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Original

Period2 Expression Pattern and its Role in the Development of the Pineal Circadian Clock in Zebrafish

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Pages 101-112 | Published online: 07 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (9)

Saurav Saha, Kshetrimayum Manisana Singh & Braj Bansh Prasad Gupta. (2022) Circadian rhythm of expression of core clock genes in the photosensitive pineal organ of catfish, Clarias gariepinus under different photoperiodic regimes. Biological Rhythm Research 53:2, pages 258-282.
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Saurav Saha, Kshetrimayum Manisana Singh & Braj Bansh Prasad Gupta. (2020) Season-dependent differential effect of temperature on diurnal rhythm of expression of core clock genes in the pineal organ of an air-breathing catfish, Clarias gariepinus. Biological Rhythm Research 51:1, pages 120-138.
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Águeda J. Martín-Robles, María Aliaga-Guerrero, David Whitmore,Carlos Pendón & José A. Muñoz-Cueto. (2012) The Circadian Clock Machinery During Early Development of Senegalese sole (Solea senegalensis): Effects of Constant Light and Dark Conditions. Chronobiology International 29:9, pages 1195-1205.
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Tien-sheng Huang, Peter Ruoff & Per G. Fjelldal. (2010) DIURNAL EXPRESSION OF CLOCK GENES IN PINEAL GLAND AND BRAIN AND PLASMA LEVELS OF MELATONIN AND CORTISOL IN ATLANTIC SALMON PARR AND SMOLTS. Chronobiology International 27:9-10, pages 1697-1714.
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Andrew Davie, Matteo Minghetti & Herve Migaud. (2009) Seasonal Variations in Clock‐Gene Expression in Atlantic Salmon (Salmo salar). Chronobiology International 26:3, pages 379-395.
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Caridad Meseguer, Jesus Ramos, Maria José Bayarri, Catarina Oliveira & Francisco Javier Sánchez‐Vázquez. (2008) Light Synchronization of the Daily Spawning Rhythms of Gilthead Sea bream (Sparus aurata L) Kept under Different Photoperiod and after Shifting the LD Cycle. Chronobiology International 25:5, pages 666-679.
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Carlos Christian Martinez‐Chavez, Sammi Al‐Khamees, Antonio Campos‐Mendoza, David James Penman & Herve Migaud. (2008) Clock‐Controlled Endogenous Melatonin Rhythms in Nile Tilapia (Oreochromis niloticus niloticus) and African Catfish (Clarias gariepinus). Chronobiology International 25:1, pages 31-49.
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Catarina Oliveira, Aurelio Ortega, José Fernando López‐Olmeda, Luisa María Vera & Francisco Javier Sánchez‐Vázquez. (2007) Influence of Constant Light and Darkness, Light Intensity, and Light Spectrum on Plasma Melatonin Rhythms in Senegal Sole. Chronobiology International 24:4, pages 615-627.
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Articles from other publishers (23)

