb, AAR (2013) Photosynthetic entrainment of the Arabidopsis thaliana circadian clock. Nature 502:689-692.
Google Scholar | Crossref | Medline Johnson, CH, Elliott, JA, Foster, R (2003) Entrainment of circadian programs. Chronobiol Int 20:741-774.
Google Scholar | Crossref | Medline | ISI Kim, H, Kim, Y, Yeom, M, Lim, J, Nam, HG (2016) Age-associated circadian period changes in Arabidopsis leaves. J Exp Bot 67:2665-2673.
Google Scholar | Crossref | Medline Li, Y, Wang, L, Yuan, L, Song, Y, Sun, J, Jia, Q, Xie, Q, Xu, X (2020) Molecular investigation of organ-autonomous expression of Arabidopsis circadian oscillators. Plant Cell Environ 43:1501-1512.
Google Scholar | Crossref | Medline Masuda, K, Kitaoka, R, Ukai, K, Tokuda, IT, Fukuda, H (2017) Multicellularity enriches the entrainment of Arabidopsis circadian clock. Sci Adv 3:e1700808.
Google Scholar | Crossref | Medline Masuda, K, Tokuda, IT, Nakamichi, N, Fukuda, H (2021) The singularity response reveals entrainment properties of the plant circadian clock. Nat Commun 12:864.
Google Scholar | Crossref | Medline Michael, TP, Salomé, PA, McClung, CR (2003a) Two Arabidopsis circadian oscillators can be distinguished by differential temperature sensitivity. Proc Natl Acad Sci USA 100:6878-6883.
Google Scholar | Crossref | Medline Michael, TP, Salomé, PA, Hannah, JY, Spencer, TR, Sharp, EL, McPeek, MA, Alonso, JM, Ecker, JR, McClung, CR (2003b) Enhanced fitness conferred by naturally occurring variation in the circadian clock. Science 302:1049-1053.
Google Scholar | Crossref | Medline | ISI Muranaka, T, Oyama, T (2016) Heterogeneity of cellular circadian clocks in intact plants and its correction under light-dark cycles. Sci Adv 2:e1600500.
Google Scholar | Crossref | Medline Mwimba, M, Karapetyan, S, Liu, L, Marqués, J, McGinnis, EM, Buchler, NE, Dong, X (2018) Daily humidity oscillation regulates the circadian clock to influence plant physiology. Nat Commun 9:4290.
Google Scholar | Crossref | Medline Nakamichi, N, Ito, S, Oyama, T, Yamashino, T, Kondo, T, Mizuno, T (2004) Characterization of plant circadian rhythms by employing Arabidopsis cultured cells with bioluminescence reporters. Plant Cell Physiol 45:57-67.
Google Scholar | Crossref | Medline | ISI Okada, M, Muranaka, T, Ito, S, Oyama, T (2017) Synchrony of plant cellular circadian clocks with heterogeneous properties under light/dark cycles. Sci Rep 7:317.
Google Scholar | Crossref | Medline Salomé, PA, McClung, CR (2005) What makes the Arabidopsis clock tick on time? A review on entrainment. Plant Cell Environ 28:21-38.
Google Scholar | Crossref Seki, N, Tanigaki, Y, Yoshida, A, Fukuda, H (2018) Spatiotemporal analysis of localized circadian arrhythmias in plant roots. Environ Control Biol 56:93-97.
Google Scholar | Crossref Seki, N, Ukai, K, Higashi, T, Fukuda, H (2015) Entrainment of cellular circadian rhythms in Lactuca sativa L. Leaf by spatially controlled illuminations. J Biosens Bioelectron 6:186.
Google Scholar | Crossref Takahashi, N, Hirata, Y, Aihara, K, Mas, P (2015) A hierarchical multi-oscillator network orchestrates the Arabidopsis circadian system. Cell 163:148-159.
Google Scholar | Crossref | Medline | ISI Uehara, TN, Mizutani, Y, Kuwata, K, Hirota, T, Sato, A, Mizoi, J, Takao, S, Matsuo, H, Suzuki, T, Ito, S, et al. (2019) Casein kinase 1 family regulates PRR5 and TOC1 in the Arabidopsis circadian clock. Proc Natl Acad Sci USA 116:11528-11536.
Google Scholar | Crossref | Medline Voß, U, Wilson, MH, Kenobi, K, Gould, PD, Robertson, FC, Peer, WA, Lucas, M, Swarup, K, Casimiro, I, Holman, TJ, et al. (2015) The circadian clock rephases during lateral root organ initiation in Arabidopsis thaliana. Nat Commun 6:7641.
Google Scholar | Crossref | Medline Webb, AA, Seki, M, Satake, A, Caldana, C (2019) Continuous dynamic adjustment of the plant circadian oscillator. Nat Commun 10:550.
Google Scholar | Crossref | Medline Wenden, B, Toner, DLK, Hodge, SK, Grima, R, Millar, AJ (2012) Spontaneous spatiotemporal waves of gene expression from biological clocks in the leaf. Proc Natl Acad Sci USA 109:6757-6762.
Google Scholar | Crossref | Medline

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