Research
Search
Genes / Clones
Expression
Mutants / Tg
Antibodies
Anatomy / GO / Human Disease / Chemical
Publications
Data Mining
Downloads
Data Model
AllianceMine
BioMart
Genomics
BLAST
ZFIN
Ensembl
NCBI
UCSC
Genome Browsers
ZFIN
Ensembl
Vega
GRC
UCSC
NCBI
Resources
Zebrafish Genomics
Other Genome Databases
Resources
General
The Zebrafish Book
Protocol Wiki
Antibody Wiki
Anatomy Atlases
Resources for Students and Educators
Zebrafish Programs
ZF-Health
Husbandry Resources
More...
Resource Centers
Zebrafish International Resource Center (ZIRC)
China Zebrafish Resource Center (CZRC)
European Zebrafish Resource Center (EZRC)
Community
Announcements
News
Meetings
Jobs
Alliance Community Forum
Search
People
Labs
Companies
Societies
International Zebrafish Society (IZFS)
Zebrafish Disease Models Society (ZDMS)
Genetics Society of America (GSA)
Zebrafish Husbandry Association
Support
Nomenclature
Nomenclature Conventions
Line Designations
Wild-Type Lines
Submit a Proposed Gene Name
Submit a Proposed Mutant/Tg Line Name
Publications
Guidelines for Authors
Zebrashare
Citing ZFIN
Using ZFIN
Help & Tips
Glossary
Single Box Search Help
Submit Data
Terms of Use
About Us
About ZFIN
Contact Information
Statistics
Committees
Jobs at ZFIN
Sign In
ZFIN ID:
ZDB-GENE-090526-1
CITATIONS
(59 total)
Gene Name:
kisspeptin 2
Gene Symbol:
kiss2
Atre, I., Mizrahi, N., Hausken, K., Yom-Din, S., Hurvitz, A., Degani, G., Levavi-Sivan, B. (2020) Molecular characterization of kisspeptin receptors and gene expression analysis during oogenesis in the russian sturgeon (Acipenser gueldenstaedtii). General and comparative endocrinology. 302:113691
Biran, J., Palevitch, O., Ben-Dor, S., and Levavi-Sivan, B. (2012) Neurokinin Bs and neurokinin B receptors in zebrafish-potential role in controlling fish reproduction. Proceedings of the National Academy of Sciences of the United States of America. 109(26):10269-10274
Carnevali, O., Gioacchini, G., Maradonna, F., Olivotto, I., and Migliarini, B. (2011) Melatonin Induces Follicle Maturation in Danio rerio. PLoS One. 6(5):e19978
Chen, Q., Jingjing, A., Xie, D., Gong, S., Lian, X., Liu, Z., Shen, Y., Li, Y. (2020) Suppression and recovery of reproductive behavior induced by early life exposure to mercury in zebrafish. Comparative biochemistry and physiology. Toxicology & pharmacology : CBP. 239:108876
Chen, W., Lau, S.W., Fan, Y., Wu, R.S.S., Ge, W. (2017) Juvenile exposure to bisphenol A promotes ovarian differentiation but suppresses its growth - Potential involvement of pituitary follicle-stimulating hormone. Aquatic toxicology (Amsterdam, Netherlands). 193:111-121
Chen, X., Zheng, J., Zhang, J., Duan, M., Xu, H., Zhao, W., Yang, Y., Wang, C., Xu, Y. (2022) Exposure to difenoconazole induces reproductive toxicity in zebrafish by interfering with gamete maturation and reproductive behavior. The Science of the total environment. 838(Pt 1):155610
Felip, A., Zanuy, S., Pineda, R., Pinilla, L., Carrillo, M., Tena-Sempere, M., and Gómez, A. (2009) Evidence for two distinct KiSS genes in non-placental vertebrates that encode kisspeptins with different gonadotropin-releasing activities in fish and mammals. Molecular and Cellular Endocrinology. 312(1-2):61-71
Gioacchini, G., Maradonna, F., Lombardo, F., Bizzaro, D., Olivotto, I., and Carnevali, O. (2010) Increase of fecundity by probiotic administration in zebrafish (Danio rerio). Reproduction (Cambridge, England). 140(6):953-959
Houbrechts, A.M., Van Houcke, J., Darras, V.M. (2019) Disruption of deiodinase type 2 in zebrafish disturbs male and female reproduction. The Journal of endocrinology.
