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ZFIN ID:
ZDB-GENE-070117-2179
CITATIONS
(42 total)
Gene Name:
long fin
Gene Symbol:
lof
Anorve-Andress, K., Arcand, A.L., Borg, B.R., Brown, J.L., Chartrand, C.A., Frank, M.L., Jansen, J.N., Joyce, M.J., Joyce, M.T., Kinney, J.A., Kruggel, S.L., Lecy, A.D., Ma, P., Malecha, K.M., Melgaard, K., Miller, P.L., Nelson, K.K., Nieto Robles, M., Perosino, T.R., Peterson, J.M., Rollins, A.D., Scherkenbach, W.L., Smith, A.L., Sodergren, K.A., Stiller, J.J., Wehber, K.R., Liang, J.O. (2016) Variation in Spot and Stripe Patterns in Original and Regenerated Zebrafish Caudal Fins. Zebrafish. 13(4):256-65
Audira, G., Siregar, P., Strungaru, S.A., Huang, J.C., Hsiao, C.D. (2020) Which Zebrafish Strains Are More Suitable to Perform Behavioral Studies? A Comprehensive Comparison by Phenomic Approach. Biology. 9(8)
Barbosa, H.P., Lima-Maximino, M.G., Maximino, C. (2018) Acute fluoxetine differently affects aggressive display in zebrafish phenotypes. Aggressive behavior. 45(1):62-69
Cadete, F., Francisco, M., Freitas, R. (2023) Bmp-signaling and the finfold size in zebrafish: implications for the fin-to-limb transition. Evolution; international journal of organic evolution. 77(5):1262-1271
Cao, Z., Meng, Y., Gong, F., Xu, Z., Liu, F., Fang, M., Zou, L., Liao, X., Wang, X., Luo, L., Li, X., Lu, H. (2021) Calcineurin controls proximodistal blastema polarity in zebrafish fin regeneration. Proceedings of the National Academy of Sciences of the United States of America. 118(2):
Castro, J., Beviano, V., Paço, A., Leitão-Castro, J., Cadete, F., Francisco, M., Freitas, R. (2021) Hoxd13/Bmp2-mediated mechanism involved in zebrafish finfold design. Scientific Reports. 11:7165
Cooper, T.K., Murray, K.N., Spagnoli, S., Spitsbergen, J.M. (2015) Primary Intestinal and Vertebral Chordomas in Laboratory Zebrafish (Danio rerio). Veterinary Pathology. 52(2):388-92
Daane, J.M., Blum, N., Lanni, J., Boldt, H., Iovine, M.K., Higdon, C.W., Johnson, S.L., Lovejoy, N.R., Harris, M.P. (2021) Modulation of bioelectric cues in the evolution of flying fishes. Current biology : CB. 31(22):5052-5061.e8
Goldsmith, M.I., Fisher, S., Waterman, R., and Johnson, S.L. (2003) Saltatory control of isometric growth in the zebrafish caudal fin is disrupted in long fin and rapunzel mutants. Developmental Biology. 259(2):303-317
Gumm, J.M., Snekser, J.L., and Iovine, M.K. (2009) Fin-mutant female zebrafish (Danio rerio) exhibit differences in association preferences for male fin length. Behavioural processes. 80(1):35-38
Haffter, P., Granato, M., Brand, M., Mullins, M.C., Hammerschmidt, M., Kane, D.A., Odenthal, J., van Eeden, F.J., Jiang, Y.J., Heisenberg, C.P., Kelsh, R.N., Furutani-Seiki, M., Vogelsang, E., Beuchle, D., Schach, U., Fabian, C., and Nüsslein-Volhard, C. (1996) The identification of genes with unique and essential functions in the development of the zebrafish, Danio rerio. Development (Cambridge, England). 123:1-36
Haffter, P., Odenthal, J., Mullins, M.C., Lin, S., Farrell, M.J., Vogelsang, E., Haas, F., Brand, M., van Eeden, F.J.M., Furutani-Seiki, M., Granato, M., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Hopkins, N., and Nüsslein-Volhard, C. (1996) Mutations affecting pigmentation and shape of the adult zebrafish. Development genes and evolution. 206(4):260-276
Harjula, S.E., Saralahti, A.K., Ojanen, M.J.T., Rantapero, T., Uusi-Mäkelä, M.I.E., Nykter, M., Lohi, O., Parikka, M., Rämet, M. (2019) Characterization of immune response against Mycobacterium marinum infection in the main hematopoietic organ of adult zebrafish (Danio rerio). Developmental and comparative immunology. 103:103523
