|
Ben-Moshe Livne, Z., Alon, S., Vallone, D., Bayleyen, Y., Tovin, A., Shainer, I., Nisembaum, L.G., Aviram, I., Smadja-Storz, S., Fuentes, M., Falcón, J., Eisenberg, E., Klein, D.C., Burgess, H.A., Foulkes, N.S., Gothilf, Y. (2016) Genetically Blocking the Zebrafish Pineal Clock Affects Circadian Behavior. PLoS Genetics. 12:e1006445
|
Blanc, M., Antczak, P., Cousin, X., Grunau, C., Scherbak, N., Rüegg, J., Keiter, S.H. (2021) The insecticide permethrin induces transgenerational behavioral changes linked to transcriptomic and epigenetic alterations in zebrafish (Danio rerio). The Science of the total environment. 779:146404
|
|
Braasch, I., Gehrke, A.R., Smith, J.J., Kawasaki, K., Manousaki, T., Pasquier, J., Amores, A., Desvignes, T., Batzel, P., Catchen, J., Berlin, A.M., Campbell, M.S., Barrell, D., Martin, K.J., Mulley, J.F., Ravi, V., Lee, A.P., Nakamura, T., Chalopin, D., Fan, S., Wcisel, D., Cañestro, C., Sydes, J., Beaudry, F.E., Sun, Y., Hertel, J., Beam, M.J., Fasold, M., Ishiyama, M., Johnson, J., Kehr, S., Lara, M., Letaw, J.H., Litman, G.W., Litman, R.T., Mikami, M., Ota, T., Saha, N.R., Williams, L., Stadler, P.F., Wang, H., Taylor, J.S., Fontenot, Q., Ferrara, A., Searle, S.M., Aken, B., Yandell, M., Schneider, I., Yoder, J.A., Volff, J.N., Meyer, A., Amemiya, C.T., Venkatesh, B., Holland, P.W., Guiguen, Y., Bobe, J., Shubin, N.H., Di Palma, F., Alföldi, J., Lindblad-Toh, K., Postlethwait, J.H. (2016) The spotted gar genome illuminates vertebrate evolution and facilitates human-teleost comparisons. Nature Genetics. 48(4):427-37
|
Cao, M., Xu, T., Zhang, H., Wei, S., Wang, H., Song, Y., Guo, X., Chen, D., Yin, D. (2023) BDE-47 Causes Depression-like Effects in Zebrafish Larvae via a Non-Image-Forming Visual Mechanism. Environmental science & technology. 57(26):9592-9602
|
|
Cavallari, N., Frigato, E., Vallone, D., Fröhlich, N., Lopez-Olmeda, J.F., Foà, A., Berti, R., Sánchez-Vázquez, F.J., Bertolucci, C., and Foulkes, N.S. (2011) A Blind Circadian Clock in Cavefish Reveals that Opsins Mediate Peripheral Clock Photoreception. PLoS Biology. 9(9):e1001142
|
Chaigne, C., Sapède, D., Cousin, X., Sanchou, L., Blader, P., Cau, E. (2024) Contribution of the eye and of opn4xa function to circadian photoentrainment in the diurnal zebrafish. PLoS Genetics. 20:e1011172e1011172
|
Chen, A., Chiu, C.N., Mosser, E.A., Kahn, S., Spence, R., Prober, D.A. (2016) QRFP and Its Receptors Regulate Locomotor Activity and Sleep in Zebrafish. The Journal of neuroscience : the official journal of the Society for Neuroscience. 36(6):1823-40
|
Chen, A.Q., Xue, M., Qiu, C.Z., Zhang, H.Y., Zhou, R., Zhang, L., Yin, Z.J., Ren, D.L. (2023) Circadian clock1a coordinates neutrophil recruitment via nfe212a/duox-reactive oxygen species pathway in zebrafish. Cell Reports. 42:113179113179
|
|
Confino, S., Dor, T., Tovin, A., Wexler, Y., Ben-Moshe Livne, Z., Kolker, M., Pisanty, O., Park, S.K., Geyer, N., Reiter, J., Edvardson, S., Mor-Shaked, H., Elpeleg, O., Vallone, D., Appelbaum, L., Foulkes, N.S., Gothilf, Y. (2022) A Zebrafish Model for a Rare Genetic Disease Reveals a Conserved Role for FBXL3 in the Circadian Clock System. International Journal of Molecular Sciences. 23(4):
|