Khor, Y.M., Soga, T., Parhar, I.S. (2016) Early-Life Stress Changes Expression of GnRH and Kisspeptin Genes and DNA Methylation of GnRH3 Promoter in The Adult Zebrafish Brain. General and comparative endocrinology. 227:84-93
Kim, D.K., Yun, S., Son, G.H., Hwang, J.I., Park, C.R., Kim, J.I., Kim, K., Vaudry, H., and Seong, J.Y. (2014) Coevolution of the Spexin/Galanin/Kisspeptin Family: Spexin Activates Galanin Receptor Type II and III. Endocrinology. 155(5):1864-1873
Kitahashi, T., Ogawa, S., and Parhar, I.S. (2009) Cloning and expression of kiss2 in the zebrafish and medaka. Endocrinology. 150(2):821-831
Lan, X.R., Li, Y.W., Chen, Q.L., Shen, Y.J., Liu, Z.H. (2020) Tributyltin impaired spermatogenesis and reproductive behavior in male zebrafish. Aquatic toxicology (Amsterdam, Netherlands). 224:105503
Leinonen, J.T., Chen, Y.C., Pennonen, J., Lehtonen, L., Junna, N., Tukiainen, T., Panula, P., Widén, E. (2019) LIN28B affects gene expression at the hypothalamic-pituitary axis and serum testosterone levels. Scientific Reports. 9:18060
Leinonen, J.T., Chen, Y.C., Tukiainen, T., Panula, P., Widén, E. (2018) Transient modification of lin28b expression - Permanent effects on zebrafish growth. Molecular and Cellular Endocrinology. 479:61-70
Li, G., Tang, H., Chen, Y., Yin, Y., Ogawa, S., Liu, M., Guo, Y., Qi, X., Liu, Y., Parhar, I.S., Liu, X., Lin, H. (2017) Estrogen directly stimulates LHb expression at the pituitary level during puberty in female zebrafish. Molecular and Cellular Endocrinology. 461:1-11
Li, Y., Zhao, T., Liu, Y., Lin, H., Li, S., Zhang, Y. (2021) Knockout of tac3 Genes in Zebrafish Shows No Impairment of Reproduction. General and comparative endocrinology. 311:113839
Liu, Y., Tang, H., Xie, R., Li, S., Liu, X., Lin, H., Zhang, Y., Cheng, C.H. (2017) Genetic Evidence for Multifactorial Control of the Reproductive Axis in Zebrafish. Endocrinology. 158:604-611
Loganathan, K., Moriya, S., Parhar, I.S. (2019) Diurnal Rhythm of
trek2a
Expression is Associated with Diurnal Rhythm of
gnrh3
Expression in Zebrafish. Zoological science. 36:167-171
Loganathan, K., Moriya, S., Parhar, I.S. (2018) Trek2a regulates gnrh3 expression under control of melatonin receptor Mt1 and α
2
-adrenoceptor.. Biochemical and Biophysical Research Communications. 496(3):927-933
Loganathan, K., Moriya, S., Parhar, I.S. (2018) High Melatonin Conditions by Constant Darkness and High Temperature Differently Affect Melatonin Receptor mt1 and TREK Channel trek2a in the Brain of Zebrafish. Zebrafish. 15(5):473-483
London, S., Volkoff, H. (2019) Effects of fasting on the central expression of appetite-regulating and reproductive hormones in wild-type and Casper zebrafish (Danio rerio). General and comparative endocrinology. 282:113207
Maradonna, F., Gioacchini, G., Notarstefano, V., Fontana, C.M., Citton, F., Dalla Valle, L., Giorgini, E., Carnevali, O. (2020) Knockout of the Glucocorticoid Receptor Impairs Reproduction in Female Zebrafish. International Journal of Molecular Sciences. 21(23):
Marvel, M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2018) Knockout of the Gnrh genes in zebrafish: effects on reproduction and potential compensation by reproductive and feeding-related neuropeptides. Biology of reproduction. 99(3):565-577