Harper, M., Hu, Y., Donahue, J., Acosta, B., Dievenich Braes, F., Nguyen, S., Zeng, J., Barbaro, J., Lee, H., Bui, H., McMenamin, S.K. (2023) Thyroid hormone regulates proximodistal patterning in fin rays. Proceedings of the National Academy of Sciences of the United States of America. 120:e2219770120e2219770120
Iovine, M.K. and Johnson, S.L. (2000) Genetic analysis of isometric growth control mechanisms in the zebrafish caudal fin. Genetics. 155(3):1321-1329
Iovine, M.K., and Johnson, S.L. (2002) A genetic, deletion, physical, and human homology map of the long fin region on zebrafish linkage group 2. Genomics. 79(6):756-759
Itzkowitz, M., and Iovine, M.K. (2007) Single gene mutations causing exaggerated fins also cause non-genetic changes in the display behavior of male zebrafish. Behaviour. 144(7):787-795
Johnson, S.L. and Weston, J.A. (1995) Temperature-sensitive mutations that cause stage-specific defects in Zebrafish fin regeneration. Genetics. 141:1583-1595
Kawakami, K., Shima, A., and Kawakami, N. (2000) Identification of a functional transposase of the Tol2 element, an Ac-like element from the Japanese medaka fish, and its transposition in the zebrafish germ lineage. Proceedings of the National Academy of Sciences of the United States of America. 97(21):11403-11408
Lanni, J.S., Peal, D., Ekstrom, L., Chen, H., Stanclift, C., Bowen, M.E., Mercado, A., Gamba, G., Kahle, K.T., Harris, M.P. (2019) Integrated K+ channel and K+Cl- cotransporter function are required for the coordination of size and proportion during development. Developmental Biology. 456(2):164-178
Lindemann, S., Senkler, J., Auchter, E., and Liang, J.O. (2011) Using zebrafish to learn statistical analysis and mendelian genetics. Zebrafish. 8(2):41-55
Maheras, A.L., Dix, B., Carmo, O.M.S., Young, A.E., Gill, V.N., Sun, J.L., Booker, A.R., Thomason, H.A., Ibrahim, A.E., Stanislaw, L., Dallego, J.C., Ngo, C.N., Chen, A., Fortini, B.K., Spence, R.D. (2018) Genetic Pathways of Neuroregeneration in a Novel Mild Traumatic Brain Injury Model in Adult Zebrafish. eNeuro. 5(1)
Parsons, K.J., Son, Y.H., Crespel, A., Thambithurai, D., Killen, S., Harris, M.P., Albertson, R.C. (2018) Conserved but flexible modularity in the zebrafish skull: implications for craniofacial evolvability. Proceedings. Biological sciences. 285(1877)
Rawls, J.F. and Johnson, S.L. (2000) Zebrafish kit mutation reveals primary and secondary regulation of melanocyte development during fin stripe regeneration. Development (Cambridge, England). 127(17):3715-3724
Saralahti, A.K., Harjula, S.E., Rantapero, T., Uusi-Mäkelä, M.I.E., Kaasinen, M., Junno, M., Piippo, H., Nykter, M., Lohi, O., Rounioja, S., Parikka, M., Rämet, M. (2023) Characterization of the innate immune response to Streptococcus pneumoniae infection in zebrafish. PLoS Genetics. 19:e1010586e1010586
Schulte, C.J., Allen, C., England, S.J., Juárez-Morales, J.L., and Lewis, K.E. (2011) Evx1 is required for joint formation in zebrafish fin dermoskeleton. Developmental Dynamics : an official publication of the American Association of Anatomists. 240(5):1240-1248
Siregar, P., Juniardi, S., Audira, G., Lai, Y.H., Huang, J.C., Chen, K.H., Chen, J.R., Hsiao, C.D. (2020) Method Standardization for Conducting Innate Color Preference Studies in Different Zebrafish Strains. Biomedicines. 8(8):
Spitsbergen, J.M., Buhler, D.R., and Peterson, T.S. (2012) Neoplasia and neoplasm-associated lesions in laboratory colonies of zebrafish emphasizing key influences of diet and aquaculture system design. ILAR journal. 53(2):114-125