Cruz, B.P., Brongar, L.F., Popiolek, P., Gonçalvez, B.S.B., Figueiredo, M.A., Amaral, I.P.G., Da Rosa, V.S., Nery, L.E.M., Marins, L.F. (2017) Clock genes expression and locomotor activity are altered along the light-dark cycle in transgenic zebrafish overexpressing growth hormone. Transgenic Research. 26(6):739-752
|
D'Agostino, Y., Frigato, E., Noviello, T.M.R., Toni, M., Frabetti, F., Cigliano, L., Ceccarelli, M., Sordino, P., Cerulo, L., Bertolucci, C., D'Aniello, S. (2022) Loss of circadian rhythmicity in bdnf knockout zebrafish larvae. iScience. 25:104054
|
Dao, P., Hajny, S., Mekis, R., Orel, L., Dinhopl, N., Tessmar-Raible, K., Nowikovsky, K. (2022) The cation exchanger Letm1, circadian rhythms, and NAD(H) levels interconnect in diurnal zebrafish. Life science alliance. 5(9)
|
|
DeBruyne, J., Hurd, M.W., Gutierrez, L., Kaneko, M., Tan, Y., Wells, D.E., and Cahill, G.M. (2004) Isolation and phenogenetics of a novel circadian rhythm mutant in zebrafish. Journal of neurogenetics. 18(2):403-428
|
|
|
|
Dickmeis, T., Lahiri, K., Nica, G., Vallone, D., Santoriello, C., Neumann, C.J., Hammerschmidt, M., and Foulkes, N.S. (2007) Glucocorticoids Play a Key Role in Circadian Cell Cycle Rhythms. PLoS Biology. 5(4):e78
|
Ding, H., Chen, X.C., Wan, L., Zhang, Y.Y., Rui, X.H., He, T., Liu, J., Shang, Z.B. (2024) Klebsiella pneumoniae alters zebrafish circadian rhythm via inflammatory pathways and is dependent on light cues. Heliyon. 10:e30829e30829
|
Doria, H.B., Ferreira, M.B., Rodrigues, S.D., Lo, S.M., Domingues, C.E., Nakao, L.S., de Campos, S.X., Ribeiro, C.A.O., Randi, M.A.F. (2018) Time does matter! Acute copper exposure abolishes rhythmicity of clock gene in Danio rerio. Ecotoxicology and environmental safety. 155:26-36
|
Du, L.Y., Darroch, H., Keerthisinghe, P., Ashimbayeva, E., Astin, J.W., Crosier, K.E., Crosier, P.S., Warman, G., Cheeseman, J., Hall, C.J. (2017) The innate immune cell response to bacterial infection in larval zebrafish is light-regulated. Scientific Reports. 7:12657
|
Egg, M., Köblitz, L., Hirayama, J., Schwerte, T., Folterbauer, C., Kurz, A., Fiechtner, B., Möst, M., Salvenmoser, W., Sassone-Corsi, P., and Pelster, B. (2013) Linking Oxygen to Time: The Bidirectional Interaction Between the Hypoxic Signaling Pathway and the Circadian Clock. Chronobiology International. 30(4):510-29
|
Egg, M., Paulitsch, M., Ennemoser, Y., Wüstenhagen, A., Schwerte, T., Sandbichler, A.M., Fiechtner, B., Köblitz, L., Prem, C., Pelster, B. (2014) Chronodisruption increases cardiovascular risk in zebrafish via reduced clearance of senescent erythrocytes. Chronobiology International. 31(5):680-9
|
Egg, M., Tischler, A., Schwerte, T., Sandbichler, A., Folterbauer, C., and Pelster, B. (2012) Endurance Exercise Modifies the Circadian Clock in Zebrafish (Danio rerio) Temperature Independently. Acta physiologica (Oxford, England). 205(1):167-176
|
Elkon, R., Milon, B., Morrison, L., Shah, M., Vijayakumar, S., Racherla, M., Leitch, C.C., Silipino, L., Hadi, S., Weiss-Gayet, M., Barras, E., Schmid, C.D., Ait-Lounis, A., Barnes, A., Song, Y., Eisenman, D.J., Eliyahu, E., Frolenkov, G.I., Strome, S.E., Durand, B., Zaghloul, N.A., Jones, S.M., Reith, W., Hertzano, R. (2015) RFX transcription factors are essential for hearing in mice. Nature communications. 6:8549
|
