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ZFIN ID:
ZDB-MIRNAG-071012-2
CITATIONS
(21 total)
miRNA Gene Name:
microRNA 34b
miRNA Gene Symbol:
mir34b
Auer, R.L., Riaz, S., and Cotter, F.E. (2007) The 13q and 11q B-cell chronic lymphocytic leukaemia-associated regions derive from a common ancestral region in the zebrafish. British journal of haematology. 137(5):443-453
Desvignes, T., Bardou, P., Montfort, J., Sydes, J., Guyomar, C., George, S., Postlethwait, J.H., Bobe, J. (2022) FishmiRNA: An evolutionarily supported microRNA annotation and expression database for ray-finned fishes. Molecular Biology and Evolution. 39(2)
Desvignes, T., Beam, M.J., Batzel, P., Sydes, J., Postlethwait, J.H. (2014) Expanding the annotation of zebrafish microRNAs based on small RNA sequencing. Gene. 546(2):386-9
Desvignes, T., Sydes, J., Montfort, J., Bobe, J., Postlethwait, J.H. (2021) Evolution after whole genome duplication: teleost microRNAs. Molecular Biology and Evolution. 38(8):3308-3331
Duan, J., Yu, Y., Li, Y., Jing, L., Yang, M., Wang, J., Li, Y., Zhou, X., Miller, M.R., Sun, Z. (2017) Comprehensive understanding of PM
2.5
on gene and microRNA expression patterns in zebrafish (Danio rerio) model.. The Science of the total environment. 586:666-674
Guo, H., Du, X., Zhang, Y., Wu, J., Wang, C., Li, M., Hua, X., Zhang, X.A., Yan, J. (2019) Specific miRNA-GPCR networks regulate Sox9a/Sox9b activities to promote gonadal rejuvenation in zebrafish. Stem cells (Dayton, Ohio). 37(9):1189-1199
Kapsimali, M., Kloosterman, W.P., de Bruijn, E., Rosa, F., Plasterk, R.H., and Wilson, S.W. (2007) MicroRNAs show a wide diversity of expression profiles in the developing and mature central nervous system. Genome biology. 8(8):R173
Ord, J., Heath, P.R., Fazeli, A., Watt, P.J. (2020) Paternal effects in a wild-type zebrafish implicate a role of sperm-derived small RNAs. Molecular Ecology. 29(14):2722-2735
Prykhozhij, S.V., Ban, K., Brown, Z.L., Kobar, K., Wajnberg, G., Fuller, C., Chacko, S., Lacroix, J., Crapoulet, N., Midgen, C., Shlien, A., Malkin, D., Berman, J.N. (2024) miR-34a is a tumor suppressor in zebrafish and its expression levels impact metabolism, hematopoiesis and DNA damage. PLoS Genetics. 20:e1011290e1011290
Rago, L., Castroviejo, N., Fazilaty, H., Garcia-Asencio, F., Ocaña, O.H., Galcerán, J., Nieto, M.A. (2019) MicroRNAs Establish the Right-Handed Dominance of the Heart Laterality Pathway in Vertebrates. Developmental Cell. 51:446-459.e5
Song, B., Zhang, Q., Zhang, Z., Wan, Y., Jia, Q., Wang, X., Zhu, X., Leung, A.Y., Cheng, T., Fang, X., Yuan, W., Jia, H. (2014) Systematic transcriptome analysis of the zebrafish model of diamond-blackfan anemia induced by RPS24 deficiency. BMC Genomics. 15:759
Soni, K., Choudhary, A., Patowary, A., Singh, A.R., Bhatia, S., Sivasubbu, S., Chandrasekaran, S., and Pillai, B. (2013) miR-34 is maternally inherited in Drosophila melanogaster and Danio rerio. Nucleic acids research. 41(8):4470-80
Wang, L., Fu, C., Fan, H., Du, T., Dong, M., Chen, Y., Jin, Y., Zhou, Y., Deng, M., Gu, A., Jing, Q., Liu, T., and Zhou, Y. (2013) miR-34b regulates multiciliogenesis during organ formation in zebrafish. Development (Cambridge, England). 140(13):2755-2764
Zhang, Q.L., Dong, Z.X., Luo, Z.W., Jiao, Y.J., Guo, J., Deng, X.Y., Wang, F., Chen, J.Y., Lin, L.B. (2019) MicroRNA profile of immune response in gills of zebrafish (Danio rerio) upon Staphylococcus aureus infection. Fish & shellfish immunology. 87:307-314
Zhao, T., Ye, S., Tang, Z., Guo, L., Ma, Z., Zhang, Y., Yang, C., Peng, J., Chen, J. (2021) Loss-of-function of p53 isoform Δ113p53 accelerates brain aging in zebrafish. Cell Death & Disease. 12:151
Prykhozhij, S.V., Ban, K., Brown, Z.L., Kobar, K., Wajnberg, G., Fuller, C., Chacko, S., Lacroix, J., Crapoulet, N., Midgen, C., Shlien, A., Malkin, D., Berman, J.N. (2024) miR-34a is a tumor suppressor in zebrafish and its expression levels impact metabolism, hematopoiesis and DNA damage. PLoS Genetics. 20:e1011290e1011290