Stewart, S., Le Bleu, H.K., Yette, G.A., Henner, A.L., Robbins, A.E., Braunstein, J.A., Stankunas, K. (2021) longfin causes cis-ectopic expression of the kcnh2a ether-a-go-go K+ channel to autonomously prolong fin outgrowth. Development (Cambridge, England). 148(11):
Tornini, V.A., Thompson, J.D., Allen, R.L., Poss, K.D. (2017) Live fate-mapping of joint-associated fibroblasts visualizes expansion of cell contributions during zebrafish fin regeneration. Development (Cambridge, England). 144:2889-2895
Tresnake, I. (1981) The long-finned zebra Danio. Trop. Fish Hobby. 29:43-56
van Eeden, F.J., Granato, M., Schach, U., Brand, M., Furutani-Seiki, M., Haffter, P., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Mullins, M.C., Odenthal, J., Warga, R.M., and Nüsslein-Volhard, C. (1996) Genetic analysis of fin formation in the zebrafish, Danio rerio. Development (Cambridge, England). 123:255-262
Cadete, F., Francisco, M., Freitas, R. (2023) Bmp-signaling and the finfold size in zebrafish: implications for the fin-to-limb transition. Evolution; international journal of organic evolution. 77(5):1262-1271
Harper, M., Hu, Y., Donahue, J., Acosta, B., Dievenich Braes, F., Nguyen, S., Zeng, J., Barbaro, J., Lee, H., Bui, H., McMenamin, S.K. (2023) Thyroid hormone regulates proximodistal patterning in fin rays. Proceedings of the National Academy of Sciences of the United States of America. 120:e2219770120e2219770120
Saralahti, A.K., Harjula, S.E., Rantapero, T., Uusi-Mäkelä, M.I.E., Kaasinen, M., Junno, M., Piippo, H., Nykter, M., Lohi, O., Rounioja, S., Parikka, M., Rämet, M. (2023) Characterization of the innate immune response to Streptococcus pneumoniae infection in zebrafish. PLoS Genetics. 19:e1010586e1010586
Cao, Z., Meng, Y., Gong, F., Xu, Z., Liu, F., Fang, M., Zou, L., Liao, X., Wang, X., Luo, L., Li, X., Lu, H. (2021) Calcineurin controls proximodistal blastema polarity in zebrafish fin regeneration. Proceedings of the National Academy of Sciences of the United States of America. 118(2):
Castro, J., Beviano, V., Paço, A., Leitão-Castro, J., Cadete, F., Francisco, M., Freitas, R. (2021) Hoxd13/Bmp2-mediated mechanism involved in zebrafish finfold design. Scientific Reports. 11:7165
Daane, J.M., Blum, N., Lanni, J., Boldt, H., Iovine, M.K., Higdon, C.W., Johnson, S.L., Lovejoy, N.R., Harris, M.P. (2021) Modulation of bioelectric cues in the evolution of flying fishes. Current biology : CB. 31(22):5052-5061.e8
Stewart, S., Le Bleu, H.K., Yette, G.A., Henner, A.L., Robbins, A.E., Braunstein, J.A., Stankunas, K. (2021) longfin causes cis-ectopic expression of the kcnh2a ether-a-go-go K+ channel to autonomously prolong fin outgrowth. Development (Cambridge, England). 148(11):
Audira, G., Siregar, P., Strungaru, S.A., Huang, J.C., Hsiao, C.D. (2020) Which Zebrafish Strains Are More Suitable to Perform Behavioral Studies? A Comprehensive Comparison by Phenomic Approach. Biology. 9(8)
Siregar, P., Juniardi, S., Audira, G., Lai, Y.H., Huang, J.C., Chen, K.H., Chen, J.R., Hsiao, C.D. (2020) Method Standardization for Conducting Innate Color Preference Studies in Different Zebrafish Strains. Biomedicines. 8(8):
Harjula, S.E., Saralahti, A.K., Ojanen, M.J.T., Rantapero, T., Uusi-Mäkelä, M.I.E., Nykter, M., Lohi, O., Parikka, M., Rämet, M. (2019) Characterization of immune response against Mycobacterium marinum infection in the main hematopoietic organ of adult zebrafish (Danio rerio). Developmental and comparative immunology. 103:103523