Marvel, M.M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2019) Knockout of Gnrh2 in zebrafish (Danio rerio) reveals its roles in regulating feeding behavior and oocyte quality. General and comparative endocrinology. 280:15-23
Michel, L., Palma, K., Cerda, M., Lagadec, R., Mayeur, H., Fuentès, M., Besseau, L., Martin, P., Magnanou, E., Blader, P., Concha, M.L., Mazan, S. (2022) Diversification of habenular organization and asymmetries in teleosts: Insights from the Atlantic salmon and European eel. Frontiers in cell and developmental biology. 10:1015074
Moriya, S., Tahsin, N., Parhar, I.S. (2017) Bpifcl modulates kiss2 expression under the influence of 11-ketotestosterone in female zebrafish. Scientific Reports. 7:7926
Nocillado, J.N., Mechaly, A.S., and Elizur, A. (2013) In silico analysis of the regulatory region of the Yellowtail Kingfish and Zebrafish Kiss and Kiss receptor genes. Fish physiology and biochemistry. 39(1):59-63
Ogawa, S., Nathan, F.M., Parhar, I.S. (2014) Habenular kisspeptin modulates fear in the zebrafish. Proceedings of the National Academy of Sciences of the United States of America. 111:3841-6
Ogawa, S., Ramadasan, P.N., Anthonysamy, R., Parhar, I.S. (2021) Sexual Dimorphic Distribution of Hypothalamic Tachykinin1 Cells and Their Innervations to GnRH Neurons in the Zebrafish. Frontiers in endocrinology. 11:534343
Ogawa, S., Ramadasan, P.N., Goschorska, M., Anantharajah, A., Ng, K.W., and Parhar, I.S. (2012) Cloning and expression of tachykinins and their association with kisspeptins in the brains of zebrafish. The Journal of comparative neurology. 520(13):2991-3012
Paredes, J.F., Cowan, M., López-Olmeda, J.F., Muñoz-Cueto, J.A., Sánchez-Vázquez, F.J. (2019) Daily rhythms of expression in reproductive genes along the brain-pituitary-gonad axis and liver of zebrafish. Comparative biochemistry and physiology. Part A, Molecular & integrative physiology. 231:158-169
Parhar, I.S., Ogawa, S., Ubuka, T. (2016) Reproductive Neuroendocrine Pathways of Social Behavior. Frontiers in endocrinology. 7:28
Qiu, W., Fang, M., Liu, J., Fu, C., Zheng, C., Chen, B., Wang, K.J. (2019) In vivo actions of Bisphenol F on the reproductive neuroendocrine system after long-term exposure in zebrafish. The Science of the total environment. 665:995-1002
Qiu, W., Liu, S., Chen, H., Luo, S., Xiong, Y., Wang, X., Xu, B., Zheng, C., Wang, K.J. (2020) The comparative toxicities of BPA, BPB, BPS, BPF, and BPAF on the reproductive neuroendocrine system of zebrafish embryos and its mechanisms. Journal of hazardous materials. 406:124303
Qiu, W., Zhao, Y., Yang, M., Farajzadeh, M., Pan, C., Wayne, N.L. (2016) Actions of Bisphenol A and Bisphenol S on the Reproductive Neuroendocrine System During Early Development in Zebrafish. Endocrinology. 157(2):636-47
Rajeswari, J.J., Unniappan, S. (2020) Phoenixin-20 Stimulates mRNAs Encoding Hypothalamo-Pituitary-Gonadal Hormones, is Pro-Vitellogenic, and Promotes Oocyte Maturation in Zebrafish. Scientific Reports. 10:6264
Safian, D., Bogerd, J., Schulz, R.W. (2019) Regulation of spermatogonial development by Fsh: the complementary roles of locally produced Igf and Wnt signaling molecules in adult zebrafish testis. General and comparative endocrinology. 284:113244