Fustin, J.M., Ye, S., Rakers, C., Kaneko, K., Fukumoto, K., Yamano, M., Versteven, M., Grünewald, E., Cargill, S.J., Tamai, T.K., Xu, Y., Jabbur, M.L., Kojima, R., Lamberti, M.L., Yoshioka-Kobayashi, K., Whitmore, D., Tammam, S., Howell, P.L., Kageyama, R., Matsuo, T., Stanewsky, R., Golombek, D.A., Johnson, C.H., Kakeya, H., van Ooijen, G., Okamura, H. (2020) Methylation deficiency disrupts biological rhythms from bacteria to humans. Communications biology. 3:211
|
|
|
Gavriouchkina, D., Fischer, S., Ivacevic, T., Stolte, J., Benes, V., and Dekens, M.P. (2010) Thyrotroph embryonic factor regulates light-induced transcription of repair genes in zebrafish embryonic cells. PLoS One. 5(9):e12542
|
|
Hirayama, J., Alifu, Y., Hamabe, R., Yamaguchi, S., Tomita, J., Maruyama, Y., Asaoka, Y., Nakahama, K.I., Tamaru, T., Takamatsu, K., Takamatsu, N., Hattori, A., Nishina, S., Azuma, N., Kawahara, A., Kume, K., Nishina, H. (2019) The clock components Period2, Cryptochrome1a, and Cryptochrome2a function in establishing light-dependent behavioral rhythms and/or total activity levels in zebrafish. Scientific Reports. 9:196
|
Huang, D.F., Wang, M.Y., Yin, W., Ma, Y.Q., Wang, H., Xue, T., Ren, D.L., Hu, B. (2018) Zebrafish Lacking Circadian Gene per2 Exhibit Visual Function Deficiency.. Frontiers in behavioral neuroscience. 12:53
|
|
Huang, J., Zhong, Z., Wang, M., Chen, X., Tan, Y., Zhang, S., He, W., He, X., Huang, G., Lu, H., Wu, P., Che, Y., Yan, Y.L., Postlethwait, J.H., Chen, W., Wang, H. (2015) Circadian modulation of dopamine levels and dopaminergic neuron development contributes to attention deficiency and hyperactive behavior. The Journal of neuroscience : the official journal of the Society for Neuroscience. 35:2572-87
|
|
Idda, M.L., Kage, E., Lopez-Olmedam, J.F., Mracek, P., Foulkes, N.S., and Vallone, D. (2012) Circadian timing of injury-induced cell proliferation in zebrafish. PLoS One. 7(3):e34203
|
|
Jerônimo, R., Moraes, M.N., de Assis, L.V.M., Ramos, B.C., Rocha, T., Castrucci, A.M.L. (2017) Thermal stress in Danio rerio: a link between temperature, light, thermo-TRP channels, and clock genes. Journal of thermal biology. 68:128-138
|
|
Khan, Z.A., Yumnamcha, T., Rajiv, C., Devi, H.S., Mondal, G., Dharmajyoti Devi, S., Bharali, R., Chattoraj, A. (2016) Melatonin Biosynthesizing Enzyme Genes and Clock Genes in Ovary and Whole Brain of Zebrafish (Danio rerio): Differential Expression and a Possible Interplay. General and comparative endocrinology. 233:16-31
|
Khezri, A., Fraser, T.W., Nourizadeh-Lillabadi, R., Kamstra, J.H., Berg, V., Zimmer, K.E., Ropstad, E. (2017) A Mixture of Persistent Organic Pollutants and Perfluorooctanesulfonic Acid Induces Similar Behavioural Responses, but Different Gene Expression Profiles in Zebrafish Larvae. International Journal of Molecular Sciences. 18(2)
|
Kopp, R., Billecke, N., Legradi, J., den Broeder, M., Parekh, S.H., Legler, J. (2016) Bringing obesity to light: Rev-erbα, a central player in light-induced adipogenesis in the zebrafish?. International journal of obesity (2005). 40(5):824-32
|
Kopp, R., Schwerte, T., Egg, M., Sandbichler, A.M., Egger, B., and Pelster, B. (2010) Chronic reduction in cardiac output induces hypoxic signaling in larval zebrafish even at a time when convective oxygen transport is not required. Physiological Genomics. 42(1):8-23
|
|
Lahiri, K., Vallone, D., Gondi, S.B., Santoriello, C., Dickmeis, T., and Foulkes, N.S. (2005) Temperature Regulates Transcription in the Zebrafish Circadian Clock. PLoS Genetics. 3(11):e351