Lanni, J.S., Peal, D., Ekstrom, L., Chen, H., Stanclift, C., Bowen, M.E., Mercado, A., Gamba, G., Kahle, K.T., Harris, M.P. (2019) Integrated K+ channel and K+Cl- cotransporter function are required for the coordination of size and proportion during development. Developmental Biology. 456(2):164-178
Barbosa, H.P., Lima-Maximino, M.G., Maximino, C. (2018) Acute fluoxetine differently affects aggressive display in zebrafish phenotypes. Aggressive behavior. 45(1):62-69
Maheras, A.L., Dix, B., Carmo, O.M.S., Young, A.E., Gill, V.N., Sun, J.L., Booker, A.R., Thomason, H.A., Ibrahim, A.E., Stanislaw, L., Dallego, J.C., Ngo, C.N., Chen, A., Fortini, B.K., Spence, R.D. (2018) Genetic Pathways of Neuroregeneration in a Novel Mild Traumatic Brain Injury Model in Adult Zebrafish. eNeuro. 5(1)
Parsons, K.J., Son, Y.H., Crespel, A., Thambithurai, D., Killen, S., Harris, M.P., Albertson, R.C. (2018) Conserved but flexible modularity in the zebrafish skull: implications for craniofacial evolvability. Proceedings. Biological sciences. 285(1877)
Tornini, V.A., Thompson, J.D., Allen, R.L., Poss, K.D. (2017) Live fate-mapping of joint-associated fibroblasts visualizes expansion of cell contributions during zebrafish fin regeneration. Development (Cambridge, England). 144:2889-2895
Anorve-Andress, K., Arcand, A.L., Borg, B.R., Brown, J.L., Chartrand, C.A., Frank, M.L., Jansen, J.N., Joyce, M.J., Joyce, M.T., Kinney, J.A., Kruggel, S.L., Lecy, A.D., Ma, P., Malecha, K.M., Melgaard, K., Miller, P.L., Nelson, K.K., Nieto Robles, M., Perosino, T.R., Peterson, J.M., Rollins, A.D., Scherkenbach, W.L., Smith, A.L., Sodergren, K.A., Stiller, J.J., Wehber, K.R., Liang, J.O. (2016) Variation in Spot and Stripe Patterns in Original and Regenerated Zebrafish Caudal Fins. Zebrafish. 13(4):256-65
Cooper, T.K., Murray, K.N., Spagnoli, S., Spitsbergen, J.M. (2015) Primary Intestinal and Vertebral Chordomas in Laboratory Zebrafish (Danio rerio). Veterinary Pathology. 52(2):388-92
Spitsbergen, J.M., Buhler, D.R., and Peterson, T.S. (2012) Neoplasia and neoplasm-associated lesions in laboratory colonies of zebrafish emphasizing key influences of diet and aquaculture system design. ILAR journal. 53(2):114-125
Lindemann, S., Senkler, J., Auchter, E., and Liang, J.O. (2011) Using zebrafish to learn statistical analysis and mendelian genetics. Zebrafish. 8(2):41-55
Schulte, C.J., Allen, C., England, S.J., Juárez-Morales, J.L., and Lewis, K.E. (2011) Evx1 is required for joint formation in zebrafish fin dermoskeleton. Developmental Dynamics : an official publication of the American Association of Anatomists. 240(5):1240-1248
Gumm, J.M., Snekser, J.L., and Iovine, M.K. (2009) Fin-mutant female zebrafish (Danio rerio) exhibit differences in association preferences for male fin length. Behavioural processes. 80(1):35-38
Itzkowitz, M., and Iovine, M.K. (2007) Single gene mutations causing exaggerated fins also cause non-genetic changes in the display behavior of male zebrafish. Behaviour. 144(7):787-795
Goldsmith, M.I., Fisher, S., Waterman, R., and Johnson, S.L. (2003) Saltatory control of isometric growth in the zebrafish caudal fin is disrupted in long fin and rapunzel mutants. Developmental Biology. 259(2):303-317
Iovine, M.K., and Johnson, S.L. (2002) A genetic, deletion, physical, and human homology map of the long fin region on zebrafish linkage group 2. Genomics. 79(6):756-759
Iovine, M.K. and Johnson, S.L. (2000) Genetic analysis of isometric growth control mechanisms in the zebrafish caudal fin. Genetics. 155(3):1321-1329
Kawakami, K., Shima, A., and Kawakami, N. (2000) Identification of a functional transposase of the Tol2 element, an Ac-like element from the Japanese medaka fish, and its transposition in the zebrafish germ lineage. Proceedings of the National Academy of Sciences of the United States of America. 97(21):11403-11408