Servili, A., Le Page, Y., Leprince, J., Caraty, A., Escobar, S., Parhar, I.S., Seong, J.Y., Vaudry, H., and Kah, O. (2011) Organization of Two Independent Kisspeptin Systems Derived from Evolutionary-Ancient Kiss Genes in the Brain of Zebrafish. Endocrinology. 152(4):1527-1540
Shahjahan, M., Kitahashi, T., Ogawa, S., and Parhar, I.S. (2013) Temperature differentially regulates the two kisspeptin systems in the brain of zebrafish. General and comparative endocrinology. 193C:79-85
Song, Y., Chen, J., Tao, B., Luo, D., Zhu, Z., Hu, W. (2020) Kisspeptin2 regulates hormone expression in female zebrafish (Danio rerio) pituitary. Molecular and Cellular Endocrinology. 513:110858
Song, Y., Duan, X., Chen, J., Huang, W., Zhu, Z., Hu, W. (2015) The distribution of Kiss1- and Kiss2-positive neurones and their connections with GnRH3 neurones in the zebrafish brain. Journal of neuroendocrinology. 27(3):198-211
Talya, E., Nilli, Z., Yonatan, Z., Berta, L.S., Matan, G., Yoav, G. (2020) Ectopic over expression of kiss1 may compensate for the loss of kiss2. General and comparative endocrinology. 295:113523
Tang, H., Liu, Y., Luo, D., Ogawa, S., Yin, Y., Li, S., Zhang, Y., Hu, W., Parhar, I.S., Lin, H., Liu, X., Cheng, C.H. (2015) The kiss/kissr systems are dispensable for zebrafish reproduction: evidence from gene knockout studies. Endocrinology. 156(2):589-99
Tzung, K.W., Goto, R., Saju, J.M., Sreenivasan, R., Saito, T., Arai, K., Yamaha, E., Hossain, M.S., Calvert, M.E., Orbán, L. (2015) Early Depletion of Primordial Germ Cells in Zebrafish Promotes Testis Formation. Stem Cell Reports. 4(1):61-73
Wang, M., Luo, J., Dai, L., Feng, M., Cao, X., Zhang, J., Wan, Y., Yang, X., Wang, Y. (2024) Foxp2 deficiency impairs reproduction by modulating the hypothalamic-pituitary-gonadal axis in zebrafish. Biology of reproduction. 110(5):908-923
Xiao, W.Y., Li, Y.W., Chen, Q.L., Liu, Z.H. (2018) Tributyltin impaired reproductive success in female zebrafish through disrupting oogenesis, reproductive behaviors and serotonin synthesis. Aquatic toxicology (Amsterdam, Netherlands). 200:206-216
Yumnamcha, T., Khan, Z.A., Rajiv, C., Devi, S.D., Mondal, G., Sanjita Devi, H., Bharali, R., Chattoraj, A. (2017) Interaction of melatonin and gonadotropin-inhibitory hormone on the zebrafish brain-pituitary-reproductive axis. Molecular reproduction and development. 84(5):389-400
Zhao, Y., Lin, M.C., Mock, A., Yang, M., Wayne, N.L. (2014) Kisspeptins Modulate the Biology of Multiple Populations of Gonadotropin-Releasing Hormone Neurons during Embryogenesis and Adulthood in Zebrafish (Danio rerio). PLoS One. 9:e104330
Zhu, Z., Liu, Y., Xu, W., Liu, T., Xie, Y., Sham, K.W.Y., Sha, O., Cheng, C.H.K. (2020) Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development. Frontiers in genetics. 11:299
Zmora, N., Stubblefield, J., Golan, M., Servili, A., Levavi-Sivan, B., and Zohar, Y. (2014) The Medio-Basal Hypothalamus as a Dynamic and Plastic Reproduction-Related Kisspeptin-gnrh-Pituitary Center in Fish. Endocrinology. 155(5):1874-86
Wang, M., Luo, J., Dai, L., Feng, M., Cao, X., Zhang, J., Wan, Y., Yang, X., Wang, Y. (2024) Foxp2 deficiency impairs reproduction by modulating the hypothalamic-pituitary-gonadal axis in zebrafish. Biology of reproduction. 110(5):908-923