Fei Kong, Jiazheng Shang, Zhaoshou Ran, Mengqi Zhang, Kai Liao, Jilin Xu & Xiaojun Yan. (2023) Light entrainment and molecular regulation of the circadian clock in razor clam Sinonovacula constricta. Aquaculture 564, pages 739072.
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Marcus P S Dekens, Bruno M Fontinha, Miguel Gallach, Sandra Pflügler & Kristin Tessmar‐Raible. (2022) Melanopsin elevates locomotor activity during the wake state of the diurnal zebrafish. EMBO reports 23:5.
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Saurav Saha, Kshetrimayum Manisana Singh & Braj Bansh Prasad Gupta. (2019) Melatonin synthesis and clock gene regulation in the pineal organ of teleost fish compared to mammals: Similarities and differences. General and Comparative Endocrinology 279, pages 27-34.
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Da-long Ren, Jun-long Zhang, Lei-qing Yang, Xiao-bo Wang, Zong-yi Wang, Deng-feng Huang, Chen Tian & Bing Hu. (2018) Circadian genes period1b and period2 differentially regulate inflammatory responses in zebrafish. Fish & Shellfish Immunology 77, pages 139-146.
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Gregory L. Willis & Christopher B. Freelance. (2017) The effect of directed photic stimulation of the pineal on experimental Parkinson's disease. Physiology & Behavior 182, pages 1-9.
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M. Yúfera, E. Perera, J. A. Mata-Sotres, J. Calduch-Giner, G. Martínez-Rodríguez & J. Pérez-Sánchez. (2017) The circadian transcriptome of marine fish (Sparus aurata) larvae reveals highly synchronized biological processes at the whole organism level. Scientific Reports 7:1.
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Makoto Mogi, Hayato Yokoi & Tohru Suzuki. (2017) Analyses of the cellular clock gene expression in peripheral tissue, caudal fin, in the Japanese flounder, Paralichthys olivaceus. General and Comparative Endocrinology 248, pages 97-105.
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Michael T. Sellix. 2016. Circadian Clocks: Role in Health and Disease. Circadian Clocks: Role in Health and Disease 57 102 .
Maristela O. Poletini, Bruno C. Ramos, Maria Nathalia Moraes & Ana Maria L. Castrucci. (2015) Nonvisual Opsins and the Regulation of Peripheral Clocks by Light and Hormones. Photochemistry and Photobiology 91:5, pages 1046-1055.
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Maria Nathália Moraes, Bruno C. Ramos, Maristela O. Poletini & Ana Maria L. Castrucci. (2015) Melanopsins: Localization and Phototransduction in Xenopus laevis Melanophores . Photochemistry and Photobiology 91:5, pages 1133-1141.
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Mingyong Wang, Zhaomin Zhong, Yingbin Zhong, Wei Zhang & Han Wang. (2015) The Zebrafish Period2 Protein Positively Regulates the Circadian Clock through Mediation of Retinoic Acid Receptor (RAR)-related Orphan Receptor α (Rorα). Journal of Biological Chemistry 290:7, pages 4367-4382.
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Bruno C. R. Ramos, Maria Nathália C. M. Moraes, Maristela O. Poletini, Leonardo H. R. G. Lima & Ana Maria L. Castrucci. (2014) From Blue Light to Clock Genes in Zebrafish ZEM-2S Cells. PLoS ONE 9:9, pages e106252.
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Po-Nien Lu, Caroline Lund, Sataree Khuansuwan, Adelle Schumann, Marijah Harney-Tolo, Joshua T. Gamse & Jennifer O. Liang. (2013) Failure in closure of the anterior neural tube causes left isomerization of the zebrafish epithalamus. Developmental Biology 374:2, pages 333-344.
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P. Herrera-Pérez, A. Servili, M.C. Rendón, F.J. Sánchez-Vázquez, J. Falcón & J.A. Muñoz-Cueto. (2011) The pineal complex of the European sea bass (Dicentrarchus labrax): I. Histological, immunohistochemical and qPCR study. Journal of Chemical Neuroanatomy 41:3, pages 170-180.
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Silke Rinkwitz, Philippe Mourrain & Thomas S. Becker. (2011) Zebrafish: An integrative system for neurogenomics and neurosciences. Progress in Neurobiology 93:2, pages 231-243.
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Catarina Oliveira & Francisco S√°nchez-V√°zquez. 2010. Biological Clock in Fish. Biological Clock in Fish 185 215 .
H. Migaud, A. Davie & J. F. Taylor. (2010) Current knowledge on the photoneuroendocrine regulation of reproduction in temperate fish species. Journal of Fish Biology 76:1, pages 27-68.
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J. Yáñez, J. Busch, R. Anadón & H. Meissl. (2009) Pineal projections in the zebrafish (Danio rerio): overlap with retinal and cerebellar projections. Neuroscience 164:4, pages 1712-1720.
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B. Blanco-Vives & F.J. Sánchez-Vázquez. (2009) Synchronisation to light and feeding time of circadian rhythms of spawning and locomotor activity in zebrafish. Physiology & Behavior 98:3, pages 268-275.
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Catarina Oliveira, Eva M. Garcia, José Fernando López-Olmeda & Francisco Javier Sánchez-Vázquez. (2009) Daily and circadian melatonin release in vitro by the pineal organ of two nocturnal teleost species: Senegal sole (Solea senegalensis) and tench (Tinca tinca). Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology 153:3, pages 297-302.
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Andras D. Nagy, Siri Kommedal, Karishma Seomangal & Valer J. Csernus. (2009) Circadian Expression of Clock Genes Clock and Cry1 in the Embryonic Chicken Pineal Gland . Annals of the New York Academy of Sciences 1163:1, pages 484-487.
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Lain X. Pierce, Ramil R. Noche, Olga Ponomareva, Christopher Chang & Jennifer O. Liang. (2008) Novel functions for Period 3 and Exo-rhodopsin in rhythmic transcription and melatonin biosynthesis within the zebrafish pineal organ. Brain Research 1223, pages 11-24.
Crossref
Lain X. PierceDavid HarrisonJennifer Ostrom Liang. (2007) The Time Reaper 5-Channel Automatic Liquid Dispenser: A New Tool for Studying Zebrafish Development. Zebrafish 4:3, pages 169-177.
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