Rawls, J.F. and Johnson, S.L. (2000) Zebrafish kit mutation reveals primary and secondary regulation of melanocyte development during fin stripe regeneration. Development (Cambridge, England). 127(17):3715-3724
Haffter, P., Granato, M., Brand, M., Mullins, M.C., Hammerschmidt, M., Kane, D.A., Odenthal, J., van Eeden, F.J., Jiang, Y.J., Heisenberg, C.P., Kelsh, R.N., Furutani-Seiki, M., Vogelsang, E., Beuchle, D., Schach, U., Fabian, C., and Nüsslein-Volhard, C. (1996) The identification of genes with unique and essential functions in the development of the zebrafish, Danio rerio. Development (Cambridge, England). 123:1-36
Haffter, P., Odenthal, J., Mullins, M.C., Lin, S., Farrell, M.J., Vogelsang, E., Haas, F., Brand, M., van Eeden, F.J.M., Furutani-Seiki, M., Granato, M., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Hopkins, N., and Nüsslein-Volhard, C. (1996) Mutations affecting pigmentation and shape of the adult zebrafish. Development genes and evolution. 206(4):260-276
van Eeden, F.J., Granato, M., Schach, U., Brand, M., Furutani-Seiki, M., Haffter, P., Hammerschmidt, M., Heisenberg, C.P., Jiang, Y.J., Kane, D.A., Kelsh, R.N., Mullins, M.C., Odenthal, J., Warga, R.M., and Nüsslein-Volhard, C. (1996) Genetic analysis of fin formation in the zebrafish, Danio rerio. Development (Cambridge, England). 123:255-262
Johnson, S.L. and Weston, J.A. (1995) Temperature-sensitive mutations that cause stage-specific defects in Zebrafish fin regeneration. Genetics. 141:1583-1595
Tresnake, I. (1981) The long-finned zebra Danio. Trop. Fish Hobby. 29:43-56
Additional Citations (10):
Geisler, R. (2013) Importation of Tübingen internal allele names. ZFIN Direct Data Submission.
Phenotype Annotation (1994-2006) (2006) Mutant Data Curated from Older Literature. ZFIN Historical Data.
Zebrafish Nomenclature Committee (2003) Nomenclature Data Curation (2003-2010). Nomenclature Committee Submission.
Zebrafish Nomenclature Committee (2023) Nomenclature Data Curation (2023). Nomenclature Committee Submission.
ZFIN Database Team (2012) Linkage Group (LG) to Chromosome (Chr). Manually curated data.
ZFIN Staff (2003) Submission and Curation of Mutant and Transgenic Lines. ZFIN Direct Data Submission.
ZFIN Staff (2002) Scientific Curation. Manually curated data.
ZFIN Staff (2015) Data Model Change: Sequence Targeting Reagents Removed from Environment. ZFIN Historical Data.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZIRC and ZFIN Staff (2008) Mutant and Transgenic Line Submissions 2008. ZFIN Direct Data Submission.
Zebrafish Nomenclature Committee (2023) Nomenclature Data Curation (2023). Nomenclature Committee Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2015) Data Model Change: Sequence Targeting Reagents Removed from Environment. ZFIN Historical Data.
Geisler, R. (2013) Importation of Tübingen internal allele names. ZFIN Direct Data Submission.
ZFIN Database Team (2012) Linkage Group (LG) to Chromosome (Chr). Manually curated data.
ZIRC and ZFIN Staff (2008) Mutant and Transgenic Line Submissions 2008. ZFIN Direct Data Submission.
Phenotype Annotation (1994-2006) (2006) Mutant Data Curated from Older Literature. ZFIN Historical Data.
Zebrafish Nomenclature Committee (2003) Nomenclature Data Curation (2003-2010). Nomenclature Committee Submission.
ZFIN Staff (2003) Submission and Curation of Mutant and Transgenic Lines. ZFIN Direct Data Submission.
ZFIN Staff (2002) Scientific Curation. Manually curated data.
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