Chen, X., Zheng, J., Zhang, J., Duan, M., Xu, H., Zhao, W., Yang, Y., Wang, C., Xu, Y. (2022) Exposure to difenoconazole induces reproductive toxicity in zebrafish by interfering with gamete maturation and reproductive behavior. The Science of the total environment. 838(Pt 1):155610
Michel, L., Palma, K., Cerda, M., Lagadec, R., Mayeur, H., Fuentès, M., Besseau, L., Martin, P., Magnanou, E., Blader, P., Concha, M.L., Mazan, S. (2022) Diversification of habenular organization and asymmetries in teleosts: Insights from the Atlantic salmon and European eel. Frontiers in cell and developmental biology. 10:1015074
Li, Y., Zhao, T., Liu, Y., Lin, H., Li, S., Zhang, Y. (2021) Knockout of tac3 Genes in Zebrafish Shows No Impairment of Reproduction. General and comparative endocrinology. 311:113839
Ogawa, S., Ramadasan, P.N., Anthonysamy, R., Parhar, I.S. (2021) Sexual Dimorphic Distribution of Hypothalamic Tachykinin1 Cells and Their Innervations to GnRH Neurons in the Zebrafish. Frontiers in endocrinology. 11:534343
Atre, I., Mizrahi, N., Hausken, K., Yom-Din, S., Hurvitz, A., Degani, G., Levavi-Sivan, B. (2020) Molecular characterization of kisspeptin receptors and gene expression analysis during oogenesis in the russian sturgeon (Acipenser gueldenstaedtii). General and comparative endocrinology. 302:113691
Chen, Q., Jingjing, A., Xie, D., Gong, S., Lian, X., Liu, Z., Shen, Y., Li, Y. (2020) Suppression and recovery of reproductive behavior induced by early life exposure to mercury in zebrafish. Comparative biochemistry and physiology. Toxicology & pharmacology : CBP. 239:108876
Lan, X.R., Li, Y.W., Chen, Q.L., Shen, Y.J., Liu, Z.H. (2020) Tributyltin impaired spermatogenesis and reproductive behavior in male zebrafish. Aquatic toxicology (Amsterdam, Netherlands). 224:105503
Maradonna, F., Gioacchini, G., Notarstefano, V., Fontana, C.M., Citton, F., Dalla Valle, L., Giorgini, E., Carnevali, O. (2020) Knockout of the Glucocorticoid Receptor Impairs Reproduction in Female Zebrafish. International Journal of Molecular Sciences. 21(23):
Qiu, W., Liu, S., Chen, H., Luo, S., Xiong, Y., Wang, X., Xu, B., Zheng, C., Wang, K.J. (2020) The comparative toxicities of BPA, BPB, BPS, BPF, and BPAF on the reproductive neuroendocrine system of zebrafish embryos and its mechanisms. Journal of hazardous materials. 406:124303
Rajeswari, J.J., Unniappan, S. (2020) Phoenixin-20 Stimulates mRNAs Encoding Hypothalamo-Pituitary-Gonadal Hormones, is Pro-Vitellogenic, and Promotes Oocyte Maturation in Zebrafish. Scientific Reports. 10:6264
Song, Y., Chen, J., Tao, B., Luo, D., Zhu, Z., Hu, W. (2020) Kisspeptin2 regulates hormone expression in female zebrafish (Danio rerio) pituitary. Molecular and Cellular Endocrinology. 513:110858
Talya, E., Nilli, Z., Yonatan, Z., Berta, L.S., Matan, G., Yoav, G. (2020) Ectopic over expression of kiss1 may compensate for the loss of kiss2. General and comparative endocrinology. 295:113523
Zhu, Z., Liu, Y., Xu, W., Liu, T., Xie, Y., Sham, K.W.Y., Sha, O., Cheng, C.H.K. (2020) Functional Characterization and Expression Analyses Show Differential Roles of Maternal and Zygotic Dgcr8 in Early Embryonic Development. Frontiers in genetics. 11:299
Houbrechts, A.M., Van Houcke, J., Darras, V.M. (2019) Disruption of deiodinase type 2 in zebrafish disturbs male and female reproduction. The Journal of endocrinology.