|
|
Li, Y., Li, G., Görling, B., Luy, B., Du, J., Yan, J. (2015) Integrative Analysis of Circadian Transcriptome and Metabolic Network Reveals the Role of De Novo Purine Synthesis in Circadian Control of Cell Cycle. PLoS Computational Biology. 11:e1004086
|
Liang, Y.Q., Huang, G.Y., Zhao, J.L., Shi, W.J., Hu, L.X., Tian, F., Liu, S.S., Jiang, Y.X., Ying, G.G. (2017) Transcriptional alterations induced by binary mixtures of ethinylestradiol and norgestrel during the early development of zebrafish (Danio rerio). Comparative biochemistry and physiology. Toxicology & pharmacology : CBP. 195:60-67
|
Liang, Y.Q., Huang, G.Y., Zhen, Z., Tian, F., Hou, L., Lin, Z., Ying, G.G. (2019) The effects of binary mixtures of estradiol and progesterone on transcriptional expression profiles of genes involved in hypothalamic-pituitary-gonadal axis and circadian rhythm signaling in embryonic zebrafish (Danio rerio). Ecotoxicology and environmental safety. 174:540-548
|
|
Long, Y., Song, G., Yan, J., He, X., Li, Q., and Cui, Z. (2013) Transcriptomic characterization of cold acclimation in larval zebrafish. BMC Genomics. 14(1):612
|
Lui, E.Y., Li, C., Li, Z.H., Gong, Z., Lam, S.H. (2016) Molecular insights of organochlorine biocide-induced toxicity in zebrafish: Whole-adult-organism toxicogenomics, targeted gene expression and histological analyses. Journal of genetics and genomics = Yi chuan xue bao. 43(8):525-8
|
|
Morbiato, E., Frigato, E., Dinarello, A., Maradonna, F., Facchinello, N., Argenton, F., Carnevali, O., Dalla Valle, L., Bertolucci, C. (2019) Feeding Entrainment of the Zebrafish Circadian Clock Is Regulated by the Glucocorticoid Receptor. Cells. 8(11):
|
Mosser, E.A., Chiu, C.N., Tamai, T.K., Hirota, T., Li, S., Hui, M., Wang, A., Singh, C., Giovanni, A., Kay, S.A., Prober, D.A. (2019) Identification of pathways that regulate circadian rhythms using a larval zebrafish small molecule screen. Scientific Reports. 9:12405
|
Mracek, P., Santoriello, C., Idda, M.L., Pagano, C., Ben-Moshe, Z., Gothilf, Y., Vallone, D., and Foulkes, N.S. (2012) Regulation of per and cry Genes Reveals a Central Role for the D-Box Enhancer in Light-Dependent Gene Expression. PLoS One. 7(12):e51278
|
Nie, K., Wang, K., Huang, D.F., Huang, Y.B., Yin, W., Ren, D.L., Wang, H., Hu, B. (2017) Effects of circadian clock protein Per1b on zebrafish visual functions. Chronobiology International. 35(2):160-168
|
Pagano, C., di Martino, O., Ruggiero, G., Guarino, A.M., Mueller, N., Siauciunaite, R., Reischl, M., Foulkes, N.S., Vallone, D., Calabrò, V. (2017) The tumor-associated YB-1 protein: new player in the circadian control of cell proliferation. Oncotarget. 8(4):6193-6205
|
|
|
|
Purushothaman, S., Saxena, S., Meghah, V., Meena Lakshmi, M.G., Singh, S.K., Brahmendra Swamy, C.V., Idris, M.M. (2015) Proteomic and gene expression analysis of zebrafish brain undergoing continuous light/dark stress. Journal of sleep research. 24(4):458-65
|
|
|
|
Ren, D.L., Zhang, J.L., Yang, L.Q., Wang, X.B., Wang, Z.Y., Huang, D.F., Tian, C., Hu, B. (2018) Circadian genes period1b and period2 differentially regulate inflammatory responses in zebrafish. Fish & shellfish immunology. 77:139-146
|