Desvignes, T., Bardou, P., Montfort, J., Sydes, J., Guyomar, C., George, S., Postlethwait, J.H., Bobe, J. (2022) FishmiRNA: An evolutionarily supported microRNA annotation and expression database for ray-finned fishes. Molecular Biology and Evolution. 39(2)
Desvignes, T., Sydes, J., Montfort, J., Bobe, J., Postlethwait, J.H. (2021) Evolution after whole genome duplication: teleost microRNAs. Molecular Biology and Evolution. 38(8):3308-3331
Zhao, T., Ye, S., Tang, Z., Guo, L., Ma, Z., Zhang, Y., Yang, C., Peng, J., Chen, J. (2021) Loss-of-function of p53 isoform Δ113p53 accelerates brain aging in zebrafish. Cell Death & Disease. 12:151
Ord, J., Heath, P.R., Fazeli, A., Watt, P.J. (2020) Paternal effects in a wild-type zebrafish implicate a role of sperm-derived small RNAs. Molecular Ecology. 29(14):2722-2735
Guo, H., Du, X., Zhang, Y., Wu, J., Wang, C., Li, M., Hua, X., Zhang, X.A., Yan, J. (2019) Specific miRNA-GPCR networks regulate Sox9a/Sox9b activities to promote gonadal rejuvenation in zebrafish. Stem cells (Dayton, Ohio). 37(9):1189-1199
Rago, L., Castroviejo, N., Fazilaty, H., Garcia-Asencio, F., Ocaña, O.H., Galcerán, J., Nieto, M.A. (2019) MicroRNAs Establish the Right-Handed Dominance of the Heart Laterality Pathway in Vertebrates. Developmental Cell. 51:446-459.e5
Zhang, Q.L., Dong, Z.X., Luo, Z.W., Jiao, Y.J., Guo, J., Deng, X.Y., Wang, F., Chen, J.Y., Lin, L.B. (2019) MicroRNA profile of immune response in gills of zebrafish (Danio rerio) upon Staphylococcus aureus infection. Fish & shellfish immunology. 87:307-314
Duan, J., Yu, Y., Li, Y., Jing, L., Yang, M., Wang, J., Li, Y., Zhou, X., Miller, M.R., Sun, Z. (2017) Comprehensive understanding of PM
2.5
on gene and microRNA expression patterns in zebrafish (Danio rerio) model.. The Science of the total environment. 586:666-674
Desvignes, T., Beam, M.J., Batzel, P., Sydes, J., Postlethwait, J.H. (2014) Expanding the annotation of zebrafish microRNAs based on small RNA sequencing. Gene. 546(2):386-9
Song, B., Zhang, Q., Zhang, Z., Wan, Y., Jia, Q., Wang, X., Zhu, X., Leung, A.Y., Cheng, T., Fang, X., Yuan, W., Jia, H. (2014) Systematic transcriptome analysis of the zebrafish model of diamond-blackfan anemia induced by RPS24 deficiency. BMC Genomics. 15:759
Soni, K., Choudhary, A., Patowary, A., Singh, A.R., Bhatia, S., Sivasubbu, S., Chandrasekaran, S., and Pillai, B. (2013) miR-34 is maternally inherited in Drosophila melanogaster and Danio rerio. Nucleic acids research. 41(8):4470-80
Wang, L., Fu, C., Fan, H., Du, T., Dong, M., Chen, Y., Jin, Y., Zhou, Y., Deng, M., Gu, A., Jing, Q., Liu, T., and Zhou, Y. (2013) miR-34b regulates multiciliogenesis during organ formation in zebrafish. Development (Cambridge, England). 140(13):2755-2764
Auer, R.L., Riaz, S., and Cotter, F.E. (2007) The 13q and 11q B-cell chronic lymphocytic leukaemia-associated regions derive from a common ancestral region in the zebrafish. British journal of haematology. 137(5):443-453
Kapsimali, M., Kloosterman, W.P., de Bruijn, E., Rosa, F., Plasterk, R.H., and Wilson, S.W. (2007) MicroRNAs show a wide diversity of expression profiles in the developing and mature central nervous system. Genome biology. 8(8):R173
Additional Citations (6):
Zebrafish Nomenclature Committee (2003) Nomenclature Data Curation (2003-2010). Nomenclature Committee Submission.
ZFIN Staff (2008) Curation of miRBase Links. Automated Data Submission.
ZFIN Staff (2023) Curation of NCBI Gene Data Via Shared Ensembl IDs (Supplemental NCBI Load). Automated Data Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2002) Scientific Curation. Manually curated data.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
ZFIN Staff (2023) Curation of NCBI Gene Data Via Shared Ensembl IDs (Supplemental NCBI Load). Automated Data Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2008) Curation of miRBase Links. Automated Data Submission.
Zebrafish Nomenclature Committee (2003) Nomenclature Data Curation (2003-2010). Nomenclature Committee Submission.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
ZFIN Staff (2002) Scientific Curation. Manually curated data.
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