Leinonen, J.T., Chen, Y.C., Pennonen, J., Lehtonen, L., Junna, N., Tukiainen, T., Panula, P., Widén, E. (2019) LIN28B affects gene expression at the hypothalamic-pituitary axis and serum testosterone levels. Scientific Reports. 9:18060
Loganathan, K., Moriya, S., Parhar, I.S. (2019) Diurnal Rhythm of
trek2a
Expression is Associated with Diurnal Rhythm of
gnrh3
Expression in Zebrafish. Zoological science. 36:167-171
London, S., Volkoff, H. (2019) Effects of fasting on the central expression of appetite-regulating and reproductive hormones in wild-type and Casper zebrafish (Danio rerio). General and comparative endocrinology. 282:113207
Marvel, M.M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2019) Knockout of Gnrh2 in zebrafish (Danio rerio) reveals its roles in regulating feeding behavior and oocyte quality. General and comparative endocrinology. 280:15-23
Paredes, J.F., Cowan, M., López-Olmeda, J.F., Muñoz-Cueto, J.A., Sánchez-Vázquez, F.J. (2019) Daily rhythms of expression in reproductive genes along the brain-pituitary-gonad axis and liver of zebrafish. Comparative biochemistry and physiology. Part A, Molecular & integrative physiology. 231:158-169
Qiu, W., Fang, M., Liu, J., Fu, C., Zheng, C., Chen, B., Wang, K.J. (2019) In vivo actions of Bisphenol F on the reproductive neuroendocrine system after long-term exposure in zebrafish. The Science of the total environment. 665:995-1002
Safian, D., Bogerd, J., Schulz, R.W. (2019) Regulation of spermatogonial development by Fsh: the complementary roles of locally produced Igf and Wnt signaling molecules in adult zebrafish testis. General and comparative endocrinology. 284:113244
Leinonen, J.T., Chen, Y.C., Tukiainen, T., Panula, P., Widén, E. (2018) Transient modification of lin28b expression - Permanent effects on zebrafish growth. Molecular and Cellular Endocrinology. 479:61-70
Loganathan, K., Moriya, S., Parhar, I.S. (2018) Trek2a regulates gnrh3 expression under control of melatonin receptor Mt1 and α
2
-adrenoceptor.. Biochemical and Biophysical Research Communications. 496(3):927-933
Loganathan, K., Moriya, S., Parhar, I.S. (2018) High Melatonin Conditions by Constant Darkness and High Temperature Differently Affect Melatonin Receptor mt1 and TREK Channel trek2a in the Brain of Zebrafish. Zebrafish. 15(5):473-483
Marvel, M., Spicer, O.S., Wong, T.T., Zmora, N., Zohar, Y. (2018) Knockout of the Gnrh genes in zebrafish: effects on reproduction and potential compensation by reproductive and feeding-related neuropeptides. Biology of reproduction. 99(3):565-577
Xiao, W.Y., Li, Y.W., Chen, Q.L., Liu, Z.H. (2018) Tributyltin impaired reproductive success in female zebrafish through disrupting oogenesis, reproductive behaviors and serotonin synthesis. Aquatic toxicology (Amsterdam, Netherlands). 200:206-216
Chen, W., Lau, S.W., Fan, Y., Wu, R.S.S., Ge, W. (2017) Juvenile exposure to bisphenol A promotes ovarian differentiation but suppresses its growth - Potential involvement of pituitary follicle-stimulating hormone. Aquatic toxicology (Amsterdam, Netherlands). 193:111-121