Ren, J., Long, Y., Liu, R., Song, G., Li, Q., Cui, Z. (2021) Characterization of Biological Pathways Regulating Acute Cold Resistance of Zebrafish. International Journal of Molecular Sciences. 22(6):
|
Ruggiero, G., Ben-Moshe Livne, Z., Wexler, Y., Geyer, N., Vallone, D., Gothilf, Y., Foulkes, N.S. (2021) Period 2: A Regulator of Multiple Tissue-Specific Circadian Functions. Frontiers in molecular neuroscience. 14:718387
|
|
Sandbichler, A.M., Jansen, B., Peer, B.A., Paulitsch, M., Pelster, B., Egg, M. (2018) Metabolic Plasticity Enables Circadian Adaptation to Acute Hypoxia in Zebrafish Cells. Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology. 46:1159-1174
|
|
Schalm, G., Bruns, K., Drachenberg, N., Geyer, N., Foulkes, N.S., Bertolucci, C., Gerlach, G. (2021) Finding Nemo's clock reveals switch from nocturnal to diurnal activity. Scientific Reports. 11:6801
|
|
Shi, W.J., Jiang, Y.X., Huang, G.Y., Zhao, J.L., Zhang, J.N., Liu, Y.S., Xie, L., Ying, G.G. (2018) Dydrogesterone causes male bias and accelerates sperm maturation in zebrafish (Danio rerio). Environmental science & technology. 52(15):8903-8911
|
Shi, W.J., Jiang, Y.X., Ma, D.D., Huang, G.Y., Xie, L., Chen, H.X., Huang, M.Z., Ying, G.G. (2019) Dydrogesterone affects the transcription of genes in visual cycle and circadian rhythm network in the eye of zebrafish. Ecotoxicology and environmental safety. 183:109556
|
Shi, W.J., Long, X.B., Li, S.Y., Ma, D.D., Liu, F., Zhang, J.G., Lu, Z.J., Ying, G.G. (2022) Dydrogesterone and levonorgestrel at environmentally relevant concentrations have antagonist effects with rhythmic oscillation in brain and eyes of zebrafish. Aquatic toxicology (Amsterdam, Netherlands). 248:106177
|
Sloin, H.E., Ruggiero, G., Rubinstein, A., Smadja Storz, S., Foulkes, N.S., Gothilf, Y. (2018) Interactions between the circadian clock and TGF-β signaling pathway in zebrafish. PLoS One. 13:e0199777
|
Smadja Storz, S., Tovin, A., Mracek, P., Alon, S., Foulkes, N.S., and Gothilf, Y. (2013) Casein kinase 1delta activity: a key element in the zebrafish circadian timing system. PLoS One. 8(1):e54189
|
Sousa, J.C., Magalhães-Marques, K.K., da Silveira Cruz-Machado, S., Moraes, M.N., Castrucci, A.M.L. (2017) Dexamethasone Modulates Nonvisual Opsins, Glucocorticoid Receptor, and Clock Genes in Danio rerio ZEM-2S Cells.. BioMed Research International. 2017:8459385
|
|
Strausberg,R.L., Feingold,E.A., Grouse,L.H., Derge,J.G., Klausner,R.D., Collins,F.S., Wagner,L., Shenmen,C.M., Schuler,G.D., Altschul,S.F., Zeeberg,B., Buetow,K.H., Schaefer,C.F., Bhat,N.K., Hopkins,R.F., Jordan,H., Moore,T., Max,S.I., Wang,J., Hsieh,F., Diatchenko,L., Marusina,K., Farmer,A.A., Rubin,G.M., Hong,L., Stapleton,M., Soares,M.B., Bonaldo,M.F., Casavant,T.L., Scheetz,T.E., Brownstein,M.J., Usdin,T.B., Toshiyuki,S., Carninci,P., Prange,C., Raha,S.S., Loquellano,N.A., Peters,G.J., Abramson,R.D., Mullahy,S.J., Bosak,S.A., McEwan,P.J., McKernan,K.J., Malek,J.A., Gunaratne,P.H., Richards,S., Worley,K.C., Hale,S., Garcia,A.M., Gay,L.J., Hulyk,S.W., Villalon,D.K., Muzny,D.M., Sodergren,E.J., Lu,X., Gibbs,R.A., Fahey,J., Helton,E., Ketteman,M., Madan,A., Rodrigues,S., Sanchez,A., Whiting,M., Madan,A., Young,A.C., Shevchenko,Y., Bouffard,G.G., Blakesley,R.W., Touchman,J.W., Green,E.D., Dickson,M.C., Rodriguez,A.C., Grimwood,J., Schmutz,J., Myers,R.M., Butterfield,Y.S., Krzywinski,M.I., Skalska,U., Smailus,D.E., Schnerch,A., Schein,J.E., Jones,S.J., and Marra,M.A. (2002) Generation and initial analysis of more than 15,000 full-length human and mouse cDNA sequences. Proceedings of the National Academy of Sciences of the United States of America. 99(26):16899-903