Li, G., Tang, H., Chen, Y., Yin, Y., Ogawa, S., Liu, M., Guo, Y., Qi, X., Liu, Y., Parhar, I.S., Liu, X., Lin, H. (2017) Estrogen directly stimulates LHb expression at the pituitary level during puberty in female zebrafish. Molecular and Cellular Endocrinology. 461:1-11
Liu, Y., Tang, H., Xie, R., Li, S., Liu, X., Lin, H., Zhang, Y., Cheng, C.H. (2017) Genetic Evidence for Multifactorial Control of the Reproductive Axis in Zebrafish. Endocrinology. 158:604-611
Moriya, S., Tahsin, N., Parhar, I.S. (2017) Bpifcl modulates kiss2 expression under the influence of 11-ketotestosterone in female zebrafish. Scientific Reports. 7:7926
Yumnamcha, T., Khan, Z.A., Rajiv, C., Devi, S.D., Mondal, G., Sanjita Devi, H., Bharali, R., Chattoraj, A. (2017) Interaction of melatonin and gonadotropin-inhibitory hormone on the zebrafish brain-pituitary-reproductive axis. Molecular reproduction and development. 84(5):389-400
Khor, Y.M., Soga, T., Parhar, I.S. (2016) Early-Life Stress Changes Expression of GnRH and Kisspeptin Genes and DNA Methylation of GnRH3 Promoter in The Adult Zebrafish Brain. General and comparative endocrinology. 227:84-93
Parhar, I.S., Ogawa, S., Ubuka, T. (2016) Reproductive Neuroendocrine Pathways of Social Behavior. Frontiers in endocrinology. 7:28
Qiu, W., Zhao, Y., Yang, M., Farajzadeh, M., Pan, C., Wayne, N.L. (2016) Actions of Bisphenol A and Bisphenol S on the Reproductive Neuroendocrine System During Early Development in Zebrafish. Endocrinology. 157(2):636-47
Song, Y., Duan, X., Chen, J., Huang, W., Zhu, Z., Hu, W. (2015) The distribution of Kiss1- and Kiss2-positive neurones and their connections with GnRH3 neurones in the zebrafish brain. Journal of neuroendocrinology. 27(3):198-211
Tang, H., Liu, Y., Luo, D., Ogawa, S., Yin, Y., Li, S., Zhang, Y., Hu, W., Parhar, I.S., Lin, H., Liu, X., Cheng, C.H. (2015) The kiss/kissr systems are dispensable for zebrafish reproduction: evidence from gene knockout studies. Endocrinology. 156(2):589-99
Tzung, K.W., Goto, R., Saju, J.M., Sreenivasan, R., Saito, T., Arai, K., Yamaha, E., Hossain, M.S., Calvert, M.E., Orbán, L. (2015) Early Depletion of Primordial Germ Cells in Zebrafish Promotes Testis Formation. Stem Cell Reports. 4(1):61-73
Kim, D.K., Yun, S., Son, G.H., Hwang, J.I., Park, C.R., Kim, J.I., Kim, K., Vaudry, H., and Seong, J.Y. (2014) Coevolution of the Spexin/Galanin/Kisspeptin Family: Spexin Activates Galanin Receptor Type II and III. Endocrinology. 155(5):1864-1873
Ogawa, S., Nathan, F.M., Parhar, I.S. (2014) Habenular kisspeptin modulates fear in the zebrafish. Proceedings of the National Academy of Sciences of the United States of America. 111:3841-6
Zhao, Y., Lin, M.C., Mock, A., Yang, M., Wayne, N.L. (2014) Kisspeptins Modulate the Biology of Multiple Populations of Gonadotropin-Releasing Hormone Neurons during Embryogenesis and Adulthood in Zebrafish (Danio rerio). PLoS One. 9:e104330
Zmora, N., Stubblefield, J., Golan, M., Servili, A., Levavi-Sivan, B., and Zohar, Y. (2014) The Medio-Basal Hypothalamus as a Dynamic and Plastic Reproduction-Related Kisspeptin-gnrh-Pituitary Center in Fish. Endocrinology. 155(5):1874-86
Nocillado, J.N., Mechaly, A.S., and Elizur, A. (2013) In silico analysis of the regulatory region of the Yellowtail Kingfish and Zebrafish Kiss and Kiss receptor genes. Fish physiology and biochemistry. 39(1):59-63
Shahjahan, M., Kitahashi, T., Ogawa, S., and Parhar, I.S. (2013) Temperature differentially regulates the two kisspeptin systems in the brain of zebrafish. General and comparative endocrinology. 193C:79-85
Biran, J., Palevitch, O., Ben-Dor, S., and Levavi-Sivan, B. (2012) Neurokinin Bs and neurokinin B receptors in zebrafish-potential role in controlling fish reproduction. Proceedings of the National Academy of Sciences of the United States of America. 109(26):10269-10274
Ogawa, S., Ramadasan, P.N., Goschorska, M., Anantharajah, A., Ng, K.W., and Parhar, I.S. (2012) Cloning and expression of tachykinins and their association with kisspeptins in the brains of zebrafish. The Journal of comparative neurology. 520(13):2991-3012
Carnevali, O., Gioacchini, G., Maradonna, F., Olivotto, I., and Migliarini, B. (2011) Melatonin Induces Follicle Maturation in Danio rerio. PLoS One. 6(5):e19978
Servili, A., Le Page, Y., Leprince, J., Caraty, A., Escobar, S., Parhar, I.S., Seong, J.Y., Vaudry, H., and Kah, O. (2011) Organization of Two Independent Kisspeptin Systems Derived from Evolutionary-Ancient Kiss Genes in the Brain of Zebrafish. Endocrinology. 152(4):1527-1540
Gioacchini, G., Maradonna, F., Lombardo, F., Bizzaro, D., Olivotto, I., and Carnevali, O. (2010) Increase of fecundity by probiotic administration in zebrafish (Danio rerio). Reproduction (Cambridge, England). 140(6):953-959
Felip, A., Zanuy, S., Pineda, R., Pinilla, L., Carrillo, M., Tena-Sempere, M., and Gómez, A. (2009) Evidence for two distinct KiSS genes in non-placental vertebrates that encode kisspeptins with different gonadotropin-releasing activities in fish and mammals. Molecular and Cellular Endocrinology. 312(1-2):61-71
Kitahashi, T., Ogawa, S., and Parhar, I.S. (2009) Cloning and expression of kiss2 in the zebrafish and medaka. Endocrinology. 150(2):821-831
Additional Citations (8):
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
ZFIN Staff (2003) Curation of VEGA Database Links. Automated Data Submission.
ZFIN Staff (2024) Association of Ensembl transcripts with ZFIN genes. Semi-automated Curation.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2023) Automated Curation of UniProt Database Links. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
ZFIN Staff (2024) Association of Ensembl transcripts with ZFIN genes. Semi-automated Curation.
ZFIN Staff (2023) Automated Curation of UniProt Database Links. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of VEGA Database Links. Automated Data Submission.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
Your Input Welcome
Your Input Welcome
We welcome your input and comments. Please use this form to recommend updates to the information in ZFIN. We appreciate as much detail as possible and references as appropriate. We will review your comments promptly.
Please check the highlighted fields and try again.
Name:
Institution:
Email address:
Please leave blank:
Subject:
Comments:
Send your comments
Thank you for submitting comments. Your input has been emailed to ZFIN curators who may contact you if additional information is required.
Oops. Something went wrong. Please try again later.