|
Sua-Cespedes, C.D., David, D.D., Souto-Neto, J.A., Lima, O.G., Moraes, M.N., de Assis, L.V.M., Castrucci, A.M.L. (2021) Low Temperature Effect on the Endocrine and Circadian Systems of Adult Danio rerio. Frontiers in Physiology. 12:707067
|
|
|
|
|
Tovin, A., Alon, S., Ben-Moshe, Z., Mracek, P., Vatine, G., Foulkes, N.S., Jacob-Hirsch, J., Rechavi, G., Toyama, R., Coon, S.L., Klein, D.C., Eisenberg, E., and Gothilf, Y. (2012) Systematic Identification of Rhythmic Genes Reveals camk1gb as a New Element in the Circadian Clockwork. PLoS Genetics. 8(12):e1003116
|
|
Varshney, G.K., Lu, J., Gildea, D., Huang, H., Pei, W., Yang, Z., Huang, S.C., Schoenfeld, D.S., Pho, N., Casero, D., Hirase, T., Mosbrook-Davis, D.M., Zhang, S., Jao, L.E., Zhang, B., Woods, I.G., Zimmerman, S., Schier, A.F., Wolfsberg, T., Pellegrini, M., Burgess, S.M., and Lin, S. (2013) A large-scale zebrafish gene knockout resource for the genome-wide study of gene function. Genome research. 23(4):727-735
|
Wang, D., Jao, L.E., Zheng, N., Dolan, K., Ivey, J., Zonies, S., Wu, X., Wu, K., Yang, H., Meng, Q., Zhu, Z., Zhang, B., Lin, S., and Burgess, S.M. (2007) Efficient genome-wide mutagenesis of zebrafish genes by retroviral insertions. Proceedings of the National Academy of Sciences of the United States of America. 104(30):12428-12433
|
|
Wang, H., Yang, Z., Li, X., Huang, D., Yu, S., He, J., Li, Y., Yan, J. (2020) Single-cell in vivo imaging of cellular circadian oscillators in zebrafish. PLoS Biology. 18:e3000435
|
|
|
|
Weger, M., Weger, B.D., Diotel, N., Rastegar, S., Hirota, T., Kay, S.A., Strähle, U., and Dickmeis, T. (2013) Real-time in vivo monitoring of circadian E-box enhancer activity: A robust and sensitive zebrafish reporter line for developmental, chemical and neural biology of the circadian clock. Developmental Biology. 380(2):259-73
|
|
|
Xu, Y., Zhang, S., Bao, Y., Luan, J., Fu, Z., Sun, M., Zhao, X., Feng, X. (2024) Melatonin protects zebrafish pancreatic development and physiological rhythms from sodium propionate-induced disturbances via the hypothalamic-pituitary-thyroid axis. Journal of the science of food and agriculture. 104(12):7454-7463
|
Yang, Y., Dong, F., Liu, X., Xu, J., Wu, X., Zheng, Y. (2019) Flutolanil affects circadian rhythm in zebrafish (Danio rerio) by disrupting the positive regulators. Chemosphere. 228:649-655
|
Yang, Y., Dong, F., Liu, X., Xu, J., Wu, X., Zheng, Y. (2019) Dysregulation of circadian rhythm in zebrafish (Danio rerio) by thifluzamide: Involvement of positive and negative regulators. Chemosphere. 235:280-287
|
|
|
Zhang, H., Chen, Z.F., Qi, Z., Yan, S.C., Wei, W.W., Liu, G., Cai, Z. (2019) ANALYSIS OF TRANSCRIPTIONAL RESPONSE IN ZEBRAFISH ELEUTHEROEMBRYOS EXPOSED TO CLIMBAZOLE: SIGNALING PATHWAYS AND POTENTIAL BIOMARKERS. Environmental toxicology and chemistry. 38(4):794-805
|
Zhao, W., Mao, L., He, C., Ding, D., Hu, N., Song, X., Long, D. (2023) Effects of low dose radiation on behavior rhythm of zebrafish (Danio rerio). Ecotoxicology and environmental safety. 255:114779114779
|
|
|
|
|
|
|
|
|
|